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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
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References

Abdel-Hafiz, M., P. Ablewski, A. Al-Masoudi, H. Álvarez Martínez, P. Balling, G. Barwood, E. Benkler, et al. 2019. “Guidelines for Developing Optical Clocks with 10−18 Fractional Frequency Uncertainty.” arXiv:1906.11495 [physics.atom-Ph]. https://doi.org/10.48550/arXiv.1906.11495.

Abe, M., P. Adamson, M. Borcean, D. Bortoletto, K. Bridges, S.P. Carman, S. Chattopadhyay, et al. 2021. “Matter-wave Atomic Gradiometer Interferometric Sensor (MAGIS-100).” Quantum Science and Technology 6:044003.

Abels, E.R., and X.O. Breakefield. 2016. “Introduction to Extracellular Vesicles: Biogenesis, RNA Cargo Selection, Content, Release, and Uptake.” Cellular and Molecular Neurobiology 36(3):301–312.

Acres, J.M., M.J. Youngapelian, and J. Nadeau. 2021. “The Influence of Spaceflight and Simulated Microgravity on Bacterial Motility and Chemotaxis.” npj Microgravity 7(1):7.

Afshinnekoo, E., R.T. Scott, M.J. MacKay, E. Pariset, E. Cekanaviciute, R. Barker, S. Gilroy, et al. 2020. “Fundamental Biological Features of Spaceflight: Advancing the Field to Enable Deep-Space Exploration.” Cell 183(5):1162–1184.

Afshinnekoo, E., R.T. Scott, M.J. MacKay, E. Pariset, E. Cekanaviciute, R. Barker, S. Gilroy, et al. 2021. “Fundamental Biological Features of Spaceflight: Advancing the Field to Enable Deep-Space Exploration.” Cell 184(24):6002.

Agrawal, A.F., and M.C. Whitlock. 2012. “Mutation Load: The Fitness of Individuals in Populations Where Deleterious Alleles Are Abundant.” Annual Review of Ecology, Evolution, and Systematics 43(1):115–135.

Agresti, J.J., E. Antipov, A.R. Abate, K. Ahn, A.C. Rowat, J.C. Baret, M. Marquez, A.M. Klibanov, A.D. Griffiths, and D.A. Weitz. 2010. “Ultrahigh-Throughput Screening in Drop-Based Microfluidics for Directed Evolution.” Proceedings of the National Academy of Sciences 107(9):4004–4009.

Agronet. 2022. “Así es Como la NASA Cultiva Chiles en El Espacio.” https://www.agronet.gov.co/Noticias/Paginas/As%C3%AD-es-como-la-NASA-cultiva-chiles-en-el-espacio.aspx.

Agui, J.H., and R.A. Wilkinson. 2010. “Granular Flow and Dynamics of Lunar Simulants in Excavating Implements.” Pp. 84–94 in Earth and Space 2010: Engineering, Science, Construction, and Operations in Challenging Environments, G. Song and R.B. Malla, eds. 12th Biennial International Conference on Engineering, Construction, and Operations in Challenging Environments; and Fourth NASA/ARO/ASCE Workshop on Granular Materials in Lunar and Martian Exploration. March 14. Honolulu, Hawaii. Reston, VA: American Society of Civil Engineers.

Aguilera, D.N., H. Ahlers, B. Battelier, A. Bawamia, A. Bertoldi, R. Bondarescu, K. Bongs, et al. 2014. “STE-QUEST—Test of the Universality of Free Fall Using Cold Atom Interferometry.” Classical and Quantum Gravity 31(11):115010.

Akiyama, T., K. Horie, E. Hinoi, M. Hiraiwa, A. Kato, Y. Maekawa, A. Takahashi, and S. Furukawa. 2020. “How Does Spaceflight Affect the Acquired Immune System?” npj Microgravity 6(1):14.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Albers, H., A. Herbst, L.L. Richardson, H. Heine, D. Nath, J. Hartwig, C. Schubert, et al. 2020. “Quantum Test of the Universality of Free Fall Using Rubidium and Potassium.” The European Physical Journal D 74(7):145.

Allam, R., S. Martin, B. Forrest, J. Fetvedt, X. Lu, D. Freed, G.W. Brown, T. Sasaki, M. Itoh, and J. Manning. 2017. “Demonstration of the Allam Cycle: An Update on the Development Status of a High Efficiency Supercritical Carbon Dioxide Power Process Employing Full Carbon Capture.” Energy Procedia 114:5948–5966.

Allen, J.P., M. Nelson, and A. Alling. 2003. “The Legacy of Biosphere 2 for the Study of Biospherics and Closed Ecological Systems.” Advances in Space Research 31(7):1629–1639.

Alonso, I., C. Alpigiani, B. Altschul, H. Araujo, G. Arduini, J. Arlt, L. Badurina, et al. 2022. “Cold Atoms in Space: Community Workshop Summary and Proposed Road-Map.” EPJ Quantum Technology 9(30). https://doi.org/10.1140/epjqt/s40507-022-00147-w.

Alwood, J.S., K. Yumoto, R. Mojarrab, C.L. Limoli, E.A. Almeida, N.D. Searby, and R.K. Globus. 2010. “Heavy Ion Irradiation and Unloading Effects on Mouse Lumbar Vertebral Microarchitecture, Mechanical Properties and Tissue Stresses.” Bone 47(2):248–255.

Amselem, S. 2019. “Remote Controlled Autonomous Microgravity Lab Platforms for Drug Research in Space.” Pharmaceutical Research 36(12):183.

Angelos, E., D.K. Ko, S. Zemelis-Durfee, and F. Brandizzi. 2021. “Relevance of the Unfolded Protein Response to Spaceflight-Induced Transcriptional Reprogramming in Arabidopsis.” Astrobiology 21(3):367–380.

Antypas, D., A. Banerjee, C. Bartram, M. Baryakhtar, J. Betz, J.J. Bollinger, C. Boutan, et al. 2022. “New Horizons: Scalar and Vector Ultralight Dark Matter.” arXiv:2203.14915 [hep-ex]. https://doi.org/10.48550/arXiv.2203.14915.

Araújo, P.A., J. Malheiro, I. Machado, F. Mergulhão, L. Melo, and M. Simões. 2016. “Influence of Flow Velocity on the Characteristics of Pseudomonas Fluorescens Biofilms.” Journal of Environmental Engineering 142(7):04016031.

Arcadi, G., M. Dutra, P. Ghosh, M. Lindner, Y. Mambrini, M. Pierre, S. Profumo and F.S. Queiroz. 2018. “The Waning of the WIMP? A Review of Models, Searches, and Constraints, Giorgio.” The European Physical Journal C 78(203).

Arkin, A.P., R.W. Cottingham, C.S. Henry, N.L. Harris, R.L. Stevens, S. Maslov, P. Dehal, et al. 2018. “KBase: The United States Department of Energy Systems Biology Knowledgebase.” Nature Biotechnology 36(7):566–569.

Artusio, F., A. Castellví, A. Sacristán, R. Pisano, and J.A. Gavira. 2020. “Agarose Gel as a Medium for Growing and Tailoring Protein Crystals.” Crystal Growth & Design 20(8):5564–5571.

Asenbaum, P., C. Overstreet, M. Kim, J. Curti, and M.A. Kasevich. 2020. “Atom-Interferometric Test of the Equivalence Principle at the 10−12 Level.” Physical Review Letters 125(19):191101.

Ashby, N. 2003. “Relativity in the Global Positioning System.” Living Reviews in Relativity 6(1):1.

Ashida, A. 1994. “Recycling of Trace Elements Required for Humans in CELSS.” Advances in Space Research 14(11):177–187.

Atkinson, C. 1997. “NASA Tests Composters for Space.” Biocycle 38(3):47–48.

Attinger, D., C. Frankiewicz, A.R. Betz, T.M. Schutzius, R. Ganguly, A. Das, C.-J. Kim, and C.M. Megaridis. 2014. “Surface Engineering for Phase Change Heat Transfer: A Review.” MRS Energy & Sustainability 1:E4.

Aubret, A., M. Youssef, S. Sacanna, and J. Palacci. 2018. “Targeted Assembly and Synchronization of Self-Spinning Micro-gears.” Nature Physics 14(11):1114–1118.

Augustine, C., and J.W. Tester. 2009. “Hydrothermal Flames: From Phenomenological Experimental Demonstrations to Quantitative Understanding.” Journal of Supercritical Fluids 47(3):415–430.

Averesch, N.J., A.J. Berliner, S.N. Nangle, S. Zezulka, G.L. Vengerova, D. Ho, C.A. Casale, et al. 2022. “Biomanufacturing for Space-Exploration—What to Take and When to Make.” Preprints 2022070329.

Averesch, N.J., V.E. Pane, F. Kracke, M. Ziesack, S.N. Nangle, P.A. Silver, R.W. Waymouth, and C.S. Criddle. 2021. “Bio-catalytic Formation of Novel Polyesters with para-Hydroxyphenyl Groups in the Backbone—Engineering Cupriavidus Necator for Production of High-Performance Materials from CO2 and Electricity.” bioRxiv 2021.12.12.472320, preprint.

Aviles-Gaxiola, S., G. Olivo-Vázquez, L. Cabanillas-Bojórquez, E. Gutiérrez-Grijalva, and J. Heredia. 2020. “Plants as Bio-factories for Phenolic Compounds.” In Plant Phenolics in Sustainable Agriculture, R. Lone, R. Shuab and A. Kamili, eds. Singapore: Springer.

Bacci, S., and D. Bani. 2022. “The Epidermis in Microgravity and Unloading Conditions and Their Effects on Wound Healing.” Frontiers in Bioengineering Biotechnology 10:666434.

Baek, M., F. DiMaio, I. Anishchenko, J. Dauparas, S. Ovchinnikov, G.R. Lee, J. Wang, et al. 2021. “Accurate Prediction of Protein Structures and Interactions Using a Three-Track Neural Network.” Science 373(6557):871–876.

Baetz, U., and E. Martinoia. 2014. “Root Exudates: The Hidden Part of Plant Defense.” Trends in Plant Science 19(2):90–98.

Bai, P., Y. Li, J. Bai, and H. Xu. 2022. “Markedly Decreased Growth Rate and Biofilm Formation Ability of Acinetobacter Schindleri After a Long-Duration (64 Days) Spaceflight.” European Review for Medical and Pharmacological Sciences 26(11):4001–4015.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Balasubramaniam, R. 2021. “It’s All About Fluids.” Input paper submitted to the Committee for the Decadal Survey on Biological and Physical Sciences Research in Space 2023–2032.

Ballantine, K.E., and J. Ruostekoski. 2020. “Optical Magnetism and Huygens’ Surfaces in Arrays of Atoms Induced by Cooperative Responses.” Physical Review Letters 125(14):143604.

Bandstra, E.R., R.W. Thompson, G.A. Nelson, J.S. Willey, S. Judex, M.A. Cairns, E.R. Benton, M.E. Vazquez, J.A. Carson, and T.A. Bateman. 2009. “Musculoskeletal Changes in Mice from 20–50 cGy of Simulated Galactic Cosmic Rays.” Radiation Research 172(1):21–29.

Baran, R., S. Marchal, S. Garcia Campos, E. Rehnberg, K. Tabury, B. Baselet, M. Wehland, D. Grimm, and S. Baatout. 2021. “The Cardiovascular System in Space: Focus on in Vivo and in Vitro Studies.” Biomedicines 10(1).

Barker, R., S.V. Costes, J. Miller, S.G. Gebre, J. Lombardino, and S. Gilroy. 2021. “Rad-Bio-App: A Discovery Environment for Biologists to Explore Spaceflight-Related Radiation Exposures.” npj Microgravity 7(1):15.

Barker, R., J. Lombardino, K. Rasmussen, and S. Gilroy. 2020. “Test of Arabidopsis Space Transcriptome: A Discovery Environment to Explore Multiple Plant Biology Spaceflight Experiments.” Frontiers in Plant Science 11:147.

Barrila, J., S.F. Sarker, N. Hansmeier, S. Yang, K. Buss, N. Briones, J. Park, et al. 2021. “Evaluating the Effect of Spaceflight on the Host–Pathogen Interaction Between Human Intestinal Epithelial Cells and Salmonella Typhimurium.” npj Microgravity 7(1):9.

Barrila, J., J. Yang, K.P. Franco Meléndez, S. Yang, K. Buss, T.J. Davis, B.J. Aronow, et al. 2022. “Spaceflight Analogue Culture Enhances the Host-Pathogen Interaction Between Salmonella and a 3-D Biomimetic Intestinal Co-Culture Model.” Frontiers in Cellular and Infection Microbiology 12:705647.

Basu, D., and E.S. Haswell. 2017. “Plant Mechanosensitive Ion Channels: An Ocean of Possibilities.” Current Opinion in Plant Biology 40:43–48.

Bataglieri, M., A. Belloni, A. Chou, P. Cushman, B. Echenard, R. Essig, J. Estrada, et al. 2017. “US Cosmic Visions: New Ideas in Dark Matter 2017: Community Report.” arXiv:1707.04591 [hep-ph]. https://doi.org/10.48550/arXiv.1707.04591.

Baule, A., F. Morone, H.J. Herrmann, and H.A. Makse. 2018. “Edwards Statistical Mechanics for Jammed Granular Matter.” Reviews of Modern Physics 90(1):015006.

Be, N.A., A. Avila-Herrera, J.E. Allen, N. Singh, A. Checinska Sielaff, C. Jaing, and K. Venkateswaran. 2017. “Whole Metagenome Profiles of Particulates Collected from the International Space Station.” Microbiome 5(1):81.

Beheshti, A., K. Chakravarty, H. Fogle, H. Fazelinia, W.A.D. Silveira, V. Boyko, S.L. Polo, et al. 2019. “Multi-Omics Analysis of Multiple Missions to Space Reveal a Theme of Lipid Dysregulation in Mouse Liver.” Scientific Reports 9(1):19195.

Beheshti, A., J. Miller, Y. Kidane, D. Berrios, S.G. Gebre, and S.V. Costes. 2018. “NASA Genelab Project: Bridging Space Radiation Omics with Ground Studies.” Radiation Research 189(6):553–559.

Beisel, N.S., J. Noble, W.B. Barbazuk, A.-L. Paul, and R.J. Ferl. 2019. “Spaceflight-Induced Alternative Splicing During Seedling Development in Arabidopsis Thaliana.” npj Microgravity 5(1):9.

Beloy, K., M.I. Bodine, T. Bothwell, S.M. Brewer, S.L. Bromley, J.-S. Chen, J.-D. Deschênes, et al. 2021. “Frequency Ratio Measurements at 18-Digit Accuracy Using an Optical Clock Network.” Nature 591(7851):564–569.

Bennett, W.R., P.J. Smith, and I.J. Jakupca. 2020. Analysis of 100-W Regenerative Fuel Cell Demonstration. Glenn Research Center, National Aeronautics and Space Administration. Cleveland, OH. https://ntrs.nasa.gov/api/citations/20205000357/downloads/TM-20205000357.pdf.

Benoit, M.R., and D.M. Klaus. 2007. “Microgravity, Bacteria, and the Influence of Motility.” Advances in Space Research 39(7):1225–1232.

Berger, T., D. Matthiä, S. Burmeister, C. Zeitlin, R. Rios, N. Stoffle, N.A. Schwadron, et al. 2020. “Long Term Variations of Galactic Cosmic Radiation on Board the International Space Station, on the Moon and on the Surface of Mars.” Journal of Space Weather and Space Climate 10:34.

Berliner, A.J., J.M. Hilzinger, A.J. Abel, M.J. McNulty, G. Makrygiorgos, N.J.H. Averesch, S. Sen Gupta, et al. 2021. “Towards a Biomanufactory on Mars.” Perspective. Frontiers in Astronomy and Space Sciences 8.

Berliner, A.J., I. Lipsky, D. Ho, J.M. Hilzinger, G. Vengerova, G. Makrygiorgos, M.J. McNulty, et al. 2022. “Space Bioprocess Engineering on the Horizon.” Communications Engineering 1(1):13.

Berns, M.W. 2020. “Laser Scissors and Tweezers to Study Chromosomes: A Review.” Review. Frontiers in Bioengineering and Biotechnology 8.

Berthier, L., and G. Biroli. 2011. “Theoretical Perspective on the Glass Transition and Amorphous Materials.” Reviews of Modern Physics 83(2):587–645.

Bertone, G., and D. Hooper. 2018. “History of Dark Matter.” Reviews of Modern Physics 90(4):045002.

Bigley, A.B., N.H. Agha, F.L. Baker, G. Spielmann, H.E. Kunz, P.L. Mylabathula, B.V. Rooney, et al. 2019. “NK Cell Function Is Impaired During Long-Duration Spaceflight.” Journal of Applied Physiology (1985) 126(4):842–853.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Bijlani, S., C. Parker, N.K. Singh, M.A. Sierra, J. Foox, C.C.C. Wang, C.E. Mason, and K. Venkateswaran. 2022. “Genomic Characterization of the Titan-Like Cell Producing Naganishia Tulchinskyi, the First Novel Eukaryote Isolated from the International Space Station.” Journal of Fungi (Basel) 8(2).

Bijlani, S., N.K. Singh, V.V.R. Eedara, A.R. Podile, C.E. Mason, C.C.C. Wang, and K. Venkateswaran. 2021. “Methylobacterium Ajmalii sp. nov., Isolated from the International Space Station.” Original Research. Frontiers in Microbiology 12.

Bijlani, S., E. Stephens, N.K. Singh, K. Venkateswaran, and C.C.C. Wang. 2021. “Advances in Space Microbiology.” iScience 24(5):102395.

Biteen, J.S., P.C. Blainey, Z.G. Cardon, M. Chun, G.M. Church, P.C. Dorrestein, S.E. Fraser, et al. 2016. “Tools for the Microbiome: Nano and Beyond.” ACS Nano 10(1):6–37.

Blaber, E.A., M.J. Pecaut, and K.R. Jonscher. 2017. “Spaceflight Activates Autophagy Programs and the Proteasome in Mouse Liver.” International Journal of Molecular Sciences 18(10).

Bland, R., R. Brukardt, W. Gangware, and D. Swartz. 2022. “A Different Space Race: Raising Capital and Accelerating Growth.” https://www.mckinsey.com/industries/aerospace-and-defense/our-insights/a-different-space-race-raising-capital-and-accelerating-growth-in-space.

Blaser, J.P., M. Bye, G. Cavallo, T. Damour, C.W.F. Everitt, A. Hedin, R.W. Hellings, Y. Jafry, R. Laurance, and M. Lee. 1993. STEP: Satellite Test of the Equivalence Principle. Report on the Phase a Study. NASA. https://ntrs.nasa.gov/citations/19950019764.

Blaustein, R.A., A.G. McFarland, S. Ben Maamar, A. Lopez, S. Castro-Wallace, and E.M. Hartmann. 2019. “Pangenomic Approach to Understanding Microbial Adaptations Within a Model Built Environment, the International Space Station, Relative to Human Hosts and Soil.” mSystems 4(1).

Bloch, I., J. Dalibard, and S. Nascimbène. 2012. “Quantum Simulations with Ultracold Quantum Gases.” Nature Physics 8(4):267–276.

Bloomfield, S.A., D.A. Martinez, R.D. Boudreaux, and A.V. Mantri. 2016. “Microgravity Stress: Bone and Connective Tissue.” Comprehensive Physiology 6(2):645–686.

Blount, P., and I. Iscla. 2020. “Life with Bacterial Mechanosensitive Channels, from Discovery to Physiology to Pharmacological Target.” Microbiology and Molecular Biology Reviews 84(1):e00055-00019.

Blue Origin. 2023. “Blue Alchemist Technology Powers Our Lunar Future.” Blog. Blue Origin for the Benefit of Earth. https://www.blueorigin.com/news/blue-alchemist-powers-our-lunar-future.

Boerma, M., C.G. van der Wees, H. Vrieling, J.P. Svensson, J. Wondergem, A. van der Laarse, L.H. Mullenders, and A.A. van Zeeland. 2005. “Microarray Analysis of Gene Expression Profiles of Cardiac Myocytes and Fibroblasts After Mechanical Stress, Ionising or Ultraviolet Radiation.” BMC Genomics 6:6.

Boonsirichai, K., C. Guan, R. Chen, and P.H. Masson. 2002. “Root Gravitropism: An Experimental Tool to Investigate Basic Cellular and Molecular Processes Underlying Mechanosensing and Signal Transmission in Plants.” Annual Review of Plant Biology 53:421–447.

Boonstra, J. 1999. “Growth Factor-Induced Signal Transduction in Adherent Mammalian Cells Is Sensitive to Gravity.” FASEB Journal 13(Suppl):S35–S42.

Botelho, J., F. Grosso, and L. Peixe. 2019. “Antibiotic Resistance in Pseudomonas Aeruginosa—Mechanisms, Epidemiology and Evolution.” Drug Resistance Updates 44:100640.

Bothwell, T., C.J. Kennedy, A. Aeppli, D. Kedar, J.M. Robinson, E. Oelker, A. Staron, and J. Ye. 2022. “Resolving the Gravitational Redshift Across a Millimetre-Scale Atomic Sample.” Nature 602(7897):420–424.

Bouchet, F., and J. Sommeria. 2002. “Emergence of Intense Jets and Jupiter’s Great Red Spot as Maximum-Entropy Structures.” Journal of Fluid Mechanics 464:165–207.

Bourgoin, M., R. Kervil, C. Cottin-Bizonne, F. Raynal, R. Volk, and C. Ybert. 2020. “Kolmogorovian Active Turbulence of a Sparse Assembly of Interacting Marangoni Surfers.” Physical Review X 10(2):021065.

Boyer, F., É. Guazzelli, and O. Pouliquen. 2011. “Unifying Suspension and Granular Rheology.” Physical Review Letters 107(18):188301.

Braak, H., U. Rüb, W.P. Gai, and K. Del Tredici. 2003. “Idiopathic Parkinson’s Disease: Possible Routes by Which Vulnerable Neuronal Types May Be Subject to Neuroinvasion by an Unknown Pathogen.” Journal of Neural Transmission (Vienna) 110(5):517–536.

Braam, J. 2005. “In Touch: Plant Responses to Mechanical Stimuli.” New Phytologist 165:373–389.

Bracker, G.P., S. Schneider, R. Wunderlich, H. Fecht, J. Zhao, and R.W. Hyers. 2020. “Confirmation of Anomalous Nucleation in Zirconium.” Journal of The Minerals, Metals and Materials Society 72:3140–3146.

Bragg, J.G., M.A. Supple, R.L. Andrew, and J.O. Borevitz. 2015. “Genomic Variation Across Landscapes: Insights and Applications.” New Phytologist 207(4):953–967.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Branco, S., A. Schauster, H.-L. Liao, and J. Ruytinx. 2022. “Mechanisms of Stress Tolerance and Their Effects on the Ecology and Evolution of Mycorrhizal Fungi.” New Phytologist 235(6):2158–2175.

Brandizzi, F. 2022. Life Beyond Earth: Effect of Space Flight on Seeds with Improved Nutritional Value. https://taskbook.nasaprs.com/Tbp/index.cfm?action=public_query_taskbook_content&TASKID=14849.

Brendel, L.P.M., S.L. Caskey, M.K. Ewert, D. Hengeveld, J.E. Braun, and E.A. Groll. 2021. “Review of Vapor Compression Refrigeration in Microgravity Environments.” International Journal of Refrigeration 123:169–179.

Brenner, M., and V.J. Hearing. 2008. “The Protective Role of Melanin Against UV Damage in Human Skin.” Photochemistry and Photobiology 84(3):539–549.

Brewer, S.M., J.-S. Chen, A.M. Hankin, E.R. Clements, C.W. Chou, D.J. Wineland, D.B. Hume, and D.R. Leibrandt. 2019. “An 27Al+ Quantum-Logic Clock with Systematic Uncertainty Below 10−18.” Physical Review Letters 123(3):033201.

Brinckerhoff, W.B., P.A. Willis, A.J. Ricco, D.A. Kaplan, R.M. Danell, A. Grubisic, M.F. Mora, et al. 2022. “Europan Molecular Indicators of Life Investigation (EMILI) for a Future Europa Lander Mission.” Original Research. Frontiers in Space Technologies 2.

Britten, R.A., L.L. Wellman, and L.D. Sanford. 2021. “Progressive Increase in the Complexity and Translatability of Rodent Testing to Assess Space-Radiation Induced Cognitive Impairment.” Neuroscience and Biobehavioral Reviews 126:159–174.

Brookings. 2019. “Less than Half of U.S. Children Under 15 are White, Census Shows.” https://www.brookings.edu/research/less-than-half-of-us-children-under-15-are-white-census-shows.

Broutin, I., M. Riès-Kautt, and A. Ducruix. 1997. “Crystallographic Analyses of Lysozyme and Collagenase Microgravity Grown Crystals Versus Ground Controls.” Journal of Crystal Growth 181(1):97–108.

Brown, D.R., T.B. Stout, J.A. Dirks, and N. Fernandez. 2012. “The Prospects of Alternatives to Vapor Compression Technology for Space Cooling and Food Refrigeration Applications.” Energy Engineering 109(6):7–20.

Brown, E., N. Rodenberg, J. Amend, A. Mozeika, E. Steltz, M.R. Zakin, H. Lipson, and H.M. Jaeger. 2010. “Universal Robotic Gripper Based on the Jamming of Granular Material.” Proceedings of the National Academy of Sciences 107(44):18809–18814.

Bryan, J.E., and J.S. Yagoobi. 1997. “Heat Transport Enhancement of Monogroove Heat Pipe with Electrohydrodynamic Pumping.” AIAA Journal of Thermophysics and Heat Transfer 11(3):454–460.

Bubenheim, D., and K. Wignarajah. 1997. “Recycling of Inorganic Nutrients for Hydroponic Crop Production Following Incineration of Inedible Biomass.” Advances in Space Research 20(10):2029–2035.

Buckner, T.L., R.A. Bilodeau, S.Y. Kim, and R. Kramer-Bottiglio. 2020. “Roboticizing Fabric by Integrating Functional Fibers.” Proceedings of the National Academy of Sciences 117(41):25360–25369.

Burgner, S.E., K. Nemali, G.D. Massa, R.M. Wheeler, R.C. Morrow, and C.A. Mitchell. 2020. “Growth and Photosynthetic Responses of Chinese Cabbage (Brassica rapa L. cv. Tokyo Bekana) to Continuously Elevated Carbon Dioxide in a Simulated Space Station ‘Veggie’ Crop-Production Environment.” Life Sciences in Space Research 27:83–88.

Burt, E.A., J.D. Prestage, R.L. Tjoelker, D.G. Enzer, D. Kuang, D.W. Murphy, D.E. Robison, J.M. Seubert, R.T. Wang, and T.A. Ely. 2021. “Demonstration of a Trapped-Ion Atomic Clock in Space.” Nature 595(7865):43–47.

Buyel, J.F., E. Stöger, and L. Bortesi. 2021. “Targeted Genome Editing of Plants and Plant Cells for Biomanufacturing.” Transgenic Research 30(4):401–426.

Califar, B., N.J. Sng, A. Zupanska, A.-L. Paul, and R.J. Ferl. 2020. “Root Skewing-Associated Genes Impact the Spaceflight Response of Arabidopsis Thaliana.” Original Research. Frontiers in Plant Science 11.

Campbell, L., S. Mehtani, M. Dozier, and J. Rinehart. 2013. “Gender-Heterogeneous Working Groups Produce Higher Quality Science.” PLOS One 8(10):e79147.

Canepa, A. 2019. “Searches for Supersymmetry at the Large Hadron Collider.” Reviews in Physics 4:100033.

Carattoli, A. 2013. “Plasmids and the Spread of Resistance.” International Journal of Medical Microbiology 303(6):298–304.

Carney, D., H. Müller, and J.M. Taylor. 2021. “Using an Atom Interferometer to Infer Gravitational Entanglement Generation.” PRX Quantum 2(3):030330.

Carriot, J., M. Jamali, and K.E. Cullen. 2015. “Rapid Adaptation of Multisensory Integration in Vestibular Pathways.” Mini Review. Frontiers in Systems Neuroscience 9.

Carriot, J., I. Mackrous, and K.E. Cullen. 2021. “Challenges to the Vestibular System in Space: How the Brain Responds and Adapts to Microgravity.” Review. Frontiers in Neural Circuits 15.

Casaburi, G., I. Goncharenko-Foster, A.A. Duscher, and J.S. Foster. 2017. “Transcriptomic Changes in an Animal-Bacterial Symbiosis Under Modeled Microgravity Conditions.” Scientific Reports 7(1):46318.

Casey, T., O.V. Patel, and K. Plaut. 2015. “Transcriptomes Reveal Alterations in Gravity Impact Circadian Clocks and Activate Mechanotransduction Pathways with Adaptation Through Epigenetic Change.” Physiological Genomics 47(4):113–128.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Cassaro, A., C. Pacelli, M. Baqué, B. Cavalazzi, G. Gasparotto, R. Saladino, L. Botta, et al. 2022. “Investigation of Fungal Biomolecules After Low Earth Orbit Exposure: A Testbed for the Next Moon Missions.” Environmental Microbiology 24(7):2938–2950.

Castaneda, A.J., N.J. O’Connor, J.S. Yagoobi, J.R. Didion, M.S. Martins, and M.M. Hasan. 2023. “DielectrophoreticallyAssisted EHD-Driven Liquid Film Flow Boiling in the Presence and Absence of Gravity.” ASME Journal of Heat Transfer 145(3):031601.

Castelein, S.M., T.F. Aarts, J. Schleppi, R. Hendrikx, A.J. Böttger, D. Benz, M. Marechal, et al. 2021. “Iron Can Be Microbially Extracted from Lunar and Martian Regolith Simulants and 3D Printed into Tough Structural Materials.” PLOS One 16(4):e0249962.

Castro, V.A., A.N. Thrasher, M. Healy, C.M. Ott, and D.L. Pierson. 2004. “Microbial Characterization During the Early Habitation of the International Space Station.” Microbial Ecology 47(2):119–126.

Castro-Wallace, S.L., C.Y. Chiu, K.K. John, S.E. Stahl, K.H. Rubins, A.B.R. McIntyre, J.P. Dworkin, et al. 2017. “Nanopore DNA Sequencing and Genome Assembly on the International Space Station.” Scientific Reports 7(1):18022.

Cavanagh, P.R., A.J. Rice, A.A. Licata, et al. 2013. “A Novel Lunar Bed Rest Analogue.” Aviation, Space, and Environmental Medicine 84(11):1191–1195.

CDC (Centers for Disease Control and Prevention). 2023. Disability Impacts All of Us. Infographic at https://www.cdc.gov/ncbddd/disabilityandhealth/infographic-disability-impacts-all.html.

Cervantes, J.L., and B.Y. Hong. 2016. “Dysbiosis and Immune Dysregulation in Outer Space.” International Reviews of Immunology 35(1):67–82.

Cestellos-Blanco, S., S. Friedline, K.B. Sander, A.J. Abel, J.M. Kim, D.S. Clark, A.P. Arkin, and P. Yang. 2021. “Production of PHB from CO2-Derived Acetate with Minimal Processing Assessed for Space Biomanufacturing.” Original Research. Frontiers in Microbiology 12:700010.

Chancellor, J.C., R.S. Blue, K.A. Cengel, S.M. Auñón-Chancellor, K.H. Rubins, H.G. Katzgraber, and A.R. Kennedy. 2018. “Limitations in Predicting the Space Radiation Health Risk for Exploration Astronauts.” npj Microgravity 4(1):8.

Chandler, J.O., F.B. Haas, S. Khan, L. Bowden, M. Ignatz, E.M.A. Enfissi, F. Gawthrop, et al. 2020. “Rocket Science: The Effect of Spaceflight on Germination Physiology, Ageing, and Transcriptome of Eruca Sativa Seeds.” Life (Basel) 10(4).

Chatterjee, A., J.L. Plawsky, P.C.W. Jr., D.F. Chao, R.J. Sicker, T. Lorik, L. Chestney, R. Margie, J. Eustace, and J. Zoldak. 2013. “Constrained Vapor Bubble Heat Pipe Experiment Aboard the International Space Station.” Journal of Thermophysics and Heat Transfer 27(2):309–319.

Chegg. 2023. “Adult Life Cycle of Mice.” Biology Questions and Answers. 2023. https://www.chegg.com/homework-help/questions-and-answers/adult-life-cycle-mice-fertilized-egg-polar-bodies-zona-pellucida-cleavage-blastocystbirth-q70738289.

Chen, B.G.-g., and C.D. Santangelo. 2018. “Branches of Triangulated Origami Near the Unfolded State.” Physical Review X 8(1):011034.

Chen, Q., R.S. Amano, and M. Xin. 2006. “Experimental Study of Flow Patterns and Regimes of Condensation in Horizontal Three-Dimensional Micro-Fin Tubes.” Heat and Mass Transfer 43(2):201–206.

Chen, Y., X. Li, C. Scheibner, V. Vitelli, and G. Huang. 2021. “Realization of Active Metamaterials with Odd Micropolar Elasticity.” Nature Communications 12(1):5935.

Chen, Z., S. Stanbouly, N.C. Nishiyama, X. Chen, M.D. Delp, H. Qiu, X.W. Mao, and C. Wang. 2021. “Spaceflight Decelerates the Epigenetic Clock Orchestrated with a Global Alteration in DNA Methylome and Transcriptome in the Mouse Retina.” Precision Clinical Medicine 4(2):93–108.

Chevalier, Y., and M.-A. Bolzinger. 2013. “Emulsions Stabilized with Solid Nanoparticles: Pickering Emulsions.” Colloids and Surfaces A: Physicochemical and Engineering Aspects 439:23–34.

Chiaramonte, F.P., and J.A. Joshi. 2004. Workshop on Critical Issues in Microgravity Fluids, Transport, and Reaction Processes in Advanced Human Support Technology. NASA. https://ntrs.nasa.gov/citations/20040035652.

Chien, Y.-C., D.P. Stocker, U.G. Hegde, and D. Dunn-Rankin. 2022. “Electric-Field Effects on Methane Coflow Flames Aboard the International Space Station (ISS): ACME E-FIELD Flames.” Combustion and Flame 246:112443.

Choi, W.G., R.J. Barker, S.H. Kim, S.J. Swanson, and S. Gilroy. 2019. “Variation in the Transcriptome of Different Ecotypes of Arabidopsis Thaliana Reveals Signatures of Oxidative Stress in Plant Responses to Spaceflight.” American Journal of Botany 106(1):123–136.

Cialdai, F., A. Colciago, D. Pantalone, A.M. Rizzo, S. Zava, L. Morbidelli, F. Celotti, D. Bani, and M. Monici. 2020. “Effect of Unloading Condition on the Healing Process and Effectiveness of Platelet Rich Plasma as a Countermeasure: Study on in Vivo and in Vitro Wound Healing Models.” International Journal of Molecular Sciences 21(2).

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Cichos, F., K. Gustavsson, B. Mehlig, and G. Volpe. 2020. “Machine Learning for Active Matter.” Nature Machine Intelligence 2(2):94–103.

Clark, B.C., and T.M. Manini. 2012. “What Is Dynapenia?” Nutrition 28(5):495–503.

Clark, N., J. Maclennan, M. Glaser, C. Park, R. Stannarius, P. Tin, and N. Hall. 2011. “Observation and Analysis of Smectic Islands in Space (OASIS).” In 49th AIAA Aerospace Sciences Meeting Including the New Horizons Forum and Aerospace Exposition. January 4–7. Orlando, FL.

Clarke, A.C. 1962. Profiles of the Future: An Enquiry into the Limits of the Possible. New York: Harper and Row.

Clauwaert, P., M. Muys, A. Alloul, J.D. Paepe, A. Luther, X. Sun, C. Ilgrande, et al. 2017. “Nitrogen Cycling in Bioregenerative Life Support Systems: Challenges for Waste Refinery and Food Production Processes.” Progress in Aerospace Sciences 91:87–98.

Cockell, C.S., P. Rettberg, E. Rabbow, and K. Olsson-Francis. 2011. “Exposure of Phototrophs to 548 Days in Low Earth Orbit: Microbial Selection Pressures in Outer Space and on Early Earth.” The ISME Journal 5(10):1671–1682.

Cockell, C.S., R. Santomartino, K. Finster, A.C. Waajen, L.J. Eades, R. Moeller, P. Rettberg, et al. 2020. “Space Station Biomining Experiment Demonstrates Rare Earth Element Extraction in Microgravity and Mars Gravity.” Nature Communications 11(1):5523.

Cockell, C.S., R. Santomartino, K. Finster, A.C. Waajen, N. Nicholson, C.-M. Loudon, L.J. Eades, et al. 2021. “MicrobiallyEnhanced Vanadium Mining and Bioremediation Under Micro- and Mars Gravity on the International Space Station.” Original Research. Frontiers in Microbiology 12.

Cohen, B., M. Dai, S.B. Yakushin, and C. Cho. 2019. “The Neural Basis of Motion Sickness.” Journal of Neurophysiology 121(3):973–982.

Coker, J. 2019. “Recent Advances in Understanding Extremophiles [Version 1; Peer Review: 2 Approved].” F1000Research 8(1917).

Collicott, S.H., and A. Alexeenko. 2019. “Propulsion Testing in Commercial Re-Usable Sub-Orbital Rockets.” AIAA 2019-4354. AIAA Propulsion and Energy 2019 Forum.

Collins, P.J., R.N. Grugel, and A. Radlińska. 2021. “The Influence of Variable Gravity on the Microstructural Development of Tricalcium Silicate Pastes.” Earth and Space 2021 59–66.

Colombo, M., G. Raposo, and C. Théry. 2014. “Biogenesis, Secretion, and Intercellular Interactions of Exosomes and Other Extracellular Vesicles.” Annual Review of Cell and Developmental Biology 30:255–289.

Conrath, M., P.J. Canfield, P.M. Bronowicki, M.E. Dreyer, M.M. Weislogel, and A. Grah. 2013. “Capillary Channel Flow Experiments Aboard the International Space Station.” Physical Review. E: Statistical, Nonlinear, and Soft Matter Physics 88(6):063009.

Correll, M.J., T.P. Pyle, K.D. Millar, Y. Sun, J. Yao, R.E. Edelmann, and J.Z. Kiss. 2013. “Transcriptome Analyses of Arabidopsis Thaliana Seedlings Grown in Space: Implications for Gravity-Responsive Genes.” Planta 238(3):519–533.

Cox, S.E. 2013. “Energy Metabolism.” Pp. 177–185 in Encyclopedia of Human Nutrition, 3rd ed. Cambridge, MA: Academic Press.

Crisp, P.A., D. Ganguly, S.R. Eichten, J.O. Borevitz, and B.J. Pogson. 2016. “Reconsidering Plant Memory: Intersections Between Stress Recovery, RNA Turnover, and Epigenetics.” Science Advances 2(2):e1501340.

Crucian, B.E., A. Choukèr, R.J. Simpson, S. Mehta, G. Marshall, S.M. Smith, S.R. Zwart, et al. 2018. “Immune System Dysregulation During Spaceflight: Potential Countermeasures for Deep Space Exploration Missions.” Frontiers in Immunology 9:1437.

Crucian, B., R.J. Simpson, S. Mehta, R. Stowe, A. Chouker, S.A. Hwang, J.K. Actor, A.P. Salam, D. Pierson, and C. Sams. 2014. “Terrestrial Stress Analogs for Spaceflight Associated Immune System Dysregulation.” Brain, Behavior, and Immunity 39:23–32.

Crucian, B., R.P. Stowe, S. Mehta, H. Quiriarte, D. Pierson, and C. Sams. 2015. “Alterations in Adaptive Immunity Persist During Long-Duration Spaceflight.” npj Microgravity 1(1):15013.

Cucinotta, F.A., and M. Durante. 2006. “Cancer Risk from Exposure to Galactic Cosmic Rays: Implications for Space Exploration by Human Beings.” Lancet Oncology 7(5):431–435.

Cucinotta, F.A., I. Plante, A.L. Ponomarev, and M.H. Kim. 2011. “Nuclear Interactions in Heavy Ion Transport and Event-Based Risk Models.” Radiation Protection Dosimetry 143(2–4):384–390.

Cucinotta, F.A., H. Wu, M.R. Shavers, and K. George. 2003. “Radiation Dosimetry and Biophysical Models of Space Radiation Effects.” Gravitational and Space Biology Bulletin 16(2):11–18.

Cui, C., Y. Li, S. Wang, M. Ren, C. Yang, Z. Jiang, and J. Zhang. 2020. “Review on an Advanced Combustion Technology: Supercritical Hydrothermal Combustion.” Applied Sciences 10(5):1645.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Curran, H.J. 2019. “Developing Detailed Chemical Kinetic Mechanisms for Fuel Combustion.” Proceedings of the Combustion Institute 37(1):57–81.

da Silveira, W.A., H. Fazelinia, S.B. Rosenthal, E.C. Laiakis, M.S. Kim, C. Meydan, Y. Kidane, et al. 2020. “Comprehensive Multi-Omics Analysis Reveals Mitochondrial Stress as a Central Biological Hub for Spaceflight Impact.” Cell 183(5):1185–1201.

Dabrowska, A., J. Kumar, and C. Rallis. 2022. “Nutrient-Response Pathways in Healthspan and Lifespan Regulation.” Cells 11(9):1568.

Dailey, C., C. Bradley, D.F. Jackson Kimball, I.A. Sulai, S. Pustelny, A. Wickenbrock, and A. Derevianko. 2021. “Quantum Sensor Networks as Exotic Field Telescopes for Multi-Messenger Astronomy.” Nature Astronomy 5(2):150–158.

Damkiær, S., L. Yang, S. Molin, and L. Jelsbak. 2013. “Evolutionary Remodeling of Global Regulatory Networks During Long-Term Bacterial Adaptation to Human Hosts.” Proceedings of the National Academy of Sciences 110(19):7766–7771.

Danko, D., D. Bezdan, E.E. Afshin, S. Ahsanuddin, C. Bhattacharya, D.J. Butler, K.R. Chng, et al. 2021. “A Global Metagenomic Map of Urban Microbiomes and Antimicrobial Resistance.” Cell 184(13):3376–3393.

Darch, S.E., C.B. Ibberson, and M. Whiteley. 2017. “Evolution of Bacterial ‘Frenemies.’” mBio 8(3).

De Groh, K.K., and B.A. Banks. 2021. Misse-Flight Facility Polymers and Composites Experiment 1-4 (PCE 1-4). NASA. https://ntrs.nasa.gov/citations/20205008863.

de Groot, R.P., P.J. Rijken, J. den Hertog, J. Boonstra, A.J. Verkleij, S.W. de Laat, and W. Kruijer. 1991. “Nuclear Responses to Protein Kinase C Signal Transduction Are Sensitive to Gravity Changes.” Experimental Cell Research 197(1):87–90.

De Marco, L., G. Valtolina, K. Matsuda, W.G. Tobias, J.P. Covey, and J. Ye. 2019. “A Degenerate Fermi Gas of Polar Molecules.” Science 363(6429):853–856.

Dee. 2018. “Farmbot Has Arrived!” The Payload Blog, Kennedy Space Center Visitor Complex. https://www.kennedyspacecenter.com/blog/04/farmbot-has-arrived.

Delp, M.D., J.M. Charvat, C.L. Limoli, R.K. Globus, and P. Ghosh. 2016. “Apollo Lunar Astronauts Show Higher Cardiovascular Disease Mortality: Possible Deep Space Radiation Effects on the Vascular Endothelium.” Scientific Reports 6(1):29901.

Department of Education. 2022. “Table 318.45. Number and Percentage Distribution of Science, Technology, Engineering, and Mathematics (STEM) Degrees/Certificates Conferred by Postsecondary Institutions, by Race/Ethnicity, Level of Degree/Certificate, and Sex of Student: Academic Years 2011–12 through 2020–21.” Institute of Education Sciences, National Center for Education Statistics, Integrated Postsecondary Education Data System. https://nces.ed.gov/programs/digest/d22/tables/dt22_318.45.asp.

Department of State. 2023. “Enrollment Trends.” Open Doors. https://opendoorsdata.org/data/international-students/enrollment-trends.

Deppner, C., W. Herr, M. Cornelius, P. Stromberger, T. Sternke, C. Grzeschik, A. Grote, et al. 2021. “Collective-Mode Enhanced Matter-Wave Optics.” Physical Review Letters 127(10):100401.

Derevianko, A., K. Gibble, L. Hollberg, N.R. Newbury, C. Oates, M.S. Safronova, L.C. Sinclair, and N. Yu. 2022. “Fundamental Physics with a State-of-the-Art Optical Clock in Space.” Quantum Science and Technology 7(4):044002.

Derevianko, A., and M. Pospelov. 2014. “Hunting for Topological Dark Matter with Atomic Clocks.” Nature Physics 10(2014): 933–936.

Detrell, G. 2021. “Chlorella Vulgaris Photobioreactor for Oxygen and Food Production on a Moon Base—Potential and Challenges.” Review. Frontiers in Astronomy and Space Sciences 8.

Devahdhanush, V.S., I. Mudawar, H.K. Nahra, R. Balasubramaniam, M.M. Hasan, and J.R. Mackey. 2022. “Experimental Heat Transfer Results and Flow Visualization of Vertical Upflow Boiling in Earth Gravity with Subcooled Inlet Conditions—in Preparation for Experiments Onboard the International Space Station.” International Journal of Heat and Mass Transfer 188:122603.

Dhir, V.K., G.R. Warrier, E. Aktinol, D. Chao, J. Eggers, W. Sheredy, and W. Booth. 2012. “Nucleate Pool Boiling Experiments (NPBX) on the International Space Station.” Microgravity Science and Technology 24(5):307–325.

Diedrich, A., S.Y. Paranjape, and D. Robertson. 2007. “Plasma and Blood Volume in Space.” American Journal of the Medical Sciences 334(1):80–85.

Dietrich, D.L., V. Nayagam, M.C. Hicks, P.V. Ferkul, F.L. Dryer, T. Farouk, B.D. Shaw, et al. 2014. “Droplet Combustion Experiments Aboard the International Space Station.” Microgravity Science and Technology 26(2):65–76.

Discher, D.E., L. Smith, S. Cho, M. Colasurdo, A.J. García, and S. Safran. 2017. “Matrix Mechanosensing: From Scaling Concepts in ‘Omics’ Data to Mechanisms in the Nucleus, Regeneration, and Cancer.” Annual Review of Biophysics 46:295–315.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Dissanayake, L., and L.N. Jayakody. 2021. “Engineering Microbes to Bio-Upcycle Polyethylene Terephthalate.” Mini Review. Frontiers in Bioengineering and Biotechnology 9.

Dong, C.Y. Fu, B. Xie, M. Wang and H. Liu. 2017. “Element Cycling and Energy Flux Responses in Ecosystem Simulations Conducted at the Chinese Lunar Palace-1.” Astrobiology 17(1):78–86.

Douglas, G.L., R.M. Wheeler, and R.F. Fritsche. 2021. “Sustaining Astronauts: Resource Limitations, Technology Needs, and Parallels Between Spaceflight Food Systems and Those on Earth.” Sustainability 13(16):9424.

Dowling, T.E. 2020. “Jupiter-Style Jet Stability.” The Planetary Science Journal 1(1):1–9.

Dryer, F.L. 2015. “Chemical Kinetic and Combustion Characteristics of Transportation Fuels.” Proceedings of the Combustion Institute 35(1):117–144.

Drysdale, A., M. Ewert, and A. Hanford. 1999. “Equivalent System Mass Studies of Missions and Concepts,” SAE Technical Paper 1999-01-2081. https://doi.org/10.4271/1999-01-2081.

Drysdale, A., S. Maxwell, M. Ewert, and A. Hanford. 2000. “Systems Analysis of Life Support for Long-Duration Missions.” SAE Technical Paper 2000-01-2394.

Du, H.M., C. Liu, X.W. Jin, C.F. Du, Y. Yu, S. Luo, W.Z. He, and S.Z. Zhang. 2022. “Overexpression of the Aldehyde Dehydrogenase Gene Zmaldh Confers Aluminum Tolerance in Arabidopsis Thaliana.” International Journal of Molecular Sciences 23(1).

Dufrêne, Y.F., and A. Persat. 2020. “Mechanomicrobiology: How Bacteria Sense and Respond to Forces.” Nature Reviews Microbiology 18(4):227–240.

Dukler, A.E., J.A. Fabre, J.B. McQuillen, and R. Vernon. 1988. “Gas-Liquid Flow at Microgravity Conditions: Flow Patterns and Their Transitions.” International Journal of Multiphase Flow 14(4):389–400.

Dunn, J.O., M.G. Mythen, and M.P. Grocott. 2016. “Physiology of Oxygen Transport.” BJA Education 16(10):341–348.

Durante, M. 2014. “Space Radiation Protection: Destination Mars.” Life Sciences in Space Research 1:2–9.

Durante, M., and F.A. Cucinotta. 2008. “Heavy Ion Carcinogenesis and Human Space Exploration.” Nature Reviews: Cancer 8(6):465–472.

Duri, L.G., A.G. Caporale, Y. Rouphael, S. Vingiani, M. Palladino, S. De Pascale, and P. Adamo. 2022. “The Potential for Lunar and Martian Regolith Simulants to Sustain Plant Growth: A Multidisciplinary Overview.” Review. Frontiers in Astronomy and Space Sciences 8.

Duri, L.G., A. Pannico, S.A. Petropoulos, A.G. Caporale, P. Adamo, G. Graziani, A. Ritieni, S. De Pascale, and Y. Rouphael. 2022. “Bioactive Compounds and Antioxidant Activity of Lettuce Grown in Different Mixtures of Monogastric-Based Manure with Lunar and Martian Soils.” Original Research. Frontiers in Nutrition 9.

El Karoui, M., M. Hoyos-Flight, and L. Fletcher. 2019. “Future Trends in Synthetic Biology-A Report.” Frontiers in Bioengineering and Biotechnology 7:175.

Elgart, S.R., M.P. Little, L.J. Chappell, C.M. Milder, M.R. Shavers, J.L. Huff, and Z.S. Patel. 2018. “Radiation Exposure and Mortality from Cardiovascular Disease and Cancer in Early NASA Astronauts.” Scientific Reports 8(1):8480.

Elgindi, M., J. Sapudom, I.H. Ibrahim, M. Al-Sayegh, W. Chen, A. Garcia-Sabaté, and J.C.M. Teo. 2021. “May the Force Be with You (or Not): The Immune System Under Microgravity.” Cells 10(8).

Elliott, E.R., M.C. Krutzik, J.R. Williams, R.J. Thompson, and D.C. Aveline. 2018. “NASA’s Cold Atom Lab (CAL): System Development and Ground Test Status.” npj Microgravity 4(1):16.

Eloe-Fadrosh, E.A., F. Ahmed, A., M. Babinski, J. Baumes, M. Borkum, L. Bramer, et al. 2021. “The National Microbiome Data Collaborative Data Portal: An Integrated Multi-Omics Microbiome Data Resource.” Nucleic Acids Research 50(D1):D828–D836.

Ely, T.A., J. Seubert, N. Bradley, T. Drain, and S. Bhaskaran. 2021. “Radiometric Autonomous Navigation Fused with Optical for Deep Space Exploration.” The Journal of the Astronautical Sciences 68:300–325.

English, K.L., J.J. Bloomberg, A.P. Mulavara, and L.L. Ploutz-Snyder. 2019. “Exercise Countermeasures to Neuromuscular Deconditioning in Spaceflight.” Comprehensive Physiology 10(1):171–196.

Erbil, H.Y. 2014. “The Debate on the Dependence of Apparent Contact Angles on Drop Contact Area or Three-Phase Contact Line: A Review.” Surface Science Reports 69(4):325–365.

ESA (European Space Agency). 2020. “Orbital Space Aging Tests Offered for Space Age Materials.” https://www.esa.int/Enabling_Support/Space_Engineering_Technology/Orbital_space_ageing_tests_offered_for_space_age_materials.

Escobar, C., N. Altaf, R. Barker, M. Bhuiyan, M. Correll, R. Fritsche, S. Humphrey, et al. “Research Campaign—Artificial Intelligence for Autonomous Space Plant Production.” Input paper submitted to the Committee on Decadal Survey on Biological and Physical Sciences Research in Space 2023–2032. https://www.nationalacademies.org/our-work/decadal-survey-on-life-and-physical-sciences-research-in-space-2023-2032.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Espinosa-Hoyos, D., H. Du, N.X. Fang, and K.J. Van Vliet. 2017. “Poly(HDDA)-Based Polymers for Microfabrication and Mechanobiology.” MRS Advances 2(24):1315–1321.

Espinosa-Hoyos, D., A. Jagielska, K.A. Homan, H. Du, T. Busbee, D.G. Anderson, N.X. Fang, J.A. Lewis, and K.J. Van Vliet. 2018. “Engineered 3D-Printed Artificial Axons.” Scientific Reports 8(1):478.

Everett, H. 2022. “Astronauts Test 3D Bioprinted Skin Bandages in Space.” 3D Printing Industry. https://3dprintingindustry.com/news/astronauts-test-3d-bioprinted-skin-bandages-in-space-202445.

Fajardo-Cavazos, P., and W.L. Nicholson. 2021. “Mechanotransduction in Prokaryotes: A Possible Mechanism of Spaceflight Adaptation.” Life (Basel) 11(1).

Falkowski, P.G., T. Fenchel, and E.F. Delong. 2008. “The Microbial Engines That Drive Earth’s Biogeochemical Cycles.” Science 320(5879):1034–1039.

Farouk, T.I., D. Dietrich, F.E. Alam, and F.L. Dryer. 2017. “Isolated N-Decane Droplet Combustion—Dual Stage and Single Stage Transition to ‘Cool Flame’ Droplet Burning.” Proceedings of the Combustion Institute 36(2):2523–2530.

Fedderke, M.A., P.W. Graham, and S. Rajendran. 2022. “Asteroids for μHz Gravitational-Wave Detection.” Physical Review D 105(10):103018.

Ferkul, P. 2017. “Centrifuge in Free Fall: Combustion at Partial Gravity.” Paper presented at the Annual Meeting American Society for Gravitational and Space Research, Seattle, WA.

Ferl, R.J., J. Koh, F. Denison, and A.L. Paul. 2015. “Spaceflight Induces Specific Alterations in the Proteomes of Arabidopsis.” Astrobiology 15(1):32–56.

Fernander, M.C., P.K. Parsons, B. Khaled, A. Bradley, J.L. Graves, and M.D. Thomas. 2022. “Adaptation to Simulated Microgravity in Streptococcus Mutans.” npj Microgravity 8(1):17.

Fernandez-Gonzalo, R., S. Baatout, and M. Moreels. 2017. “Impact of Particle Irradiation on the Immune System: From the Clinic to Mars.” Frontiers in Immunology 8:177.

Fester, D.A., R.N. Eberhardt, and J.R. Tegart. 1975. “Space Shuttle Reaction Control Subsystem Propellant Acquisition Technology.” Journal of Spacecraft and Rockets 12(12):705–710.

Feynman, R.P. 1982. “Simulating Physics with Computers.” International Journal of Theoretical Physics 21(6):467–488.

Fitts, R.H., S.W. Trappe, D.L. Costill, P.M. Gallagher, A.C. Creer, P.A. Colloton, J.R. Peters, J.G. Romatowski, J.L. Bain, and D.A. Riley. 2010. “Prolonged Space Flight-Induced Alterations in the Structure and Function of Human Skeletal Muscle Fibres.” Journal of Physiology 588(Pt 18):3567–3592.

Flynn-Evans, E.E., L.K. Barger, A.A. Kubey, J.P. Sullivan, and C.A. Czeisler. 2016. “Circadian Misalignment Affects Sleep and Medication Use Before and During Spaceflight.” npj Microgravity 2(1):15019.

Fonseca, A.P., and J.C. Sousa. 2007. “Effect of Shear Stress on Growth, Adhesion and Biofilm Formation of Pseudomonas Aeruginosa with Antibiotic-Induced Morphological Changes.” International Journal of Antimicrobial Agents 30(3):236–241.

Foox, J., S.W. Tighe, C.M. Nicolet, J.M. Zook, M. Byrska-Bishop, W.E. Clarke, M.M. Khayat, et al. 2021. “Performance Assessment of DNA Sequencing Platforms in the ABRF Next-Generation Sequencing Study.” Nature Biotechnology 39(9):1129–1140.

Foster, J.S., C.L. Khodadad, S.R. Ahrendt, and M.L. Parrish. 2013. “Impact of Simulated Microgravity on the Normal Developmental Time Line of an Animal-Bacteria Symbiosis.” Scientific Reports 3:1340.

Foust, J. 2019. “How Much Does the Public Care About Returning to the Moon?” SpaceNews. https://spacenews.com/foust-forward-how-much-does-the-public-care-about-returning-to-the-moon.

Francoz, E., P. Ranocha, H. Nguyen-Kim, E. Jamet, V. Burlat, and C. Dunand. 2015. “Roles of Cell Wall Peroxidases in Plant Development.” Phytochemistry 112:15–21.

Fredriksson, H. 2022. “Analysis of the Solidification Process of Metal Alloys Under Microgravity Conditions.” Original Research. Frontiers in Metals and Alloys 1.

Freeman, R.B., and W. Huang. 2014a. “Collaboration: Strength in Diversity.” Nature 513(305).

Freitas-Dias, R., T.I. Lima, J.M. Costa-Junior, L.M. Gonçalves, H.N. Araujo, F.M.M. Paula, G.J. Santos, et al. 2022. “Offspring from Trained Male Mice Inherit Improved Muscle Mitochondrial Function Through PPAR Co-Repressor Modulation.” Life Sciences 291:120239.

Freundlich, A.A. Ignatiev, C. Horton, M. Duke, P. Curreri, and L. Sibille. 2005. “Manufacture of Solar Cells on the Moon.” Pp. 794–797 in IEEE Photovoltaic Specialists Conference, 2005. Lake Buena Vista, FL.

Friedman, M.A., A. Abood, B. Senwar, Y. Zhang, C.R. Maroni, V.L. Ferguson, C.R. Farber, and H.J. Donahue. 2020. “Genetic Variability Affects the Skeletal Response to Unloading.” bioRxiv 2020.06.26.174326, preprint.

Friedman, M.A., A. Abood, B. Senwar, Y. Zhang, C.R. Maroni, V.L. Ferguson, C.R. Farber, and H.J. Donahue. 2021. “Genetic Variability Affects the Skeletal Response to Immobilization in Founder Strains of the Diversity Outbred Mouse Population.” Bone Reports 15:101140.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Friedman, M.A., Y. Zhang, J.S. Wayne, C.R. Farber, and H.J. Donahue. 2019. “Single Limb Immobilization Model for Bone Loss from Unloading.” Journal of Biomechanics 83:181–189.

Friedman, R. 1993. Risks and Issues in Fire Safety on the Space Station. NASA. Cleveland, OH. https://ntrs.nasa.gov/api/citations/19940022933/downloads/19940022933.pdf.

Friedman, R. 1996. “Fire Safety in Spacecraft.” Fire and Materials 20(5):235–243.

Frieman, J.A., M.S. Turner, and D. Huterer. 2008. “Dark Energy and the Accelerating Universe.” Annual Review of Astronomy and Astrophysics 46:385–432.

Frydenlund Michelsen, C., S.M. Hossein Khademi, H. Krogh Johansen, H. Ingmer, P.C. Dorrestein, and L. Jelsbak. 2016. “Evolution of Metabolic Divergence in Pseudomonas Aeruginosa During Long-Term Infection Facilitates a Proto-Cooperative Interspecies Interaction.” The ISME Journal 10(6):1323–1336.

Frye, K., S. Abend, W. Bartosch, A. Bawamia, D. Becker, H. Blume, C. Braxmaier, et al. 2021. “The Bose-Einstein Condensate and Cold Atom Laboratory.” EPJ Quantum Technology 8(1).

Fu, Y., L. Li, B. Xie, C. Dong, M. Wang, B. Jia, L. Shao, et al. 2016. “How to Establish a Bioregenerative Life Support System for Long-Term Crewed Missions to the Moon or Mars.” Astrobiology 16(12):925–936.

Fujita, O. 2015. “Solid Combustion Research in Microgravity as a Basis of Fire Safety in Space.” Proceedings of the Combustion Institute 35(3):2487–2502.

Fujita, S.I., L. Rutter, Q. Ong, and M. Muratani. 2020. “Integrated RNA-Seq Analysis Indicates Asynchrony in Clock Genes Between Tissues Under Spaceflight.” Life (Basel) 10(9).

Furukawa, S., A. Nagamatsu, M. Nenoi, A. Fujimori, S. Kakinuma, T. Katsube, B. Wang, et al. 2020. “Space Radiation Biology for ‘Living in Space.’” BioMed Research Intitute 2020:4703286.

Galhardo, R.S., P.J. Hastings, and S.M. Rosenberg. 2007. “Mutation as a Stress Response and the Regulation of Evolvability.” Critical Reviews in Biochemistry and Molecular Biology 42(5):399–435.

Gallo, C., L. Ridolfi, and S. Scarsoglio. 2020. “Cardiovascular Deconditioning During Long-Term Spaceflight Through Multiscale Modeling.” npj Microgravity 6(1):27.

Gambara, G., M. Salanova, S. Ciciliot, S. Furlan, M. Gutsmann, G. Schiffl, U. Ungethuem, P. Volpe, H.C. Gunga, and D. Blottner. 2017. “Microgravity-Induced Transcriptome Adaptation in Mouse Paraspinal Longissimus Dorsi Muscle Highlights Insulin Resistance-Linked Genes.” Frontiers in Physiology 8:279.

Ganesan, V., R. Patel, J. Hartwig, and I. Mudawar. 2021. “Universal Critical Heat Flux (CHF) Correlations for Cryogenic Flow Boiling in Uniformly Heated Tubes.” International Journal of Heat and Mass Transfer 166:120678.

Garland, J.L., K.L. Cook, M. Johnson, R. Sumner, and N. Fields. 1997. “Density and Composition of Microorganisms During Long-Term (418 Day) Growth of Potato Using Biologically Reclaimed Nutrients from Inedible Plant Biomass.” Advances in Space Research 20(10):1931–1937.

Garrett-Bakelman, F.E., M. Darshi, S.J. Green, R.C. Gur, L. Lin, B.R. Macias, M.J. McKenna, et al. 2019. “The NASA Twins Study: A Multidimensional Analysis of a Year-Long Human Spaceflight.” Science 364(6436). https://doi.org/10.1126/science.aau8650.

Gaskill, M. 2019. “Solving the Challenges of Long Duration Space Flight with 3D Printing.” https://www.nasa.gov/mission_pages/station/research/news/3d-printing-in-space-long-duration-spaceflight-applications.

Gatens, R. 2022. “The International Space Station: The Decade of Results.” Presentation to the Committee on Biological and Physical Sciences in Space (March 23, 2022). https://www.nationalacademies.org/event/03-21-2022/committee-on-biological-and-physical-sciences-in-space-space-science-week-2022.

Gavira, J.A., F. Otálora, L.A. González-Ramírez, E. Melero, A.E.S.v. Driessche, and J.M. García-Ruíz. 2020. “On the Quality of Protein Crystals Grown Under Diffusion Mass-Transport Controlled Regime (I).” Crystals 10(2):68.

Georgescu, I. 2020. “25 Years of BEC.” Nature Reviews Physics 2(8):396.

Giannone, M. 2017. “From 2D to 3D, Space Station Microscope Gets an Upgrade.” https://www.nasa.gov/feature/from-2d-to-3d-space-station-microscope-gets-an-upgrade.

Gilbert, R., N. Tanenbaum, and S. Bhattacharya. 2022. “Asparagine Biosynthesis as a Mechanism of Increased Host Lethality Induced by Serratia Marcescens in Simulated Microgravity Environments.” Heliyon 8(5):e09379.

Gilbert, R., M. Torres, R. Clemens, S. Hateley, R. Hosamani, W. Wade, and S. Bhattacharya. 2020. “Spaceflight and Simulated Microgravity Conditions Increase Virulence of Serratia Marcescens in the Drosophila Melanogaster Infection Model.” npj Microgravity 6(1):4.

Giorgini, S., L.P. Pitaevskii, and S. Stringari. 2008. “Theory of Ultracold Atomic Fermi Gases.” Reviews of Modern Physics 80(4):1215–1274.

Giovanetti, A., F. Tortolici, and S. Rufini. 2020. “Why Do the Cosmic Rays Induce Aging?” Frontiers in Physiology 11:955.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Glaubitz, B., K. Kullack, W. Dreier, A. Seidel, W. Soellner, A. Diefenbach, and S. Schneider. 2015. “The Electro-Magnetic Levitator (EML) on Board the ISS—an Overview and Outlook.” Deutscher Luft- und Raumfahrtkongress 1–9.

Gòdia, F., J. Albiol, J. Montesinos, J. Pérez, N. Creus, F. Cabello, X. Mengual, A. Montras and C. Lasseur. 2002. “MELiSSA: A Loop of Interconnected Bioreactors to Develop Life Support in Space.” Journal of Biotechnology 99(3):319–330.

Goel, N., T.L. Bale, C.N. Epperson, S.G. Kornstein, G.R. Leon, L.A. Palinkas, J.W. Stuster, and D.F. Dinges. 2014. “Effects of Sex and Gender on Adaptation to Space: Behavioral Health.” Journal of Womens Health (Larchmt) 23(11):975–986.

Gold, W.M., and L.L. Koth. 2016. “Pulmonary Function Testing.” Murray and Nadel’s Textbook of Respiratory Medicine 407–435.

Golla, B.R., A. Mukhopadhyay, B. Basu, and S.K. Thimmappa. 2020. “Review on Ultra-High Temperature Boride Ceramics.” Progress in Materials Science 111:100651.

Good, B.H., M.J. McDonald, J.E. Barrick, R.E. Lenski, and M.M. Desai. 2017. “The Dynamics of Molecular Evolution Over 60,000 Generations.” Nature 551(7678):45–50.

Gordon, V.D., and Wang, L. 2019. “Bacterial Mechanosensing: The Force Will Be with You, Always.” Journal of Cell Science 132(7):jcs227694.

Graham, T., R. Scorza, R. Wheeler, B. Smith, C. Dardick, A. Dixit, D. Raines, et al. 2015. “Over-Expression of FT1 in Plum (Prunus domestica) Results in Phenotypes Compatible with Spaceflight: A Potential New Candidate Crop for Bioregenerative Life Support Systems.” Gravitational and Space Research 3(1):39–50.

Grant, K.C., C.L.M. Khodadad, and J.S. Foster. 2014. “Role of Hfq in an Animal–Microbe Symbiosis Under Simulated Microgravity Conditions.” International Journal of Astrobiology 13(1):53–61.

Green, M.J., J.W. Aylott, P. Williams, A.M. Ghaemmaghami, and P.M. Williams. 2021. “Immunity in Space: Prokaryote Adaptations and Immune Response in Microgravity.” Life 11(2):112.

Greiner, M., O. Mandel, T. Esslinger, T.W. Hänsch, and I. Bloch. 2002. “Quantum Phase Transition from a Superfluid to a Mott Insulator in a Gas of Ultracold Atoms.” Nature 415(6867):39–44.

Groover, A. 2016. “Gravitropisms and Reaction Woods of Forest Trees—Evolution, Functions and Mechanisms.” New Phytologist 211:790–802.

Guéguinou, N., C. Huin-Schohn, M. Bascove, J.L. Bueb, E. Tschirhart, C. Legrand-Frossi, and J.P. Frippiat. 2009. “Could Spaceflight-Associated Immune System Weakening Preclude the Expansion of Human Presence Beyond Earth’s Orbit?” Journal of Leukocyte Biology 86(5):1027–1038.

Guerges, M. 2021. “NASA Additively Manufactured Rocket Engine Hardware Passes Cold Spray, Hot Fire Tests.” https://www.nasa.gov/centers/marshall/news/releases/2021/nasa-additively-manufactured-rocket-engine-hardware-passes-cold-spray-hot-fire-tests.html.

Guibaud, A., G. Legros, J.-L. Consalvi, and J. Torero. 2022. “Fire Safety in Spacecraft: Past Incidents and Deep Space Challenges.” Acta Astronautica 195:344–354.

Guillamat, P., Z. Kos, J. Hardoüin, J. Ignés-Mullol, M. Ravnik, and F. Sagués. 2018. “Active Nematic Emulsions.” Science Advances 4(4):eaao1470. https://www.science.org/doi/10.1126/sciadv.aao1470.

Guimarces, A.R., I. Correia, I. Sousa, C. Oliveira, G. Moura, A.R. Bezerra, and M.A.S. Santos. 2021. “tRNAs as a Driving Force of Genome Evolution in Yeast.” Frontiers in Microbiology 12:634004.

Guntur, S.V., C. Mackowiak, and R.M. Wheeler. 1999. “Recycling of Na in Advanced Life Support: Strategies Based on Crop Production Systems.” Life Support & Biosphere Science 6(2):153–160.

Guzman, A. 2023. “ISS Research Results Resources Library.” NASA. https://www.nasa.gov/mission_pages/station/research/results_category.

Häder, D.P., M. Braun, D. Grimm, and R. Hemmersbach. 2017. “Gravireceptors in Eukaryotes—a Comparison of Case Studies on the Cellular Level.” npj Microgravity 3:13.

Hadler, K., D.J.P. Martin, J. Carpenter, J.J. Cilliers, A. Morse, S. Starr, J.N. Rasera, K. Seweryn, P. Reiss, and A. Meurisse. 2020. “A Universal Framework for Space Resource Utilisation (SRU).” Planetary and Space Science 182:104811.

Haines, S.R., A. Bope, J.M. Horack, M.E. Meyer, and K.C. Dannemiller. 2019. “Quantitative Evaluation of Bioaerosols in Different Particle Size Fractions in Dust Collected on the International Space Station (ISS).” Applied Microbiology and Biotechnology 103(18):7767–7782.

Hall, N., K. Logsdon, and K. Magee. 2006. “Shear History Extensional Rheology Experiment: A Proposed ISS Experiment.” 44th AIAA Aerospace Sciences Meeting and Exhibit.

Hall, N., G. McKinley, P. Erni, J. Soulages, and K. Magee. 2009. “Preliminary Findings from the SHERE ISS Experiment.” 47th AIAA Aerospace Sciences Meeting Including the New Horizons Forum and Aerospace Exposition.

Hamant, O., M.G. Heisler, H. Jönsson, P. Krupinski, M. Uyttewaal, P. Bokov, F. Corson, et al. 2008. “Developmental Patterning by Mechanical Signals in Arabidopsis.” Science (New York) 322(5908):1650–1655.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Handakumbura, P., K. Hixson, and A. Rivas-Ubach. 2022. C4 Photosynthesis in Space. https://taskbook.nasaprs.com/tbp/index.cfm?action=public_query_taskbook_content&TASKID=14806.

Hangarter, R.P. 1997. “Gravity, Light and Plant Form.” Plant, Cell & Environment 20(6):796–800.

Hansen, H.C., W.L. Johnson, M. Meyer, A. Werkheiser, and J.R. Stephens. 2020. “Cryogenic Fluid Management Technologies Enabling for the Artemis Program and Beyond.” Paper presented at ASCEND. https://ntrs.nasa.gov/citations/20205008297.

Hao, Z., L. Li, Y. Fu, and H. Liu. 2018. “The Influence of Bioregenerative Life-Support System Dietary Structure and Lifestyle on the Gut Microbiota: A 105-Day Ground-Based Space Simulation in Lunar Palace 1.” Environmental Microbiology 20(10):3643–3656.

Hargens, A.R., and S. Richardson. 2009. “Cardiovascular Adaptations, Fluid Shifts, and Countermeasures Related to Space Flight.” Respiratory Physiology & Neurobiology 169(Suppl 1):S30–S33.

Hargens, A.R., and D.E. Watenpaugh. 1996. “Cardiovascular Adaptation to Spaceflight.” Medicine & Science in Sports & Exercise 28(8):977–982.

Harm, D.L., R.T. Jennings, J.V. Meck, M.R. Powell, L. Putcha, C.P. Sams, S.M. Schneider, L.C. Shackelford, S.M. Smith, and P.A. Whitson. 2001. “Invited Review: Gender Issues Related to Spaceflight: A NASA Perspective.” Journal of Applied Physiology 91(5):2374–2383.

Hartwig, J., S. Darr, and A. Asencio. 2016. “Assessment of Existing Two Phase Heat Transfer Coefficient and Critical Heat Flux Correlations for Cryogenic Flow Boiling in Pipe Quenching Experiments.” International Journal of Heat and Mass Transfer 93:441–463.

Hasterok, R., P. Catalan, S.P. Hazen, A.C. Roulin, J.P. Vogel, K. Wang, and L.A.J. Mur. 2022. “Brachypodium: 20 Years as a Grass Biology Model System; the Way Forward?” Trends in Plant Science 27(10):1002–1016.

Haveman, N.J., C.L.M. Khodadad, A.R. Dixit, A.S. Louyakis, G.D. Massa, K. Venkateswaran, and J.S. Foster. 2021. “Evaluating the Lettuce Metatranscriptome with Minion Sequencing for Future Spaceflight Food Production Applications.” npj Microgravity 7(1):22.

Haveman, N.J.S., and A.C. Schuerger. 2022. “Diagnosing an Opportunistic Fungal Pathogen on Spaceflight-Grown Plants Using the Minion Sequencing Platform.” Astrobiology 22(1):1–6.

Haveman, N., M. Settles, A. Zupanska, T. Graham, B. Califar, J. Callaham, D. Jha, et al. 2023. “Elevating the Use of Genetic Engineering to Support Sustainable Plant Agriculture for Human Space Exploration.” Input paper submitted to the Committee on Decadal Survey on Biological and Physical Sciences Research in Space 2023–2032. https://www.nationalacademies.org/our-work/decadal-survey-on-life-and-physical-sciences-research-in-space-2023-2032.

He, M., J.P. Gales, É. Ducrot, Z. Gong, G. Yi, S. Sacanna, and D.J. Pine. 2020. “Colloidal Diamond.” Nature 585:524–529.

Heard, E., and R.A. Martienssen. 2014. “Transgenerational Epigenetic Inheritance: Myths and Mechanisms.” Cell 157(1): 95–109.

Heinse, R., S.B. Jones, M. Tuller, G.E. Bingham, I.G. Podolski and D. Or. 2009. “Providing Optimal Root-Zone Fluid Fluxes: Effects of Hysteresis on Capillary-Dominated Water Distributions in Reduced Gravity,” Technical Paper 2009-01-2360. SAE International.

Heinse, R., O. Monje, J. Richards, N. Dufour, and N. Lewis. 2022. “Root-Zone Water Stress Assessment for the Advanced Plant Habitat (APH) Inaugural Mission on the International Space Station (ISS).” Paper presented at the 44th COSPAR Scientific Assembly, Athens, Greece, July 16–24.

Heisler, M.G., O. Hamant, P. Krupinski, M. Uyttewaal, C. Ohno, H. Jönsson, et al. 2010. “Alignment Between PIN1 Polarity and Microtubule Orientation in the Shoot Apical Meristem Reveals a Tight Coupling Between Morphogenesis and Auxin Transport.” PLOS Biology 8(10):e1000516.

Hendrickx, L., H. De Wever, V. Hermans, F. Mastroleo, N. Morin, A. Wilmotte, P. Janssen, and M. Mergeay. 2006. “Microbial Ecology of the Closed Artificial Ecosystem MELiSSA (Micro-Ecological Life Support System Alternative): Reinventing and Compartmentalizing the Earth’s Food and Oxygen Regeneration System for Long-Haul Space Exploration Missions.” Research in Microbiology 157(1):77–86.

Hernández-Coronado, M., P.C. Dias Araujo, P.-L. Ip, C.O. Nunes, R. Rahni, M.M. Wudick, M.A. Lizzio, J.A. Feijó, and K.D. Birnbaum. 2022. “Plant Glutamate Receptors Mediate a Bet-Hedging Strategy Between Regeneration and Defense.” Developmental Cell 57(4):451–465.

Herranz, R., J.P. Vandenbrink, A. Villacampa, A. Manzano, W.L. Poehlman, F.A. Feltus, J.Z. Kiss, and F.J. Medina. 2019. “RNAseq Analysis of the Response of Arabidopsis thaliana to Fractional Gravity Under Blue-Light Stimulation During Spaceflight.” Original Research. Frontiers in Plant Science 10.

Herzog, D., V. Seyda, E. Wycisk, and C. Emmelmann. 2016. “Additive Manufacturing of Metals.” Acta Materialia 117:371–392.

Heveran, C.M., S.L. Williams, J. Qiu, J. Artier, M.H. Hubler, S.M. Cook, J.C. Cameron, and W.V. Srubar. 2020. “Biomineralization and Successive Regeneration of Engineered Living Building Materials.” Matter 2(2):481–494. https://doi.org/10.1016/j.matt.2019.11.016.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Hewezi, T., V. Pantalone, M. Bennett, C. Neal Stewart, Jr., and T.M. Burch-Smith. 2018. “Phytopathogen-Induced Changes to Plant Methylomes.” Plant Cell Reports 37(1):17–23.

Higashitani, A., T. Hashizume, M. Takiura, N. Higashitani, M. Teranishi, R. Oshima, S. Yano, K. Kuriyama, and A. Higashibata. 2021. “Histone Deacetylase HDA-4-Mediated Epigenetic Regulation in Space-Flown C. Elegans.” npj Microgravity 7(1):33.

Hilzinger, J.M., S. Freidline, D. Sivanandan, Y.-F. Cheng, S. Yamazaki, D.S. Clark, J.M. Skerker, and A.P. Arkin. 2022. “Acetaminophen Production in the Edible, Filamentous Cyanobacterium Arthrospira Platensis.” bioRxiv 2022.06.30.498297, preprint.

Ho, D., G. Makrygiorgos, A. Hill, and A.J. Berliner. 2022. “Towards an Extension of Equivalent System Mass for Human Exploration Missions on Mars.” npj Microgravity 8(1):30.

Hofstra, B., V.V. Kulkarni, S. Munoz-Najar Galvez, B. He, D. Jurafsky, and D.A. McFarland. 2020. “The Diversity–Innovation Paradox in Science.” Proceedings of the National Academy of Sciences 117(17):9284–9291.

Holtze, S., E. Gorshkova, S. Braude, A. Cellerino, P. Dammann, T.B. Hildebrandt, A. Hoeflich, et al. 2021. “Alternative Animal Models of Aging Research.” Review. Frontiers in Molecular Biosciences 8.

Hołyńska, M., A. Tighe, and C. Semprimoschnig. 2018. “Coatings and Thin Films for Spacecraft Thermo-Optical and Related Functional Applications.” Advanced Materials Interfaces 5(11):1701644.

Honda, Y., S. Honda, M. Narici, and N.J. Szewczyk. 2014. “Spaceflight and Ageing: Reflecting on Caenorhabditis Elegans in Space.” Gerontology 60(2):138–142.

Hopkins, S.R., A.C. Henderson, D.L. Levin, K. Yamada, T. Arai, R.B. Buxton, and G.K. Prisk. 2007. “Vertical Gradients in Regional Lung Density and Perfusion in the Supine Human Lung: The Slinky Effect.” Journal of Applied Physiology 103(1):240–248.

Horneck, G., D.M. Klaus, and R.L. Mancinelli. 2010. “Space Microbiology.” Microbiology and Molecular Biology Reviews 74(1):121–156.

Horneck, G., R. Moeller, J. Cadet, T. Douki, R.L. Mancinelli, W.L. Nicholson, C. Panitz, et al. 2012. “Resistance of Bacterial Endospores to Outer Space for Planetary Protection Purposes—Experiment Protect of the Expose-E Mission.” Astrobiology 12(5):445–456.

Hoson, T., and K. Wakabayashi. 2015. “Role of the Plant Cell Wall in Gravity Resistance.” Phytochemistry 112:84–90.

Hughes-Fulford, M. 2003. “Function of the Cytoskeleton in Gravisensing During Spaceflight.” Advances in Space Research 32(8):1585–1593.

Hughes-Fulford, M., T.T. Chang, E.M. Martinez, and C.F. Li. 2015. “Spaceflight Alters Expression of Microrna During T-Cell Activation.” FASEB Journal 29(12):4893–4900.

Hughson, R.L., A.D. Robertson, P. Arbeille, J.K. Shoemaker, J.W. Rush, K.S. Fraser, and D.K. Greaves. 2016. “Increased Postflight Carotid Artery Stiffness and Inflight Insulin Resistance Resulting from 6-Mo Spaceflight in Male and Female Astronauts.” American Journal Physiology Heart and Circulatory Physiology 310(5):H628–H638.

Hupfeld, K.E., H.R. McGregor, V. Koppelmans, N.E. Beltran, I.S. Kofman, Y.E. De Dios, R.F. Riascos, et al. 2022. “Brain and Behavioral Evidence for Reweighting of Vestibular Inputs with Long-Duration Spaceflight.” Cerebral Cortex 32(4):755–769.

Hupfeld, K.E., H.R. McGregor, P.A. Reuter-Lorenz, and R.D. Seidler. 2021. “Microgravity Effects on the Human Brain and Behavior: Dysfunction and Adaptive Plasticity.” Neuroscience and Biobehavioral Reviews 122:176–189.

Hurlbert, K.M., L.C. Witte, F.R. Best, and C. Kurwitz. 2004. “Scaling Two-Phase Flows to Mars and Moon Gravity Conditions.” International Journal of Multiphase Flow 30(4):351–368.

Hutcheson, J.D., and E. Aikawa. 2018. “Extracellular Vesicles in Cardiovascular Homeostasis and Disease.” Current Opinion in Cardiology 33(3):290–297.

Hyman, A.A., and K. Simons. 2012. “Cell Biology. Beyond Oil and Water—Phase Transitions in Cells.” Science 337(6098): 1047–1049.

Ibáñez, S., E. Carneros, P.S. Testillano, and J.M. Pérez-Pérez. 2020. “Advances in Plant Regeneration: Shake, Rattle and Roll.” Plants (Basel) 9(7).

Ijioma, E.R., H. Izuhara, M. Mimura, and T. Ogawa. 2015. “Homogenization and Fingering Instability of a Microgravity Smoldering Combustion Problem with Radiative Heat Transfer.” Combustion and Flame 162(10):4046–4062.

Ikeuchi, M., B. Rymen, and K. Sugimoto. 2020. “How Do Plants Transduce Wound Signals to Induce Tissue Repair and Organ Regeneration?” Current Opinion in Plant Biology 57:72–77.

Inguscio, M., W. Ketterle, and C. Salomon. 2008. “Ultra-Cold Fermi Gases.” Proceedings of the International School of Physics “Enrico Fermi” 164. Amsterdam, Netherlands: IOS Press.

Inoue, K., H. Ohta, H. Asano, O. Kawanami, R. Imai, K. Suzuki, Y. Shinmoto, T. Kurimoto, and S. Matsumoto. 2021a. “Heat Loss Analysis of Flow Boiling Experiments Onboard International Space Station with Unclear Thermal Environmental Conditions (2nd Report: Liquid-Vapor Two-Phase Flow Conditions at Test Section Inlet).” Microgravity Science and Technology 33(5):57.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Inoue, K., H. Ohta, Y. Toyoshima, H. Asano, O. Kawanami, R. Imai, K. Suzuki, Y. Shinmoto, and S. Matsumoto. 2021b. “Heat Loss Analysis of Flow Boiling Experiments Onboard International Space Station with Unclear Thermal Environmental Conditions (1st Report: Subcooled Liquid Flow Conditions at Test Section Inlet).” Microgravity Science and Technology 33(2):28.

Isachenkov, M., S. Chugunov, I. Akhatov, and I. Shishkovsky. 2021. “Regolith-Based Additive Manufacturing for Sustainable Development of Lunar Infrastructure—an Overview.” Acta Astronautica 180:650–678.

ISSNL (ISS National Laboratory). 2017. “The ISS National Lab and NCATS Announce Five Projects Selected from International Space Station Funding Opportunity Focused on Human Physiology Research.” http://www.iss-casis.org/iss360/casis-and-ncats-announce-five-projects-selected-from-international-space-station-funding-opportunity-focused-on-human-physiology-research.

ISSNL. 2018. ISS U.S. National Lab 2018 Annual Report. Melbourne, FL. https://www.issnationallab.org/ar2018.

ISSNL. 2023. “In-Space Production Applications: Advanced Manufacturing and Materials.” Center for the Advancement of Science in Space. https://www.issnationallab.org/ispa-materials-manufacturing.

Ivanova, T., S. Sapunova, P. Kostov, and I. Dandolov. 2001. “First Successful Space Seed-to-Seed Plant Growth Experiment in the SVET-2 Space Greenhouse in 1997.” Aerospace Research in Bulgaria (16):12–23.

Jaalouk, D.E., and J. Lammerding. 2009. “Mechanotransduction Gone Awry.” Nature Reviews: Molecular Cell Biology 10(1):63–73.

Jackson, N.E., M.A. Webb, and J.J. de Pablo. 2019. “Recent Advances in Machine Learning Towards Multiscale Soft Materials Design.” Current Opinion in Chemical Engineering 23:106–114.

Jain, M.R., M. Li, W. Chen, T. Liu, S.M. de Toledo, B.N. Pandey, H. Li, B.M. Rabin, and E.I. Azzam. 2011. “In Vivo Space Radiation-Induced Non-Targeted Responses: Late Effects on Molecular Signaling in Mitochondria.” Current Molecular Pharmacology 4(2):106–114.

Jaishankar, A., S. Haward, N.R. Hall, K. Magee, and G. McKinley. 2012. “Shear History Extensional Rheology Experiment II (SHERE II) Microgravity Rheology with Non-Newtonian Polymeric Fluids.” Poster No. GRC-E-DAA-TN7182. https://ntrs.nasa.gov/api/citations/20130011410/downloads/20130011410.pdf?attachment=true.

James, J.T., and N. Kahn-Mayberry. 2009. “Human Health and Performance Risks of Space Exploration Missions.” Ch. 13 in Risk of Adverse Health Effects from Lunar Dust Exposure. NASA Johnson Space Center.

Jayawardena, S.S., V. Balakotaiah, and L.C. Witte. 1997. “Flow Pattern Transition Maps for Microgravity Two-Phase Flows.” AIChE Journal 43(6):1637.

Jemison, M., and R. Olabisi. 2021. “Biomaterials for Human Space Exploration: A Review of Their Untapped Potential.” Acta Biomaterialia 128:77–99.

Jerde, E.A. 2021. “Chapter 2—the Apollo Program.” Pp. 9–36 in Sample Return Missions, A. Longobardo, ed. Amsterdam, Netherlands: Elsevier.

Jiang, P., S.J. Green, G.E. Chlipala, F.W. Turek, and M.H. Vitaterna. 2019. “Reproducible Changes in the Gut Microbiome Suggest a Shift in Microbial and Host Metabolism During Spaceflight.” Microbiome 7(1):113.

John, S., F. Abou-Issa, and K.H. Hasenstein. 2021. “Space Flight Cultivation for Radish in the Advanced Plant Habitat.” Gravitational and Space Research 9(1):121–132.

Johnson, C.M., H.O. Boles, L.E. Spencer, L. Poulet, M. Romeyn, J.M. Bunchek, R. Fritsche, G.D. Massa, A. O’Rourke, and R.M. Wheeler. 2021. “Supplemental Food Production with Plants: A Review of NASA Research.” Mini Review. Frontiers in Astronomy and Space Sciences 8.

Johnson, C.M., A. Subramanian, S. Pattathil, M.J. Correll, and J.Z. Kiss. 2017. “Comparative Transcriptomics Indicate Changes in Cell Wall Organization and Stress Response in Seedlings During Spaceflight.” American Journal of Botany 104(8):1219–1231.

Johnson, M. 2022. “Publication Metrics from the International Space Station Results.” https://www.nasa.gov/mission_pages/station/research/news/b4h-3rd/sv-publication-metrics.

Johnson, W.L., and J.R. Stephens. 2018. “NASA’s Cryogenic Fluid Management Technology Development Roadmaps.” Paper presented at the JANNAF In-Space Chemical Propulsion TIM, Huntsville, AL, August 27. https://ntrs.nasa.gov/citations/20190000305.

Jonscher, K.R., A. Alfonso-Garcia, J.L. Suhalim, D.J. Orlicky, E.O. Potma, V.L. Ferguson, M.L. Bouxsein, et al. 2016. “Correction: Spaceflight Activates Lipotoxic Pathways in Mouse Liver.” PLOS One 11(5):e0155282.

Jordan, S.P., K.S.M. Lee, and J. Preskill. 2012. “Quantum Algorithms for Quantum Field Theories.” Science 336(6085): 1130–1133.

Joseph, C., and D. Wood. 2019. “Understanding Socio-Technical Issues Affecting the Current Microgravity Research Marketplace.” Paper presented at the 2019 IEEE Aerospace Conference, 2–9 March 2019.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Joseph, C., and D. Wood. 2021. “Analysis of the Microgravity Research Ecosystem and Market Drivers of Accessibility.” New Space 9(2):123–138.

Ju, Y. 2021. “Understanding Cool Flames and Warm Flames.” Proceedings of the Combustion Institute 38(1):83–119.

Juhl, O.J., E.G. Buettmann, M.A. Friedman, R.C. DeNapoli, G.A. Hoppock, and H.J. Donahue. 2021. “Update on the Effects of Microgravity on the Musculoskeletal System.” npj Microgravity 7(1):28.

Jumper, J., R. Evans, A. Pritzel, T. Green, M. Figurnov, O. Ronneberger, K. Tunyasuvunakool, et al. 2021. “Highly Accurate Protein Structure Prediction with Alphafold.” Nature 596(7873):583–589.

Just, G.H., K. Smith, K.H. Joy, and M.J. Roy. 2020. “Parametric Review of Existing Regolith Excavation Techniques for Lunar in Situ Resource Utilisation (ISRU) and Recommendations for Future Excavation Experiments.” Planetary and Space Science 180:104746.

Kakoulidou, I., E.V. Avramidou, M. Baránek, S. Brunel-Muguet, S. Farrona, F. Johannes, E. Kaiserli, et al. 2021. “Epigenetics for Crop Improvement in Times of Global Change.” Biology 10(8):766.

Kamada, M., M. Oka, K. Miyamoto, E. Uheda, C. Yamazaki, T. Shimazu, H. Sano, et al. 2020. “Microarray Profile of Gene Expression in Etiolated Pisum Sativum Seedlings Grown Under Microgravity Conditions in Space: Relevance to the International Space Station Experiment ‘Auxin Transport.’” Life Sciences in Space Research 26:55–61.

Karl, D., F. Kamutzki, A. Zocca, O. Goerke, J. Guenster, and A. Gurlo. 2018. “Towards the Colonization of Mars by in-Situ Resource Utilization: Slip Cast Ceramics from Martian Soil Simulant.” PLOS One 13(10):e0204025.

Kennedy, A.R., B. Crucian, J.L. Huff, S.L. Klein, D. Morens, D. Murasko, C.A. Nickerson, and G. Sonnenfeld. 2014. “Effects of Sex and Gender on Adaptation to Space: Immune System.” Journal of Women’s Health (Larchmt) 23(11):956–958.

Kenyon, C.J. 2010. “The Genetics of Ageing.” Nature 464(7288):504–512.

Khadka, U., V. Holubec, H. Yang, and F. Cichos. 2018. “Active Particles Bound by Information Flows.” Nature Communications 9(1):3864.

Khalil, A.S., and J.J. Collins. 2010. “Synthetic Biology: Applications Come of Age.” Nature Reviews: Genetics 11(5):367–379.

Kharangate, C.R., C. Konishi, and I. Mudawar. 2016. “Consolidated Methodology to Predicting Flow Boiling Critical Heat Flux for Inclined Channels in Earth Gravity and for Microgravity.” International Journal of Heat and Mass Transfer 92:467–482.

Kharlamova, A., A. Proshchina, V. Gulimova, Y. Krivova, P. Soldatov, and S. Saveliev. 2021. “Cerebellar Morphology and Behavioural Correlations of the Vestibular Function Alterations in Weightlessness.” Neuroscience and Biobehavioral Reviews 126:314–328.

Khodadad, C.L.M., M.E. Hummerick, L.E. Spencer, A.R. Dixit, J.T. Richards, M.W. Romeyn, T.M. Smith, R.M. Wheeler, and G.D. Massa. 2020. “Microbiological and Nutritional Analysis of Lettuce Crops Grown on the International Space Station.” Original Research. Frontiers in Plant Science 11:199.

Khodadad, C.L.M., C.M. Oubre, V.A. Castro, S.M. Flint, M.C. Roman, C.M. Ott, C.J. Spern, et al. 2021. “A Microbial Monitoring System Demonstrated on the International Space Station Provides a Successful Platform for Detection of Targeted Microorganisms.” Life 11(6):492.

Khossravi, E.A., and A.R. Hargens. 2021. “Visual Disturbances During Prolonged Space Missions.” Current Opinion in Ophthalmology 32(1):69–73.

Kiffer, F., T. Alexander, J. Anderson, T. Groves, T. McElroy, J. Wang, V. Sridharan, M. Bauer, M. Boerma, and A. Allen. 2020. “Late Effects of 1H + 16O on Short-Term and Object Memory, Hippocampal Dendritic Morphology and Mutagenesis.” Original Research. Frontiers in Behavioral Neuroscience 14.

Kim, H.N., K.K. Richardson, K.J. Krager, W. Ling, P. Simmons, A.R. Allen, and N. Aykin-Burns. 2021. “Simulated Galactic Cosmic Rays Modify Mitochondrial Metabolism in Osteoclasts, Increase Osteoclastogenesis and Cause Trabecular Bone Loss in Mice.” International Journal of Molecular Sciences 22(21).

Kim, S.-M., and I. Mudawar. 2013. “Universal Approach to Predicting Saturated Flow Boiling Heat Transfer in Mini/Micro-Channels—Part II. Two-Phase Heat Transfer Coefficient.” International Journal of Heat and Mass Transfer 64:1239–1256.

Kim, W., F.K. Tengra, J. Shong, N. Marchand, H.K. Chan, Z. Young, R.C. Pangule, et al. 2013. “Effect of Spaceflight on Pseudomonas Aeruginosa Final Cell Density Is Modulated by Nutrient and Oxygen Availability.” BMC Microbiology 13:241.

Kim, W., F.K. Tengra, Z. Young, J. Shong, N. Marchand, H.K. Chan, R.C. Pangule, et al. 2013. “Spaceflight Promotes Biofilm Formation by Pseudomonas Aeruginosa.” PLOS One 8(4):e62437.

Kirke, J., X.-L. Jin, and X.-H. Zhang. 2020. “Expression of a Tardigrade Dsup Gene Enhances Genome Protection in Plants.” Molecular Biotechnology 62:563–571.

Kiss, J.Z., E. Brinckmann, and C. Brillouet. 2000. “Development and Growth of Several Strains of Arabidopsis Seedlings in Microgravity.” International Journal of Plant Sciences 161(1):55–62.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Kiss, J.Z., K.D. Millar, and R.E. Edelmann. 2012. “Phototropism of Arabidopsis Thaliana in Microgravity and Fractional Gravity on the International Space Station.” Planta 236(2):635–645.

Kliss, M. 2016. “Understanding the NASA TA6: Human Health, Life Support, and Habitation.” Paper for the 46th International Conference on Environmental Systems, Vienna. https://ttu-ir.tdl.org/handle/2346/67489.

Klopp, C., T. Trittel, A. Eremin, K. Harth, R. Stannarius, C.S. Park, J.E. Maclennan, and N.A. Clark. 2019. “Structure and Dynamics of a Two-Dimensional Colloid of Liquid Droplets.” Soft Matter 15(40):8156–8163.

Knox, B.P., A. Blachowicz, J.M. Palmer, J. Romsdahl, A. Huttenlocher, C.C.C. Wang, N.P. Keller, and K. Venkateswaran. 2016. “Characterization of Aspergillus Fumigatus Isolates from Air and Surfaces of the International Space Station.” mSphere 1(5).

Kobayashi, H., Y.N. Graven, W.J. Broughton, and X. Perret. 2004. “Flavonoids Induce Temporal Shifts in Gene-Expression of Nod-Box Controlled Loci in Rhizobium sp. NGR234.” Molecular Microbiology 51(2):335–347.

Kodger, T.E., P.J. Lu, G.R. Wiseman, and D.A. Weitz. 2017. “Stable, Fluorescent Polymethylmethacrylate Particles for the Long-Term Observation of Slow Colloidal Dynamics.” Langmuir 33(25):6382–6389.

Kohn, F.P.M., and R. Ritzmann. 2018. “Gravity and Neuronal Adaptation, in Vitro and in Vivo—from Neuronal Cells Up to Neuromuscular Responses: A First Model.” European Biophysics Journal 47(2):97–107.

Kolkowitz, S., I. Pikovski, N. Langellier, M.D. Lukin, R.L. Walsworth, and J. Ye. 2016. “Gravitational Wave Detection with Optical Lattice Atomic Clocks.” Physical Review D 94(12):124043.

Konicki, J., and J. Pethokoukis. 2022. “Do Americans Care About Space?” The New Atlantis. https://www.aei.org/articles/do-americans-care-about-space.

Konishi, C., H. Lee, I. Mudawar, M.M. Hasan, H.K. Nahra, N.R. Hall, J.D. Wagner, R.L. May, and J.R. Mackey. 2015a. “Flow Boiling in Microgravity: Part 1—Interfacial Behavior and Experimental Heat Transfer Results.” International Journal of Heat and Mass Transfer 81:705–720.

Konishi, C., H. Lee, I. Mudawar, M.M. Hasan, H.K. Nahra, N.R. Hall, J.D. Wagner, R.L. May, and J.R. Mackey. 2015b. “Flow Boiling in Microgravity: Part 2—Critical Heat Flux Interfacial Behavior, Experimental Data, and Model.” International Journal of Heat and Mass Transfer 81:721–736.

Kono, M., K. Ito, T. Niioka, T. Kadota, and J.i. Sato. 1996. “Current State of Combustion Research in Microgravity.” Symposium (International) on Combustion 26(1):1189–1199.

Konstantinova, N., B. Korbei, and C. Luschnig. 2021. “Auxin and Root Gravitropism: Addressing Basic Cellular Processes by Exploiting a Defined Growth Response.” International Journal of Molecular Sciences 22(5):2749.

Koo, H., R.N. Allan, R.P. Howlin, P. Stoodley, and L. Hall-Stoodley. 2017. “Targeting Microbial Biofilms: Current and Prospective Therapeutic Strategies.” Nature Reviews Microbiology 15(12):740–755.

Koos, E., and N. Willenbacher. 2011. “Capillary Forces in Suspension Rheology.” Science 331(6019):897–900.

Krebs, R.A., and V. Loeschcke. 1994. “Response to Environmental Change: Genetic Variation and Fitness in Drosophila Buzzatii Following Temperature Stress.” Pp. 309–321 in Conservation Genetics, V. Loeschcke, S.K. Jain, and J. Tomiuk, eds. Basel, Switzerland: Birkhäuser Basel.

Kruse, C.P.S., P. Basu, D.R. Luesse, and S.E. Wyatt. 2017. “Transcriptome and Proteome Responses in RNAlater Preserved Tissue of Arabidopsis Thaliana.” PLOS One 12(4):e0175943.

Kruse, C.P.S., A.D. Meyers, P. Basu, S. Hutchinson, D.R. Luesse, and S.E. Wyatt. 2020. “Spaceflight Induces Novel Regulatory Responses in Arabidopsis Seedling as Revealed by Combined Proteomic and Transcriptomic Analyses.” BMC Plant Biology 20(1):237.

Kruse, C.P.S., and S.E. Wyatt. 2022. “Nitric Oxide, Gravity Response, and a Unified Schematic of Plant Signaling.” Plant Science 314:111105.

Kuang, A., A. Popova, G. McClure, and M.E. Musgrave. 2005. “Dynamics of Storage Reserve Deposition During Brassica Rapa L. Pollen and Seed Development in Microgravity.” International Journal of Plant Sciences 166(1):85–96.

Kuang, A., A. Popova, Y. Xiao, and M.E. Musgrave. 2000. “Pollination and Embryo Development in Brassica Rapa L. in Microgravity.” International Journal of Plant Sciences 161(2):203–211.

Kültz, D. 2020a. “Defining Biological Stress and Stress Responses Based on Principles of Physics.” Journal of Experimental Zoology Part A: Ecological and Integrative Physiology 333(6):350–358.

Kültz, D. 2020b. “Evolution of Cellular Stress Response Mechanisms.” Journal of Experimental Zoology Part A: Ecological and Integrative Physiology 333(6):359–378.

Kumar, S., A.S. Beena, M. Awana, and A. Singh. 2017. “Physiological, Biochemical, Epigenetic and Molecular Analyses of Wheat (Triticum Aestivum) Genotypes with Contrasting Salt Tolerance.” Frontiers in Plant Science 8:1151.

Kumar, S.P., and M.B. Plenio. 2020. “On Quantum Gravity Tests with Composite Particles.” Nature Communications 11(1):3900.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Kundrot, C.E., R.A. Judge, M.L. Pusey, and E.H. Snell. 2001. “Microgravity and Macromolecular Crystallography.” Crystal Growth & Design 1(1):87–99.

Kwon, T., J.A. Sparks, J. Nakashima, S.N. Allen, Y. Tang, and E.B. Blancaflor. 2015. “Transcriptional Response of Arabidopsis Seedlings During Spaceflight Reveals Peroxidase and Cell Wall Remodeling Genes Associated with Root Hair Development.” American Journal of Botany 102(1):21–35.

La Spina, M., P.S. Contreras, A. Rissone, N.K. Meena, E. Jeong, and J.A. Martina. 2021. “MiT/TFE Family of Transcription Factors: An Evolutionary Perspective.” Review. Frontiers in Cell and Developmental Biology 8.

Lackner, J.R., and P. Dizio. 2006. “Space Motion Sickness.” Experimental Brain Research 175(3):377–399.

Laiakis, E.C., I. Shuryak, A. Deziel, Y.W. Wang, B.L. Barnette, Y. Yu, R.L. Ullrich, A.J. Fornace, Jr., and M.R. Emmett. 2021. “Effects of Low Dose Space Radiation Exposures on the Splenic Metabolome.” International Journal of Molecular Sciences 22(6).

Lam, C.W., V. Castranova, P.C. Zeidler-Erdely, R. Renne, R. Hunter, R. McCluskey, R.R. Scully, et al. 2022. “Comparative Pulmonary Toxicities of Lunar Dusts and Terrestrial Dusts (TiO2 & SiO2) in Rats and an Assessment of the Impact of Particle-Generated Oxidants on the Dusts’ Toxicities.” Inhalation Toxicology 34(3–4):51–67.

Lam, C.W., R.R. Scully, Y. Zhang, R.A. Renne, R.L. Hunter, R.A. McCluskey, B.T. Chen, et al. 2013. “Toxicity of Lunar Dust Assessed in Inhalation-Exposed Rats.” Inhalation Toxicology 25(12):661–678.

Lang, C., and M. Bamsay. “International Partnership Opportunities in a Lunar Surface Plant Production Demonstrator, Research Campaign White Paper.” Input paper submitted to the Committee on Decadal Survey on Biological and Physical Sciences Research in Space 2023–2032. https://www.nationalacademies.org/our-work/decadal-survey-on-life-and-physical-sciences-research-in-space-2023-2032.

Langevin, D., and M. Vignes-Adler. 2014. “Microgravity Studies of Aqueous Wet Foams.” The European Physical Journal E 37(3):16.

Langin, K. 2022. “Pandemic Led to Historic Drop in U.S. STEM Ph.D. Graduates, New Data Suggest.” Science. https://www.science.org/content/article/pandemic-led-historic-drop-u-s-stem-ph-d-graduates-new-data-suggest.

Larson, M., C. Talso, A. Croonquist, W. Holmes, D. Langford, L. Feng-Chuan, and J. Pensinger. 2002. “A Low Temperature Facility for Experiments on the International Space Station.” Conference paper. P. 1-1 in Proceedings, IEEE Aerospace Conference. Big Sky, MT: Institute of Electrical and Electronics Engineers.

Law, C.K., and G.M. Faeth. 1994. “Opportunities and Challenges of Combustion in Microgravity.” Progress in Energy and Combustion Science 20(1):65–113.

Leach, J.E., M. Ryba-White, Q. Sun, C.J. Wu, E. Hilaire, C. Gartner, O. Nedukha, et al. 2001. “Plants, Plant Pathogens, and Microgravity—a Deadly Trio.” Gravitational and Space Biology Bulletin 14(2):15–23.

Leblanc, A., T. Matsumoto, J. Jones, J. Shapiro, T. Lang, L. Shackelford, S.M. Smith, et al. 2013. “Bisphosphonates as a Supplement to Exercise to Protect Bone During Long-Duration Spaceflight.” Osteoporosis International 24(7):2105–2114.

Lee, H., I. Mudawar, and M.M. Hasan. 2013a. “Experimental and Theoretical Investigation of Annular Flow Condensation in Microgravity.” International Journal of Heat and Mass Transfer 61:293–309.

Lee, H., I. Mudawar, and M.M. Hasan. 2013b. “Flow Condensation in Horizontal Tubes.” International Journal of Heat and Mass Transfer 66:31–45.

Lee, H.S., H. Merte Jr., and F. Chiaramonte. 1997. “Pool Boiling Curve in Microgravity.” Journal of Thermophysics and Heat Transfer 11(2):216–222.

Lee, J., L.E. O’Neill, S. Lee, and I. Mudawar. 2019. “Experimental and Computational Investigation on Two-Phase Flow and Heat Transfer of Highly Subcooled Flow Boiling in Vertical Upflow.” International Journal of Heat and Mass Transfer 136:1199–1216.

Lee, J., L.E. O’Neill, and I. Mudawar. 2020. “3-D Computational Investigation and Experimental Validation of Effect of Shear-Lift on Two-Phase Flow and Heat Transfer Characteristics of Highly Subcooled Flow Boiling in Vertical Upflow.” International Journal of Heat and Mass Transfer 150:119291.

Lee, M.C., and U.E. Israelsson. 2003. “Fundamental Physics Research Aboard the International Space Station.” Physica B: Condensed Matter 329–333:1649–1650.

Lee, M.D., A. O’Rourke, H. Lorenzi, B.M. Bebout, C.L. Dupont, and R.C. Everroad. 2021. “Reference-Guided Metagenomics Reveals Genome-Level Evidence of Potential Microbial Transmission from the ISS Environment to an Astronaut’s Microbiome.” iScience 24(2):102114.

Lee, S.H., I. Mudawar, and M.M. Hasan. 2016. “Thermal Analysis of Hybrid Single-Phase, Two-Phase and Heat Pump Thermal Control System (TCS) for Future Spacecraft.” Applied Thermal Engineering 100:190–214.

Lee, S.-J., A. Lehar, J.U. Meir, C. Koch, A. Morgan, L.E. Warren, R. Rydzik, et al. 2020. “Targeting Myostatin/Activin a Protects Against Skeletal Muscle and Bone Loss During Spaceflight.” Proceedings of the National Academy of Sciences 117(38):23942–23951.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Lee, W.C., H. Shi, Z. Poon, L.M. Nyan, T. Kaushik, G.V. Shivashankar, J.K.Y. Chan, C.T. Lim, J. Han, and K.J. Van Vliet. 2014. “Multivariate Biophysical Markers Predictive of Mesenchymal Stromal Cell Multipotency.” Proceedings of the National Academy of Sciences 111(42):E4409–E4418.

Lehner, B.A.E., J. Schlechten, A. Filosa, A. Canals Pou, D.G. Mazzotta, F. Spina, L. Teeney, et al. 2019. “End-to-End Mission Design for Microbial ISRU Activities as Preparation for a Moon Village.” Acta Astronautica 162:216–226.

Lenski, R.E., and M. Travisano. 1994. “Dynamics of Adaptation and Diversification: A 10,000-Generation Experiment with Bacterial Populations.” Proceedings of the National Academy of Sciences 91(15):6808–6814.

Levernier, N., O. Pouliquen, and Y. Forterre. 2021. “An Integrative Model of Plant Gravitropism Linking Statoliths Position and Auxin Transport.” Frontiers in Plant Science 12:651928.

Levine, H.G. 2010. “The Influence of Microgravity on Plants” Presentation at NASA ISS Research Academy and Pre-Application Meeting. August 3–5. League City, TX. https://www.nasa.gov/pdf/478076main_Day1_P03c_Levine_Plants.pdf.

Lewis, N.G., L. Davin, and M. Kahn. 2022. “Dissecting Beneficial Plant-Microbe Interactions and Their Efficacy in the ISS Spaceflight Environment, A Model Study.” https://taskbook.nasaprs.com/tbp/index.cfm?action=public_query_taskbook_content&TASKID=15156.

Leyser, O. 2005. “Auxin Distribution and Plant Pattern Formation: How Many Angels Can Dance on the Point of PIN?” Cell 121(6):819–822.

Li, B., L. Sun, J. Huang, C. Göschl, W. Shi, J. Chory, and W. Busch. 2019. “GSNOR Provides Plant Tolerance to Iron Toxicity Via Preventing Iron-Dependent Nitrosative and Oxidative Cytotoxicity.” Nature Communications 10(1):3896.

Li, F., Y. Liu, and J. Leng. 2019. “Progress of Shape Memory Polymers and Their Composites in Aerospace Applications.” Smart Materials and Structures 28(10):103003.

Li, N., C. Wang, S. Sun, C. Zhang, D. Lü, Q. Chen, and M. Long. 2018. “Microgravity-Induced Alterations of Inflammation-Related Mechanotransduction in Endothelial Cells on Board SJ-10 Satellite.” Original Research. Frontiers in Physiology 9.

Liao, J., G. Liu, O. Monje, G.W. Stutte, and D.M. Porterfield. 2004. “Induction of Hypoxic Root Metabolism Results from Physical Limitations in O2 Bioavailability in Microgravity.” Advances in Space Research 34(7):1579–1584.

Limbert, G. 2017. “Mathematical and Computational Modelling of Skin Biophysics: A Review.” Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences 473(2203):20170257.

Limoli, D.H., G.B. Whitfield, T. Kitao, M.L. Ivey, M.R. Davis, Jr., N. Grahl, D.A. Hogan, et al. 2017. “Pseudomonas Aeruginosa Alginate Overproduction Promotes Coexistence with Staphylococcus Aureus in a Model of Cystic Fibrosis Respiratory Infection.” mBio 8(2).

Lin, H., F. Rosenberger, J.I.D. Alexander, and A. Nadarajah. 1995. “Convective-Diffusive Transport in Protein Crystal Growth.” Journal of Crystal Growth 151(1):153–162.

Lindsay, J. 1976. “The Lunar Soil.” In Lunar Stratigraphy and Sedimentology. Amsterdam, Netherlands: Elsevier.

Link, B.M., S.J. Durst, W. Zhou, and B. Stankovic. 2003. “Seed-to-Seed Growth of Arabidopsis Thaliana on the International Space Station.” Advances in Space Research 31(10):2237–2243.

Lithgow, G.J., T.M. White, S. Melov, and T.E. Johnson. 1995. “Thermotolerance and Extended Life-Span Conferred by Single-Gene Mutations and Induced by Thermal Stress.” Proceedings of the National Academy of Sciences 92(16):7540–7544.

Liu, D., B. Xie, Y. Dong, and H. Liu. 2020. “Semi-Continuous Fermentation of Solid Waste in Closed Artificial Ecosystem: Microbial Diversity, Function Genes Evaluation.” Life Sciences in Space Research 25:136–142.

Liu, H., L. Tian, and D. Wang. 2021. “Notch Receptor GLP-1 Regulates Toxicity of Simulated Microgravity Stress by Activating Germline-Intestine Communication of Insulin Signaling in C. elegans.” Biochemical and Biophysical Research Communications 534:248–253.

Liu, Y., W. Rosikiewicz, Z. Pan, N. Jillette, P. Wang, A. Taghbalout, J. Foox, et al. 2021. “DNA Methylation-Calling Tools for Oxford Nanopore Sequencing: A Survey and Human Epigenome-Wide Evaluation.” Genome Biology 22(1):295.

Llorente, B., T.C. Williams, and H.D. Goold. 2018. “The Multiplanetary Future of Plant Synthetic Biology.” Genes (Basel) 9(7).

Lloyd, S.A., G.S. Lewis, Y. Zhang, E.M. Paul, and H.J. Donahue. 2012. “Connexin 43 Deficiency Attenuates Loss of Trabecular Bone and Prevents Suppression of Cortical Bone Formation During Unloading.” Journal of Bone and Mineral Research 27(11):2359–2372.

Lloyd, S.A., A.E. Loiselle, Y. Zhang, and H.J. Donahue. 2013. “Connexin 43 Deficiency Desensitizes Bone to the Effects of Mechanical Unloading Through Modulation of Both Arms of Bone Remodeling.” Bone 57(1):76–83.

Lo, Y.M.D., D.S.C. Han, P. Jiang, and R.W.K. Chiu. 2021. “Epigenetics, Fragmentomics, and Topology of Cell-Free DNA in Liquid Biopsies.” Science 372(6538):eaaw3616.

Locey, K.J., and J.T. Lennon. 2016. “Scaling Laws Predict Global Microbial Diversity.” Proceedings of the National Academy of Sciences 113(21):5970–5975.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Lombardino, J., S. Bijlani, N.K. Singh, J.M. Wood, R. Barker, S. Gilroy, C.C.C. Wang, and K. Venkateswaran. 2022. “Genomic Characterization of Potential Plant Growth-Promoting Features of Sphingomonas Strains Isolated from the International Space Station.” Microbiology Spectrum 10(1):e01994-01921.

Lopatkin, N.A., V.P. Kozlov, and M.A. Grishin. 1992. “[Cancer of the Kidney: Nephrectomy or Resection?].” Urologiia i Nefrologiia (4–6):3–6.

Lu, H., G. Yuan, S.H. Strauss, T.J. Tschaplinski, G.A. Tuskan, J.-G. Chen, and X. Yang. 2020. “Reconfiguring Plant Metabolism for Biodegradable Plastic Production.” BioDesign Research.

Lu, Z., J. Cui, L. Wang, N. Teng, S. Zhang, H.-M. Lam, Y. Zhu, et al. 2021. “Genome-Wide DNA Mutations in Arabidopsis Plants After Multigenerational Exposure to High Temperatures.” Genome Biology 22(1):160.

Lubensky, T.C., C.L. Kane, X. Mao, A. Souslov, and K. Sun. 2015. “Phonons and Elasticity in Critically Coordinated Lattices.” Reports on Progress in Physics 78(7):073901.

Ludlow, A.D., M.M. Boyd, J. Ye, E. Peik, and P.O. Schmidt. 2015. “Optical Atomic Clocks.” Reviews of Modern Physics 87(2): 637–701.

Ludtka, C., J. Silberman, E. Moore, and J.B. Allen. 2021. “Macrophages in Microgravity: The Impact of Space on Immune Cells.” npj Microgravity 7(1):13.

Lüthi, M.N., A.E. Berardi, T. Mandel, L.B. Freitas, and C. Kuhlemeier. 2022. “Single Gene Mutation in a Plant MYB Transcription Factor Causes a Major Shift in Pollinator Preference.” Current Biology 32(24):5295–5308.

Mackowiak, C.L., J.L. Garland, R.F. Strayer, B.W. Finger, and R.M. Wheeler. 1996. “Comparison of Aerobically-Treated and Untreated Crop Residue as a Source of Recycled Nutrients in a Recirculating Hydroponic System.” Advances in Space Research 18(1–2):281–287.

Mackowiak, C.L., R.M. Wheeler, G.W. Stutte, N.C. Yorio, and J.C. Sager. 1997. “Use of Biologically Reclaimed Minerals for Continuous Hydroponic Potato Production in a CELSS.” Advances in Space Research 20(10):1815–1820.

MacLean, R.C., C. Torres-Barceló, and R. Moxon. 2013. “Evaluating Evolutionary Models of Stress-Induced Mutagenesis in Bacteria.” Nature Reviews: Genetics 14(3):221–227.

Mader, T.H., C.R. Gibson, A.F. Pass, L.A. Kramer, A.G. Lee, J. Fogarty, W.J. Tarver, et al. 2011. “Optic Disc Edema, Globe Flattening, Choroidal Folds, and Hyperopic Shifts Observed in Astronauts After Long-Duration Space Flight.” Ophthalmology 118(10):2058–2069.

Malkani, S., C.R. Chin, E. Cekanaviciute, M. Mortreux, H. Okinula, M. Tarbier, A.S. Schreurs, et al. 2020. “Circulating Mirna Spaceflight Signature Reveals Targets for Countermeasure Development.” Cell Reports 33(10):108448.

Mallory, S.A., C. Valeriani, and A. Cacciuto. 2018. “An Active Approach to Colloidal Self-Assembly.” Annual Review of Physical Chemistry 69(1):59–79.

Manian, V., J. Orozco, H. Gangapuram, H. Janwa, and C. Agrinsoni. 2021. “Network Analysis of Gene Transcriptions of Arabidopsis Thaliana in Spaceflight Microgravity.” Genes 12(3):337.

Mann, V., A. Sundaresan, S.K. Mehta, B. Crucian, M.F. Doursout, and S. Devakottai. 2019. “Effects of Microgravity and Other Space Stressors in Immunosuppression and Viral Reactivation with Potential Nervous System Involvement.” Neurology India 67(Suppl):S198–S203.

Manzano, A., E. Carnero-Diaz, R. Herranz, and F.J. Medina. 2022. “Recent Transcriptomic Studies to Elucidate the Plant Adaptive Response to Spaceflight and to Simulated Space Environments.” iScience 25(8):104687.

Mao, Q., A. Acharya, A. Rodríguez-delaRosa, F. Marchiano, B. Dehapiot, Z. Al Tanoury, J. Rao, et al. 2022. “Tension-Driven Multi-Scale Self-Organisation in Human iPSC-Derived Muscle Fibers.” Elife 11.

Mao, X.W., M. Boerma, D. Rodriguez, M. Campbell-Beachler, T. Jones, S. Stanbouly, V. Sridharan, A. Wroe, and G.A. Nelson. 2018. “Acute Effect of Low-Dose Space Radiation on Mouse Retina and Retinal Endothelial Cells.” Radiation Research 190(1):45–52.

Mao, X.W., S. Byrum, N.C. Nishiyama, M.J. Pecaut, V. Sridharan, M. Boerma, A.J. Tackett, et al. 2018. “Impact of Spaceflight and Artificial Gravity on the Mouse Retina: Biochemical and Proteomic Analysis.” International Journal of Molecular Sciences 19(9).

Mao, X.W., N.C. Nishiyama, S.D. Byrum, S. Stanbouly, T. Jones, J. Holley, V. Sridharan, et al. 2020. “Spaceflight Induces Oxidative Damage to Blood-Brain Barrier Integrity in a Mouse Model.” FASEB Journal 34(11):15516–15530.

Marchetti, M.C., J.F. Joanny, S. Ramaswamy, T.B. Liverpool, J. Prost, M. Rao, and R.A. Simha. 2013. “Hydrodynamics of Soft Active Matter.” Reviews of Modern Physics 85(3):1143–1189.

Marfia, G., S.E. Navone, L. Guarnaccia, R. Campanella, M. Locatelli, M. Miozzo, P. Perelli, et al. 2022. “Space Flight and Central Nervous System: Friends or Enemies? Challenges and Opportunities for Neuroscience and Neuro-Oncology.” Journal of Neuroscience Research 100(9):1649–1663.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Mark, S., G.B. Scott, D.B. Donoviel, L.B. Leveton, E. Mahoney, J.B. Charles, and B. Siegel. 2014. “The Impact of Sex and Gender on Adaptation to Space: Executive Summary.” Journal of Women’s Health (Larchmt) 23(11):941–947.

Marre, S., and K.F. Jensen. 2010. “Synthesis of Micro and Nanostructures in Microfluidic Systems.” 10.1039/B821324K. Chemical Society Reviews 39(3):1183–1202.

Marshall-Goebel, K., S.S. Laurie, I.V. Alferova, P. Arbeille, S.M. Auñón-Chancellor, D.J. Ebert, S.M.C. Lee, et al. 2019. “Assessment of Jugular Venous Blood Flow Stasis and Thrombosis During Spaceflight.” JAMA Network Open 2(11):e1915011.

Martin, N., J. Singh, and A. Aballay. 2017. “Natural Genetic Variation in the Caenorhabditis Elegans Response to Pseudomonas Aeruginosa.” G3 (Bethesda) 7(4):1137–1147.

Martinovich, S. 2016. “Collegiate Inventors Awarded 2016 Lemelson-MIT Student Prize.” MIT News, Massachusetts Institute of Technology. https://news.mit.edu/2016/collegiate-inventors-awarded-lemelson-mit-student-prize-0412.

Mashinsky, A., I. Ivanova, T. Derendyaeva, G. Nechitailo, and F. Salisbury. 1994. “‘From Seed-to-Seed’ Experiment with Wheat Plants Under Space-Flight Conditions.” Advances in Space Research 14(11):13–19.

Masica, W.J., and J.A. Salzman. 1967. Experimental Investigation of Liquid-Propellant Reorientation. NASA TN D-3789. Washington, DC: NASA.

Masini, M.A., V. Bonetto, M. Manfredi, A. Pastò, E. Barberis, S. Timo, V.V. Vanella, et al. 2022. “Prolonged Exposure to Simulated Microgravity Promotes Stemness Impairing Morphological, Metabolic and Migratory Profile of Pancreatic Cancer Cells: A Comprehensive Proteomic, Lipidomic and Transcriptomic Analysis.” Cellular and Molecular Life Sciences 79(5):226.

Massa, G.D., N.F. Dufour, J.A. Carver, M.E. Hummerick, R.M. Wheeler, R.C. Morrow, and T.M. Smith. 2017. “VEG-01: Veggie Hardware Validation Testing on the International Space Station.” Open Agriculture 2(1):33–41.

Massa, G., G. Newsham, M.E. Hummerick, J.L. Caro, G.W. Stutte, R.C. Morrow, and R.M. Wheeler. 2013. “Preliminary Species and Media Selection for the Veggie Space Hardware.” Gravitational and Space Research 1(1):95–106.

Massa, G.D., G. Newsham, M.E. Hummerick, R.C. Morrow, and R.M. Wheeler. 2017. “Plant Pillow Preparation for the Veggie Plant Growth System on the International Space Station.” Gravitational and Space Research 5(1):24–34.

Masson, P.H. 2019. Using Brachypodium Distachyon to Investigate Monocot Plant Adaptation to Spaceflight. https://taskbook.nasaprs.com/Tbp/index.cfm?action=public_query_taskbook_content&TASKID=12402.

Masson, P.H., and S.-H. Su. 2022. Can Polyamines Mitigate Plant Stress Response Under Microgravity Conditions? https://taskbook.nasaprs.com/Tbp/index.cfm?action=public_query_taskbook_content&TASKID=15023.

Mathelié-Guinlet, M., F. Viela, D. Alsteens, and Y.F. Dufrêne. 2021. “Stress-Induced Catch-Bonds to Enhance Bacterial Adhesion.” Trends in Microbiology 29(4):286–288.

Matsumura, T., T. Noda, M. Muratani, R. Okada, M. Yamane, A. Isotani, T. Kudo, S. Takahashi, and M. Ikawa. 2019. “Male Mice, Caged in the International Space Station for 35 Days, Sire Healthy Offspring.” Scientific Reports 9(1):13733.

Maurer, M., and J. Lammerding. 2019. “The Driving Force: Nuclear Mechanotransduction in Cellular Function, Fate, and Disease.” Annual Review of Biomedical Engineering 21:443–468.

May, S. 2012. “What Is Microgravity?” NASA Knows! (Grades 5–8). https://www.nasa.gov/audience/forstudents/5-8/features/nasa-knows/what-is-microgravity-58.html.

Mazars, C., C. Brière, S. Grat, C. Pichereaux, M. Rossignol, V. Pereda-Loth, B. Eche, et al. 2014. “Microsome-Associated Proteome Modifications of Arabidopsis Seedlings Grown on Board the International Space Station Reveal the Possible Effect on Plants of Space Stresses Other Than Microgravity.” Plant Signaling & Behavior 9(9):e29637.

Mazzolai, B., F. Tramacere, I. Fiorello, and L. Margheri. 2020. “The Bio-Engineering Approach for Plant Investigations and Growing Robots. A Mini-Review.” Mini Review. Frontiers in Robotics and AI 7.

McIntyre, A.B.R., N. Alexander, K. Grigorev, D. Bezdan, H. Sichtig, C.Y. Chiu, and C.E. Mason. 2019. “Single-Molecule Sequencing Detection of N6-Methyladenine in Microbial Reference Materials.” Nature Communications 10(1):579.

McLean, R.J.C., and T.J. Beveridge. 1990. “Metal Binding Capacity of Bacterial Surfaces and Their Ability to Form Mineralized Aggregates.” Pp. 185–222 in Microbial Mineral Recovery, H.L. Ehrlich and C.L. Brierley, eds. New York: McGraw-Hill.

McPherson, A., and L.J. DeLucas. 2015. “Microgravity Protein Crystallization.” npj Microgravity 1(1):15010.

McSweeney, K. 2021. “Diversity and Inclusion Create Better Outcomes: A Look at the Science.” Now powered by Northrop Grumman. https://now.northropgrumman.com/diversity-and-inclusion-create-better-outcomes-a-look-at-the-science.

Mehlstäubler, T., G. Grosche, C. Lisdat, P. Schmidt, and H. Denker. 2018. “Atomic Clocks for Geodesy.” Reports on Progress in Physics 81(6):064401.

Mehta, S.K., D.C. Bloom, I. Plante, R. Stowe, A.H. Feiveson, A. Renner, A. Dhummakupt, et al. 2018. “Reactivation of Latent Epstein-Barr Virus: A Comparison After Exposure to Gamma, Proton, Carbon, and Iron Radiation.” International Journal of Molecular Sciences 19(10).

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Mehta, S.K., M.L. Laudenslager, R.P. Stowe, B.E. Crucian, C.F. Sams, and D.L. Pierson. 2014. “Multiple Latent Viruses Reactivate in Astronauts During Space Shuttle Missions.” Brain, Behavior, and Immunity 41:210–217.

Mendes, R., P. Garbeva, and J.M. Raaijmakers. 2013. “The Rhizosphere Microbiome: Significance of Plant Beneficial, Plant Pathogenic, and Human Pathogenic Microorganisms.” FEMS Microbiology Reviews 37(5):634–663.

Menezes, A.A., J. Cumbers, J.A. Hogan, and A.P. Arkin. 2015. “Towards Synthetic Biological Approaches to Resource Utilization on Space Missions.” Journal of The Royal Society Interface 12(102):20140715.

MetaSUB International Consortium. 2016. “The Metagenomics and Metadesign of the Subways and Urban Biomes (MetaSUB) International Consortium Inaugural Meeting Report.” Microbiome 4(1):24.

Meyer, C., and W. Schneider. 2018. “NASA Advanced Explorations Systems: 2018 Advancements in Life Support Systems.” Paper presented at the AIAA SPACE and Astronautics Forum and Exposition. https://ntrs.nasa.gov/citations/20180006596.

Meyers, A., and S.E. Wyatt. 2022. “Plant Space Biology in the Genomics Age.” Annual Plant Reviews 5:123–150.

Mezzenga, R. 2021. “Grand Challenges in Soft Matter.” Frontiers in Soft Matter 1(December).

Mhatre, S.D., J. Iyer, S. Puukila, A.M. Paul, C.G.T. Tahimic, L. Rubinstein, M. Lowe, et al. 2022. “Neuro-Consequences of the Spaceflight Environment.” Neuroscience and Biobehavioral Reviews 132:908–935.

Mickens, M.A., M. Torralba, S.A. Robinson, L.E. Spencer, M.W. Romeyn, G.D. Massa, and R.M. Wheeler. 2019. “Growth of Red Pak Choi Under Red and Blue, Supplemented White, and Artificial Sunlight Provided by LEDs.” Scientia Horticulturae 245:200–209.

Miles II, J.D., and G. Lunn. 2013. “Separation and Purification of Mineral Salts from Spacecraft Wastewater Processing via Electrostatic Beneficiation.” NASA Report KSC-2013-213.

Millar, K.D.L., P. Kumar, M.J. Correll, J.L. Mullen, R.P. Hangarter, R.E. Edelmann, and J.Z. Kiss. 2010. “A Novel Phototropic Response to Red Light Is Revealed in Microgravity.” New Phytologist 186(3):648–656.

Mironova, V., and J. Xu. 2019. “A Single-Cell View of Tissue Regeneration in Plants.” Current Opinion in Plant Biology 52:149–154.

Mishra, B., and U. Luderer. 2019. “Reproductive Hazards of Space Travel in Women and Men.” Nature Reviews Endocrinology 15(12):713–730.

Modica, K.J., Y. Xi, and S.C. Takatori. 2022. “Porous Media Microstructure Determines the Diffusion of Active Matter: Experiments and Simulations.” Original Research. Frontiers in Physics 10.

Monje, O., J.T. Richards, J.A. Carver, D.I. Dimapilis, H.G. Levine, N.F. Dufour, and B.G. Onate. 2020. “Hardware Validation of the Advanced Plant Habitat on ISS: Canopy Photosynthesis in Reduced Gravity.” Original Research. Frontiers in Plant Science 11.

Monje, O., G.W. Stutte, G.D. Goins, D.M. Porterfield, and G.E. Bingham. 2003. “Farming in Space: Environmental and Biophysical Concerns.” Advances in Space Research 31(1):151–167.

Moore, A.D., Jr., M.E. Downs, S.M. Lee, A.H. Feiveson, P. Knudsen, and L. Ploutz-Snyder. 2014. “Peak Exercise Oxygen Uptake During and Following Long-Duration Spaceflight.” Journal of Applied Physiology (1985) 117(3):231–238.

Moosavi, D., D. Wolovsky, A. Depompeis, D. Uher, D. Lennington, R. Bodden, and C.E. Garber. 2021. “The Effects of Spaceflight Microgravity on the Musculoskeletal System of Humans and Animals with an Emphasis on Exercise as a Countermeasure: A Systematic Scoping Review.” Physiological Research 70:119–151.

Mora, M., A. Perras, T.A. Alekhova, L. Wink, R. Krause, A. Aleksandrova, T. Novozhilova, and C. Moissl-Eichinger. 2016. “Resilient Microorganisms in Dust Samples of the International Space Station—Survival of the Adaptation Specialists.” Microbiome 4(1):65.

Moreno-Villanueva, M., M. Wong, T. Lu, Y. Zhang, and H. Wu. 2017. “Interplay of Space Radiation and Microgravity in DNA Damage and DNA Damage Response.” npj Microgravity 3(1):14.

Morris, J.F. 2020. “Shear Thickening of Concentrated Suspensions: Recent Developments and Relation to Other Phenomena.” Annual Review of Fluid Mechanics 52(1):121–144.

Morrison, M.D., J.B. Thissen, F. Karouia, S. Mehta, C. Urbaniak, K. Venkateswaran, D.J. Smith, and C. Jaing. 2021. “Investigation of Spaceflight Induced Changes to Astronaut Microbiomes.” Original Research. Frontiers in Microbiology 12.

Morrow, M.A. 2006. “Clinorotation Differentially Inhibits T-Lymphocyte Transcription Factor Activation.” In Vitro Cellular & Developmental Biology—Animal 42(5):153–158.

Mortreux, M., and M.E. Rosa-Caldwell. 2020. “Approaching Gravity as a Continuum Using the Rat Partial Weight-Bearing Model.” https://doi.org/10.3390/life10100235.

Mota, F.L., Y. Song, J. Pereda, B. Billia, D, Tourret, J. -M. Debierre, R. Trivedi, A. Karma, and N. Bergeon. 2017. “Convection Effects During Bulk Transparent Alloy Solidification in DECLIC-DSI and Phase-Field Simulations in Diffusive Conditions.” Journal of The Minerals, Metals and Materials Society 69:1280–1288.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Motil, B.J., E. Ramé, P. Salgi, M. Taghavi, and V. Balakotaiah. 2021. “Gas–Liquid Flows Through Porous Media in Microgravity: The International Space Station Packed Bed Reactor Experiment.” AIChE Journal 67(1):e17031.

Mudawar, I. 2017. “Chapter Five—Flow Boiling and Flow Condensation in Reduced Gravity.” Pp. 225–306 in Advances in Heat Transfer, E.M. Sparrow, J.P. Abraham, and J.M. Gorman, eds. Amsterdam, Netherlands: Elsevier. Reprint.

Mulavara, A.P., T. Ruttley, H.S. Cohen, B.T. Peters, C. Miller, R. Brady, L. Merkle, and J.J. Bloomberg. 2012. “VestibularSomatosensory Convergence in Head Movement Control During Locomotion After Long-Duration Space Flight.” Journal of Vestibular Research 22(2):153–166.

Musacchia, X.J., and R.E. Barr. 1968. “Survival of Whole-Body-Irradiated Hibernating and Active Ground Squirrels; Citellus Tridecemlineatus.” Radiation Research 33(2):348–356.

Musgrave, M.E. 2002. “Seeds in Space.” Seed Science Research 12(1):1–17.

Musgrave, M.E., A. Kuang, and S.W. Matthews. 1997. “Plant Reproduction During Spaceflight: Importance of the Gaseous Environment.” Planta 203(Suppl):S177–S184.

Musgrave, M.E., A. Kuang, Y. Xiao, S.C. Stout, G.E. Bingham, L.G. Briarty, M.A. Levinskikh, V.N. Sychev, and I.G. Podolski. 2000. “Gravity Independence of Seed-to-Seed Cycling in Brassica Rapa.” Planta 210(3):400–406.

Nagayama, K., and T. Fukuei. 2020. “Cyclic Stretch-Induced Mechanical Stress to the Cell Nucleus Inhibits Ultraviolet Radiation-Induced DNA Damage.” Biomechanics and Modeling in Mechanobiology 19(2):493–504.

Najrana, T., and J. Sanchez-Esteban. 2016. “Mechanotransduction as an Adaptation to Gravity.” Review. Frontiers in Pediatrics 4.

Nakashima, J., J.A. Sparks, J.A. Carver, S.D. Stephens, T. Kwon, and E.B. Blancaflor. 2014. “Delaying Seed Germination and Improving Seedling Fixation: Lessons Learned During Science and Payload Verification Tests for Advanced Plant Experiments (Apex) 02-1 in Space.” Gravitational and Space Research 2(1):54–67.

Nangle, S.N., M.Y. Wolfson, L. Hartsough, N.J. Ma, C.E. Mason, M. Merighi, V. Nathan, et al. 2020. “The Case for Biotech on Mars.” Nature Biotechnology 38(4):401–407.

Napoli, A., D. Micheletti, M. Pindo, S. Larger, A. Cestaro, J.-P. de Vera, and D. Billi. 2022. “Absence of Increased Genomic Variants in the Cyanobacterium Chroococcidiopsis Exposed to Mars-Like Conditions Outside the Space Station.” Scientific Reports 12(1):8437.

NASA (National Aeronautics and Space Administration). 2013. A Researcher’s Guide to the International Space Station—Microbial Research. Houston, TX: Johnson Space Center. http://www.nasa.gov/sites/default/files/files/Microbial-Observatory-Mini-Book-04-28-14-508.pdf.

NASA. 2017. “Advanced Plant Habitat.” https://www.nasa.gov/sites/default/files/atoms/files/advanced-plant-habitat.pdf.

NASA. 2019. “Spectrum.” https://www.nasa.gov/sites/default/files/atoms/files/iss_spectrum_flyer_9091020191.pdf.

NASA. 2020a. “Commercial Lunar Payload Services.” https://www.nasa.gov/content/commercial-lunar-payload-services.

NASA. 2020b. “Veggie Fact Sheet 508.” https://www.nasa.gov/sites/default/files/atoms/files/veggie_fact_sheet_508.pdf.

NASA. 2021. National Aeronautics and Space Administration (NASA) Model Equal Employment Opportunity Program Status Report: FY 2021. Washington, DC: Office of Diversity and Equal Opportunity. https://www.nasa.gov/sites/default/files/atoms/files/odeo-fy21_model_715_report_tagged.pdf.

NASA. 2022a. Aerospace Safety Advisory Panel Annual Report. Washington, DC: NASA Aerospace Safety Advisory Panel. https://oiir.hq.nasa.gov/asap/documents/ASAP_2022_Annual_Report.pdf.

NASA. 2022b. International Space Station Transition Report. Washington, DC. https://www.nasa.gov/sites/default/files/atoms/files/2022_iss_transition_report-final_tagged.pdf.

NASA. 2022c. Moon to Mars Objectives. Washington, DC. https://www.nasa.gov/sites/default/files/atoms/files/m2m-objectives-exec-summary.pdf.

NASA. 2022d. NASA Strategic Plan for Diversity, Equity, Inclusion, and Accessibility. Washington, DC. https://www.nasa.gov/sites/default/files/atoms/files/nasa_deia_strategic_plan-fy22-fy26-final_tagged.pdf.

NASA. 2022e. “National Aeronautics and Space Administration Policy Statement on Diversity, Equity, Inclusion, and Accessibility for NASA’s Workforce and Workplaces.” https://www.nasa.gov/sites/default/files/atoms/files/2022_administrator_policy_statement_on_deia_at_nasa_tagged.pdf.

NASA. 2023a. “Commercial Low-Earth Orbit Destination (CLD) Capabilities of Interest and Resource Needs.” Washington, DC. https://ntrs.nasa.gov/api/citations/20230003013/downloads/CLD%20Utilization%20Cap_STH%20White%20Paper%20v12b%20%20FINAL%200208_2023.pdf.

NASA. 2023b. “Transform to Open Science (TOPS).” https://science.nasa.gov/open-science/transform-to-open-science.

NASA GeneLab. “Homepage.” https://genelab.nasa.gov.

NASEM (National Academies of Sciences, Engineering, and Medicine). 2018. A Midterm Assessment of Implementation of the Decadal Survey on Life and Physical Sciences Research at NASA. Washington, DC: The National Academies Press.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

NASEM. 2019. Science Breakthroughs to Advance Food and Agricultural Research by 2030. Washington, DC: The National Academies Press.

NASEM. 2020. Manipulating Quantum Systems: An Assessment of Atomic, Molecular, and Optical Physics in the United States. Washington, DC: The National Academies Press.

NASEM. 2022a. Advancing Diversity, Equity, Inclusion, and Accessibility in the Leadership of Competed Space Missions. Washington, DC: The National Academies Press.

NASEM. 2022b. Physics of Life. Washington, DC: The National Academies Press.

NASEM. 2023. Advancing Antiracism, Diversity, Equity, and Inclusion in STEMM Organizations: Beyond Broadening Participation. Washington, DC: The National Academies Press.

Nath, S., G.M. Aron, G.M. Southard, and R.J. McLean. 2010. “Potential for Largemouth Bass Virus to Associate with and Gain Protection from Bacterial Biofilms.” Journal of Aquatic Animal Health 22(2):95–101.

Nauman, E.A., C.M. Ott, E. Sander, D.L. Tucker, D. Pierson, J.W. Wilson, and C.A. Nickerson. 2007. “Novel Quantitative Biosystem for Modeling Physiological Fluid Shear Stress on Cells.” Applied and Environmental Microbiology 73(3): 699–705.

Nayagam, V., D.L. Dietrich, P.V. Ferkul, M.C. Hicks, and F.A. Williams. 2012. “Can Cool Flames Support Quasi-Steady Alkane Droplet Burning?” Combustion and Flame 159(12):3583–3588.

Neelam, S., B. Richardson, R. Barker, C. Udave, S. Gilroy, M.J. Cameron, H.G. Levine, and Y. Zhang. 2020. “Changes in Nuclear Shape and Gene Expression in Response to Simulated Microgravity Are Linc Complex-Dependent.” International Journal of Molecular Sciences 21(18).

Nelson, E.S., L. Mulugeta, and J.G. Myers. 2014. “Microgravity-Induced Fluid Shift and Ophthalmic Changes.” Life (Basel) 4(4):621–665.

Nguyen, H.P., P.H. Tran, K.-S. Kim, and S.-G. Yang. 2021. “The Effects of Real and Simulated Microgravity on Cellular Mitochondrial Function.” npj Microgravity 7(1):44.

Ni, Z., S. Zhou, S. Li, L. Kuang, H. Chen, X. Luo, J. Ouyang, M. He, X. Du, and L. Chen. 2020. “Exosomes: Roles and Therapeutic Potential in Osteoarthritis.” Bone Research 8(1):25.

Nicholson, W.L., and A.J. Ricco. 2020. “Nanosatellites for Biology in Space: In Situ Measurement of Bacillus Subtilis Spore Germination and Growth After 6 Months in Low Earth Orbit on the O/Oreos Mission.” Life 10(1):1.

Nickerson, C.A., A.A. Medina-Colorado, J. Barrila, G. Poste, and C.M. Ott. 2022. “A Vision for Spaceflight Microbiology to Enable Human Health and Habitat Sustainability.” Nature Microbiology 7(4):471–474.

Nickerson, C.A., C.M. Ott, S.J. Mister, B.J. Morrow, L. Burns-Keliher, and D.L. Pierson. 2000. “Microgravity as a Novel Environmental Signal Affecting Salmonella Enterica Serovar Typhimurium Virulence.” Infection and Immunity 68(6):3147–3152.

Nickerson, C.A., C.M. Ott, J.W. Wilson, R. Ramamurthy, and D.L. Pierson. 2004. “Microbial Responses to Microgravity and Other Low-Shear Environments.” Microbiology and Molecular Biology Reviews 68(2):345–361.

Nickerson, C.A., N.R. Pellis, and C.M. Ott. 2016. Effect of Spaceflight and Spaceflight Analogue Culture on Human and Microbial Cells: Novel Insights into Disease Mechanisms. New York: Springer.

NIH (National Institutes of Health). 2018. “2018 Tissue Chips in Space Projects.” https://ncats.nih.gov/tissuechip/projects/space2018.

Ninarello, A., L. Berthier, and D. Coslovich. 2017. “Models and Algorithms for the Next Generation of Glass Transition Studies.” Physical Review X 7(2):021039.

Nonić, M., and M. Šijačić-Nikolić. 2019. “Genetic Diversity: Sources, Threats, and Conservation.” Pp. 1–15 in Life on Land, W.L. Filho, A.M. Azul, L. Brandli, et al., eds. Cham, Switzerland: Springer International Publishing.

NRC (National Research Council). 2000. Future Biotechnology Research on the International Space Station. Washington, DC: National Academy Press.

NRC. 2009. Evaluation of NSF’s Program of Grants for Vertical Integration of Research and Education in the Mathematical Sciences (VIGRE). Washington, DC: The National Academies Press.

NRC. 2011. Recapturing a Future for Space Exploration: Life and Physical Sciences Research for a New Era. Washington, DC: The National Academies Press.

NSF (National Science Foundation). 2022a. “Demographic Attributes of S&E Degree Recipients.” Science and Engineering Indicators. https://ncses.nsf.gov/pubs/nsf23315/report/science-and-engineering-degrees-earned#degrees-earned-bywomen-in-broad-s-e-fields.

NSF. 2022b. “U.S. and Global Science and Technology Capabilities.” Science and Engineering Indicators. https://ncses.nsf.gov/pubs/nsb20221/u-s-and-global-science-and-technology-capabilities#research-publications.

NSF. 2022c. “U.S. and Global Research and Development.” Science and Engineering Indicators. https://ncses.nsf.gov/pubs/nsb20221/u-s-and-global-research-and-development.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

NSF. 2022d. “U.S. and Global STEM Education and Labor Force.” Science and Engineering Indicators. https://ncses.nsf.gov/pubs/nsb20221/u-s-and-global-stem-education-and-labor-force.

NSTC (National Science and Technology Council). 2022. Interagency Roadmap to Support Space-Related STEM Education and Workforce. Office of Science and Technology Policy. https://www.whitehouse.gov/wp-content/uploads/2022/09/09-2022-Interagency-Roadmap-to-Support-Space-Related-STEM-Education-and-Workforce.pdf.

NSTC. 2023. National Low Earth Orbit Research and Development Strategy. Low Earth Orbit Science and Technology Interagency Working Group. Washington, DC: Office of Science and Technology Policy. https://www.whitehouse.gov/wp-content/uploads/2023/03/NATIONAL-LEO-RD-STRATEGY-033123.pdf.

NTSS (NASA Technical Standards System). 2011. “Flammability, Offgassing, and Compatibility Requirements and Test Procedures.” NASA-STD-6001, version B. Office of the NASA Chief Engineer. https://standards.nasa.gov/standard/NASA/NASA-STD-6001.

NTSS. 2022. “NASA Space Flight Human-System Standard Volume 2: Human Factors, Habitability, and Environmental Health.” NASA-STD-3001 Vol 2, version C. Office of the NASA Chief Engineer. https://standards.nasa.gov/standard/NASA/NASA-STD-3001-VOL-2.

Nussle, R.C., E.W. Otto, and D.A. Petrash. 1963. Effect of Contact Angle and Tank Geometry on the Configuration of the Liquid-Vapor Interface During Weightlessness. NASA. https://ntrs.nasa.gov/citations/19630013804.

OECD (Organisation for Economic Co-operation and Development). 2021. “How Will COVID-19 Reshape Science, Technology and Innovation?” OECD Policy Responses to Coronavirus (COVID-19). https://www.oecd.org/coronavirus/policy-responses/how-will-covid-19-reshape-science-technology-and-innovation-2332334d.

Ogneva, I.V., and M.A. Usik. 2021. “Mitochondrial Respiration in Drosophila Ovaries After a Full Cycle of Oogenesis Under Simulated Microgravity.” Current Issues in Molecular Biology 43(1):176–186.

Ogneva, I.V., M.A. Usik, M.V. Burtseva, N.S. Biryukov, Y.S. Zhdankina, V.N. Sychev, and O.I. Orlov. 2020. “Drosophila Melanogaster Sperm under Simulated Microgravity and a Hypomagnetic Field: Motility and Cell Respiration.” International Journal of Molecular Sciences 21(17).

Ogneva, I.V., M.A. Usik, S.S. Loktev, Y.S. Zhdankina, N.S. Biryukov, O.I. Orlov, and V.N. Sychev. 2019. “Testes and Duct Deferens of Mice During Space Flight: Cytoskeleton Structure, Sperm-Specific Proteins and Epigenetic Events.” Scientific Reports 9(1):9730.

Ogneva, I.V., Y.S. Zhdankina, and O.V. Kotov. 2022. “Sperm of Fruit Fly Drosophila Melanogaster Under Space Flight.” International Journal of Molecular Sciences 23(14):7498.

Ohmae, N., M. Takamoto, Y. Takahashi, M. Kokubun, K. Araki, A. Hinton, I. Ushijima, et al. 2021. “Transportable Strontium Optical Lattice Clocks Operated Outside Laboratory at the Level of 10–18 Uncertainty.” Advanced Quantum Technologies 4(8):2100015.

Ohta, H., H. Asano, O. Kawanami, K. Suzuki, R. Imai, Y. Shinmoto, S. Matsumoto, et al. 2016. “Development of Boiling and Two-Phase Flow Experiments on Board ISS (Research Objectives and Concept of Experimental Setup).” International Journal of Microgravity Science and Application 33(1):330102.

Okuno, T., H. Nakamura, T. Tezuka, S. Hasegawa, K. Takase, M. Katsuta, M. Kikuchi, and K. Maruta. 2016. “Study on the Combustion Limit, Near-Limit Extinction Boundary, and Flame Regimes of Low-Lewis-Number CH4/O2/CO2 Counter-flow Flames Under Microgravity.” Combustion and Flame 172:13–19.

Okutani, T. 2002. “Materials Synthesis Using Microgravity Circumstances.” Journal of Advanced Science 14(4). https://www.jstage.jst.go.jp/article/jsas1989/14/4/14_4_143/_pdf/-char/ja.

Onorato, G., E. Di Schiavi, and F. Di Cunto. 2020. “Understanding the Effects of Deep Space Radiation on Nervous System: The Role of Genetically Tractable Experimental Models.” Review. Frontiers in Physics 8.

Onyak, J.R., M.N. Vergara, and J.M. Renna. 2022. “Retinal Organoid Light Responsivity: Current Status and Future Opportunities.” Translational Research: The Journal of Laboratory and Clinical Medicine 250:98–111.

Orazi, G., and G.A. O’Toole. 2019. “‘It Takes a Village’: Mechanisms Underlying Antimicrobial Recalcitrance of Polymicrobial Biofilms.” Journal of Bacteriology 202(1):e00530-00519.

O’Rourke, A., M.D. Lee, W.C. Nierman, R.C. Everroad, and C.L. Dupont. 2020. “Genomic and Phenotypic Characterization of Burkholderia Isolates from the Potable Water System of the International Space Station.” PLOS One 15(2):e0227152.

Ott, C.M., A. Crabbé, J.W. Wilson, J. Barrila, S.L. Castro-Wallace, and C.A. Nickerson. 2020. “Microbial Stress: Spaceflight-Induced Alterations in Microbial Virulence and Infectious Disease Risks for the Crew.” Pp. 327–355 in Stress Challenges and Immunity in Space: From Mechanisms to Monitoring and Preventive Strategies, A. Choukèr, ed. Cham: Springer International Publishing. Reprint.

Otto, C. 2016. “Fluid Shifts in Microgravity: The Visual Impairment and Intracranial Pressure Syndrome in U.S. Astronauts.” Investigative Ophthalmology and Visual Science 57(12).

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Paez, M.Y., L.I. Mudie, and P.S. Subramanian. 2020. “Spaceflight Associated Neuro-Ocular Syndrome (Sans): A Systematic Review and Future Directions.” Eye Brain 12:105–117.

Pagnotti, G.M., M. Styner, G. Uzer, V.S. Patel, L.E. Wright, K.K. Ness, T.A. Guise, J. Rubin, and C.T. Rubin. 2019. “Combating Osteoporosis and Obesity with Exercise: Leveraging Cell Mechanosensitivity.” Nature Reviews: Endocrinology 15(6):339–355.

Palacci, J., S. Sacanna, A.P. Steinberg, D.J. Pine, and P.M. Chaikin. 2013. “Living Crystals of Light-Activated Colloidal Surfers.” Science 339(6122):936–940.

Panda, C.D., M. Tao, J. Egelhoff, M. Ceja, V. Xu, and H. Müller. 2022. “Minute-Scale Gravimetry Using a Coherent Atomic Spatial Superposition.” arXiv:2210.07289 [physics.atom-ph]. https://doi.org/10.48550/arXiv.2210.07289.

Pandey, G., C.B. Yadav, P.P. Sahu, M. Muthamilarasan, and M. Prasad. 2017. “Salinity Induced Differential Methylation Patterns in Contrasting Cultivars of Foxtail Millet (Setaria Italica L.).” Plant Cell Reports 36(5):759–772.

Papadopoulos, E., F. Aghili, O. Ma, and R. Lampariello. 2021. “Robotic Manipulation and Capture in Space: A Survey.” Review. Frontiers in Robotics and AI 8.

Papadopoulos, L., M.A. Porter, K.E. Daniels, and D.S. Bassett. 2018. “Network Analysis of Particles and Grains.” Journal of Complex Networks 6(4):485–565.

Papike, J.J., S.B. Simon, and J.C. Laul. 1982. “The Lunar Regolith: Chemistry, Mineralogy, and Petrology.” Reviews of Geophysics 20(4):761–826.

Paradise, R.K., D.A. Lauffenburger, and K.J. Van Vliet. 2011. “Acidic Extracellular pH Promotes Activation of Integrin αvα3.” PLOS One 6(1):e15746. https://doi.org/10.1371/journal.pone.0015746.

Paradise, R.K., M.J. Whitfield, D.A. Lauffenburger, and K.J. Van Vliet. 2013. “Directional Cell Migration in an Extracellular pH Gradient: A Model Study with an Engineered Cell Line and Primary Microvascular Endothelial Cells.” Experimental Cell Research 319(4):487–497. https://doi.org/https://doi.org/10.1016/j.yexcr.2012.11.006.

Paradiso, R., R. Buonomo, M. Dixon, G. Barbieri, and S. De Pascale. 2014. “Soybean Cultivation for Bioregenerative Life Support Systems (BLISSs): The Effect of Hydroponic System and Nitrogen Source.” Advances in Space Research 53(3):574–584.

Paradiso, R., V. De Micco, R. Buonomo, G. Aronne, G. Barbieri, and S. De Pascale. 2014. “Soilless Cultivation of Soybean for Bioregenerative Life-Support Systems: A Literature Review and the Experience of the Melissa Project—Food Characterisation Phase I.” Plant Biology (Stuttgart, Germany) 16(Suppl 1):69–78.

París, R., M.M. Vazquez, M. Graziano, M.C. Terrile, N.D. Miller, E.P. Spalding, M.S. Otegui, and C.A. Casalongué. 2018. “Distribution of Endogenous NO Regulates Early Gravitropic Response and PIN2 Localization in Arabidopsis Roots.” Original Research. Frontiers in Plant Science 9.

Parker, C.W., N. Singh, S. Tighe, A. Blachowicz, J.M. Wood, A. Seuylemezian, P. Vaishampayan, et al. 2020. “End-to-End Protocol for the Detection of SARS-CoV-2 from Built Environments.” mSystems 5(5).

Parkes, T.L., A.J. Elia, D. Dickinson, A.J. Hilliker, J.P. Phillips, and G.L. Boulianne. 1998. “Extension of Drosophila Lifespan by Overexpression of Human SOD1 in Motorneurons.” Nature Genetics 19(2):171–174.

Parkhitko, A.A., E. Filine, S.E. Mohr, A. Moskalev, and N. Perrimon. 2020. “Targeting Metabolic Pathways for Extension of Lifespan and Healthspan Across Multiple Species.” Ageing Research Reviews 64:101188.

Parmar, N., K.H. Singh, D. Sharma, L. Singh, P. Kumar, J. Nanjundan, Y.J. Khan, D.K. Chauhan, and A.K. Thakur. 2017. “Genetic Engineering Strategies for Biotic and Abiotic Stress Tolerance and Quality Enhancement in Horticultural Crops: A Comprehensive Review.” 3 Biotech 7(4):239.

Particle Data Group, R.L. Workman, V.D. Burkert, V. Crede, E. Klempt, U. Thoma, L. Tiator, et al. 2022. “Review of Particle Physics.” Progress of Theoretical and Experimental Physics (8).

Passel, J.S., and Cohn, D. 2008. “U.S. Population Projections: 2005–2050.” Pew Research Center. https://www.pewresearch.org/hispanic/2008/02/11/us-population-projections-2005-2050.

Patel, V.K., F. Robinson, J.S. Yagoobi, and J. Didion. 2013. “Terrestrial and Micro-Gravity Experimental Study of Micro-Scale Heat Transport Device Driven by Electrohydrodynamic Conduction Pumping.” IEEE Transactions on Industry Applications 49(6):2397–2401.

Patel, V.K., J. Seyed-Yagoobi, F. Robinson, and J.R. Didion. 2016. “Effect of Gravity on Electrohydrodynamic Conduction Driven Liquid Film Flow Boiling.” AIAA Journal of Thermophysics and Heat Transfer 30(2):429–437.

Paul, A.-L., C.E. Amalfitano, and R.J. Ferl. 2012. “Plant Growth Strategies Are Remodeled by Spaceflight.” BMC Plant Biology 12(1):232.

Paul, A.-L., S.M. Elardo, and R. Ferl. 2022. “Plants Grown in Apollo Lunar Regolith Present Stress-Associated Transcriptomes That Inform Prospects for Lunar Exploration.” Communications Biology 5(1):382.

Paul, A.-L., N. Haveman, B. Califar, and R.J. Ferl. 2021. “Epigenomic Regulators Elongator Complex Subunit 2 and Methyltransferase 1 Differentially Condition the Spaceflight Response in Arabidopsis.” Frontiers in Plant Science 12:691790.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Paul, A.-L., N.J. Sng, A.K. Zupanska, A. Krishnamurthy, E.R. Schultz, and R.J. Ferl. 2017. “Genetic Dissection of the Arabidopsis Spaceflight Transcriptome: Are Some Responses Dispensable for the Physiological Adaptation of Plants to Spaceflight?” PLOS One 12(6):e0180186.

Paul, A.-L., A.K. Zupanska, D.T. Ostrow, Y. Zhang, Y. Sun, J.-L. Li, S. Shanker, W.G. Farmerie, C.E. Amalfitano, and R.J. Ferl. 2012. “Spaceflight Transcriptomes: Unique Responses to a Novel Environment.” Astrobiology 12(1):40–56.

Paul, A.-L., A.K. Zupanska, E.R. Schultz, and R.J. Ferl. 2013. “Organ-Specific Remodeling of the Arabidopsis Transcriptome in Response to Spaceflight.” BMC Plant Biology 13(1):112.

Pecaut, M.J., D.S. Gridley, and G.A. Nelson. 2003. “Long-Term Effects of Low-Dose Proton Radiation on Immunity in Mice: Shielded vs. Unshielded.” Aviation, Space, Environmental Medicine 74(2):115–124.

Pelfrey, J., and L. Jordan. 2008. “An EXPRESS Rack Overview and Support for Microgravity Research on the International Space Station (ISS).” Paper for the 46th AIAA Aerospace Sciences Meeting and Exhibit.

Perez-Garcia, P., and M.A. Moreno-Risueno. 2018. “Stem Cells and Plant Regeneration.” Developmental Biology 442(1): 3–12.

Perrin, E., G. Bacci, L. Garrelly, F. Canganella, G. Bianconi, R. Fani, and A. Mengoni. 2018. “Furnishing Spaceship Environment: Evaluation of Bacterial Biofilms on Different Materials Used Inside International Space Station.” Research in Microbiology 169(6):289–295.

Persat, A., C.D. Nadell, M.K. Kim, F. Ingremeau, A. Siryaporn, K. Drescher, N.S. Wingreen, B.L. Bassler, Z. Gitai, and H.A. Stone. 2015. “The Mechanical World of Bacteria.” Cell 161(5):988–997.

Phillips, K.W. 2014. “How Diversity Makes Us Smarter.” Scientific American 311(4):42–47.

Pierson, D.L., R.P. Stowe, T.M. Phillips, D.J. Lugg, and S.K. Mehta. 2005. “Epstein-Barr Virus Shedding by Astronauts During Space Flight.” Brain, Behavior, and Immunity 19(3):235–242.

Piofczyk, T., G. Jeena, and A. Pecinka. 2015. “Arabidopsis Natural Variation Reveals Connections Between UV Radiation Stress and Plant Pathogen-Like Defense Responses.” Plant Physiology and Biochemistry 93:34–43.

Piper, M.D.W., and L. Partridge. 2018. “Drosophila as a Model for Ageing.” Biochimica et Biophysica Acta Molecular Basis of Disease 1864(9 Pt A):2707–2717.

Pippia, P., L. Sciola, M. Cogoli-Greuter, M.A. Meloni, A. Spano, and A. Cogoli. 1996. “Activation Signals of T Lymphocytes in Microgravity.” Journal of Biotechnology 47(2–3):215–222.

Pisharody, S., B. Borchers, and G. Schlick. 1996. “Solid Waste Processing in a CELSS: Nitrogen Recovery.” Life Support & Biosphere Science 3(1–2):61–65.

Ploutz-Snyder, L., S. Bloomfield, S.M. Smith, S.K. Hunter, K. Templeton, and D. Bemben. 2014. “Effects of Sex and Gender on Adaptation to Space: Musculoskeletal Health.” Journal of Women’s Health (Larchmt) 23(11):963–966.

Popova, A., A. Kuang, G. McClure, and M. Musgrave. 2002. “Reserve Nutrient Substance Accumulation in Brassica Rapa L. Seeds in Microgravity Conditions (STS-87).” Journal of Gravitational Physiology 9(1):P237–P238.

Popova, N.K., A.V. Kulikov, and V.S. Naumenko. 2020. “Spaceflight and Brain Plasticity: Spaceflight Effects on Regional Expression of Neurotransmitter Systems and Neurotrophic Factors Encoding Genes.” Neuroscience and Biobehavioral Reviews 119:396–405.

Poughon, L., C. Laroche, C. Creuly, C.-G. Dussap, C. Paille, C. Lasseur, P. Monsieurs, et al. 2020. “Limnospira Indica PCC8005 Growth in Photobioreactor: Model and Simulation of the ISS and Ground Experiments.” Life Sciences in Space Research 25:53–65.

Poulet, L., K. Engeling, T. Hatch, S. Stahl-Rommel, Y.-A. Velez Justiniano, S. Castro-Wallace, J. Bunchek, et al. 2022. “Large-Scale Crop Production for the Moon and Mars: Current Gaps and Future Perspectives.” Perspective. Frontiers in Astronomy and Space Sciences 8.

Poulet, L., J.P. Fontaine, and C.G. Dussap. 2018. “A Physical Modeling Approach for Higher Plant Growth in Reduced Gravity Environments.” Astrobiology 18(9):1093–1100.

Poulet, L., C. Zeidler, J. Bunchek, P. Zabel, V. Vrakking, D. Schubert, G. Massa, and R. Wheeler. 2021. “Crew Time in a Space Greenhouse Using Data from Analog Missions and Veggie.” Life Sciences in Space Research 31:101–112.

Prakash, B., B.M. Veeregowda, and G. Krishnappa. 2003. “Biofilms: A Survival Strategy of Bacteria.” Current Science 85(9):1299–1307.

Prisk, G.K. 2014. “Microgravity and the Respiratory System.” European Respiratory Journal 43(5):1459–1471.

Prosperetti, A. 2017. “Vapor Bubbles.” Annual Review of Fluid Mechanics 49(1):221–248.

Raj, R., J. Kim, and J. McQuillen. 2009. “Subcooled Pool Boiling in Variable Gravity Environments.” ASME Journal of Heat and Mass Transfer 131(9).

Raj, R., J. Kim, and J. McQuillen. 2012. “Pool Boiling Heat Transfer on the International Space Station: Experimental Results and Model Verification.” Journal of Heat Transfer 134(10).

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Rapin, G., N. Caballero, I. Gaponenko, B. Ziegler, A. Rawleigh, E. Moriggi, T. Giamarchi, S.A. Brown, and P. Paruch. 2021. “Roughness and Dynamics of Proliferating Cell Fronts as a Probe of Cell–Cell Interactions.” Scientific Reports 11(1):8869.

Rasera, J.N., J.J. Cilliers, J.A. Lamamy, and K. Hadler. 2020. “The Beneficiation of Lunar Regolith for Space Resource Utilisation: A Review.” Planetary and Space Science 186:104879.

Reagan, S. 2017. MSRR Rack Materials Science Research Rack. ID: 20170012377. Paper at the Annual Meeting American Society for Gravitational and Space Research (ASGSR 2017).

Rechavi, O., L. Houri-Ze’evi, S. Anava, W.S.S. Goh, S.Y. Kerk, G.J. Hannon, and O. Hobert. 2014. “Starvation-Induced Transgenerational Inheritance of Small RNAs in C. Elegans.” Cell 158(2):277–287.

Rechavi, O., G. Minevich, and O. Hobert. 2011. “Transgenerational Inheritance of an Acquired Small RNA-Based Antiviral Response in C. Elegans.” Cell 147(6):1248–1256.

Redwire. 2020. “Redwire Acquires Made in Space, the Leader in On-Orbit Space Manufacturing Technologies.” https://redwirespace.com/newsroom/redwire-acquires-made-in-space-the-leader-in-on-orbit-space-manufacturing-technologies/?rdws=nnn.xffxcv.tfd&rdwj=120.

Regal, C.A., C. Ticknor, J.L. Bohn, and D.S. Jin. 2003. “Creation of Ultracold Molecules from a Fermi Gas of Atoms.” Nature 424(6944):47–50.

Reichert, P., W. Prosise, T.O. Fischmann, G. Scapin, C. Narasimhan, A. Spinale, R. Polniak, et al. 2019. “Pembrolizumab Microgravity Crystallization Experimentation.” npj Microgravity 5:28.

Reichhardt, T. 1998. “Biologists Recommend Scrapping NASA’s Research on Crystals.” Nature 394(6690):213.

Reid, J.B., and J.J. Ross. 2011. “Regulation of Tissue Repair in Plants.” Proceedings of the National Academy of Sciences 108(42):17241–17242.

Reitz, B., C. Lotz, N. Gerdes, S. Linke, E. Olsen, K. Pflieger, S. Sohrt, et al. 2021. “Additive Manufacturing Under Lunar Gravity and Microgravity.” Microgravity Science and Technology 33(2):25.

Reitz, R.D., and G. Duraisamy. 2015. “Review of High Efficiency and Clean Reactivity Controlled Compression Ignition (RCCI) Combustion in Internal Combustion Engines.” Progress in Energy and Combustion Science 46:12–71.

Reynolds, R.J., I.V. Bukhtiyarov, G.I. Tikhonova, S.M. Day, I.B. Ushakov, and T.Y.U. Gorchakova. 2019. “Contrapositive Logic Suggests Space Radiation Not Having a Strong Impact on Mortality of US Astronauts and Soviet and Russian Cosmonauts.” Scientific Reports 9(1):8583.

Ripples Nigeria. 2019. “NASA Set to Grow First Fruits in Space.” Ripples Nigeria. https://www.ripplesnigeria.com/nasa-set-to-grow-first-fruits-in-space.

Ritchie, H., M. Roser, and P. Rosado. 2022. “Energy Mix.” https://ourworldindata.org/energy-mix.

Roberts, T.G. “Space Launch to Low Earth Orbit: How Much Does It Cost?” 2022. Aerospace Security. Center for Strategic & International Studies. https://aerospace.csis.org/data/space-launch-to-low-earth-orbit-how-much-does-it-cost.

Robinson, J. 2017. Rodent Research Workshop. Presentation at the 33rd Annual Meeting of the American Society for Gravitational and Space Research.

Robling, A.G., and C.H. Turner. 2009. “Mechanical Signaling for Bone Modeling and Remodeling.” Critical Reviews in Eukaryotic Gene Expression 19(4):319–338.

Roger, F., A. Godhe, and L. Gamfeldt. 2012. “Genetic Diversity and Ecosystem Functioning in the Face of Multiple Stressors.” PLOS One 7(9):e45007.

Rojas-Alva, U., and G. Jomaas. 2022. “A Historical Overview of Experimental Solid Combustion Research in Microgravity.” Acta Astronautica 194:363–375.

Ronca, A.E., J.S. Alwood, J.R. Alberts, J.G. Steller, L.K. Christenson, Y. Shirazi, and A.-L. Paul. 2021. “Mammalian Multi-Generational Studies in Space.” Input paper submitted to the Committee on Biological and Physical Sciences Research in Space 2023–2032. https://www.nationalacademies.org/our-work/decadal-survey-on-life-and-physical-sciences-research-in-space-2023-2032.

Ronca, A.E., E.L. Moyer, Y. Talyansky, M. Lowe, S. Padmanabhan, S. Choi, C. Gong, S.M. Cadena, L. Stodieck, and R.K. Globus. 2019. “Behavior of Mice Aboard the International Space Station.” Scientific Reports 9(1):4717.

Ronney, P.D. 1998. “Understanding Combustion Processes Through Microgravity Research.” Symposium (International) on Combustion 27(2):2485–2506.

Rosenzweig, J.A., S. Ahmed, J. Eunson, Jr., and A.K. Chopra. 2014. “Low-Shear Force Associated with Modeled Microgravity and Spaceflight Does Not Similarly Impact the Virulence of Notable Bacterial Pathogens.” Applied Microbiology and Biotechnology 98(21):8797–8807.

Royal Museums Greenwich. 2023. “What Was the First Animal Sent into Space?” https://www.rmg.co.uk/stories/topics/what-was-first-animal-space.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Roy-O’Reilly, M., A. Mulavara, and T. Williams. 2021. “A Review of Alterations to the Brain During Spaceflight and the Potential Relevance to Crew in Long-Duration Space Exploration.” npj Microgravity 7(1):5.

Rubenstein, M., A. Cornejo, and R. Nagpal. 2014. “Programmable Self-Assembly in a Thousand-Robot Swarm.” Science 345(6198):795–799.

Rutter, L., R. Barker, D. Bezdan, H. Cope, S.V. Costes, L. Degoricija, K.M. Fisch, et al. 2020. “A New Era for Space Life Science: International Standards for Space Omics Processing.” Patterns 1(9):100148.

Saad, M.M., A.A. Eida, and H. Hirt. 2020. “Tailoring Plant-Associated Microbial Inoculants in Agriculture: A Roadmap for Successful Application.” Journal of Experimental Botany 71(13):3878–3901.

Sabin, S. 2021. “Nearly Half the Public Wants the U.S. to Maintain Its Space Dominance. Appetite for Space Exploration Is a Different Story.” Morning Consult. https://pro.morningconsult.com/articles/space-force-travel-exploration-poll.

Sacco, E., and S.K. Moon. 2019. “Additive Manufacturing for Space: Status and Promises.” The International Journal of Advanced Manufacturing Technology 105(10):4123–4146.

Safronova, M., and D. Budker. 2022. “Focus Issue on Quantum Sensors for New-Physics Discoveries.” Quantum Science and Technology. Collection of papers. https://iopscience.iop.org/journal/2058-9565/page/Focus-on-Quantum-Sensors-for-New-Physics-Discoveries.

Safronova, M.S., and D. Budker. 2021. “Quantum Technologies and the Elephants.” Quantum Science and Technology 6(4):040401.

Safronova, M.S., D. Budker, D. DeMille, D.F. Jackson Kimball, A. Derevianko, and C.W. Clark. 2018. “Search for New Physics with Atoms and Molecules.” Reviews of Modern Physics 90(2):025008.

Saletore, Y., K. Meyer, J. Korlach, I.D. Vilfan, S. Jaffrey, and C.E. Mason. 2012. “The Birth of the Epitranscriptome: Deciphering the Function of RNA Modifications.” Genome Biology 13(10):175.

Salisbury, F.B. 1992. “Some Challenges in Designing a Lunar, Martian, or Microgravity CELSS.” Acta Astronautica 27:211–217.

Salisbury, F.B. 1997. “Growing Super-Dwarf Wheat in Space Station Mir.” Life Support & Biosphere Science 4(3–4):155–166.

Salisbury, F.B. 1999. “Growing Crops for Space Explorers on the Moon, Mars, or in Space.” Advances in Space Biology and Medicine 7:131–162.

Salzman, J.A., W.J. Masica, and R.F. Lacovic. 1973. Low Gravity Reorientation in a Scale-Model Centaur Liquid-Hydrogen Tank. NASA. https://ntrs.nasa.gov/citations/19730007525.

Sampathkumar, A., A. Yan, P. Krupinski, and E.M. Meyerowitz. 2014. “Physical Forces Regulate Plant Development and Morphogenesis.” Current Biology 24(10):R475–R483.

Sangsuwan, T., M. Mannervik, and S. Haghdoost. 2022. “Transgenerational Effects of Gamma Radiation Dose and Dose Rate on Drosophila Flies Irradiated at an Early Embryonal Stage.” Mutation Research—Genetic Toxicology Environmental Mutagenesis 881:503523.

Sanner, C., N. Huntemann, R. Lange, C. Tamm, E. Peik, M.S. Safronova, and S.G. Porsev. 2019. “Optical Clock Comparison for Lorentz Symmetry Testing.” Nature 567(7747):204–208.

Santomartino, R., L. Zea, and C.S. Cockell. 2022. “The Smallest Space Miners: Principles of Space Biomining.” Extremophiles 26(1):7.

Sarkar, R., and F. Pampaloni. 2022. “In Vitro Models of Bone Marrow Remodelling and Immune Dysfunction in Space: Present State and Future Directions.” Biomedicines 10(4):766.

Sarraf, D.B., and W.G. Anderson. 2007. “Heat Pipes for High Temperature Thermal Management.” Paper presented at the ASME 2007 InterPACK Conference collocated with the ASME/JSME 2007 Thermal Engineering Heat Transfer Summer Conference. https://doi.org/10.1115/IPACK2007-33984.

Saulmon, M.M., K.F. Reardon, and W.Z. Sadeh. 1996. “A Bioreactor System for the Nitrogen Loop in a Controlled Ecological Life Support System.” Advances in Space Research 18(1):289–292.

Scherer, G.F., and P. Pietrzyk. 2014. “Gravity-Dependent Differentiation and Root Coils in Arabidopsis Thaliana Wild Type and Phospholipase-a-I Knockdown Mutant Grown on the International Space Station.” Plant Biology (Stuttgart, Germany) 16(Suppl 1):97–106.

Schermelleh, L., A. Ferrand, T. Huser, C. Eggeling, M. Sauer, O. Biehlmaier, and G.P.C. Drummen. 2019. “Super-Resolution Microscopy Demystified.” Nature Cell Biology 21(1):72–84.

Schiller, S. 2015. Final Report Summary—SOC2 (Towards Neutral-Atom Space Optical Clocks: Development of High-Performance Transportable and Breadboard Optical Clocks and Advanced Subsystems. Luxembourg: EU Publications. https://cordis.europa.eu/project/id/263500/reporting.

Schiwon, K., K. Arends, K.M. Rogowski, S. Fürch, K. Prescha, T. Sakinc, R. Van Houdt, G. Werner, and E. Grohmann. 2013. “Comparison of Antibiotic Resistance, Biofilm Formation and Conjugative Transfer of Staphylococcus and Enterococcus Isolates from International Space Station and Antarctic Research Station Concordia.” Microbial Ecology 65(3):638–651.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Schkolnik, V., D. Budker, O. Fartmann, V. Flambaum, L. Hollberg, T. Kalaydzhyan, S. Kolkowitz, et al. 2022. “Optical Atomic Clock Aboard an Earth-Orbiting Space Station (OACESS): Enhancing Searches for Physics Beyond the Standard Model in Space.” Quantum Science and Technology 8(2023):014003.

Schmoch, T., J.H. Westhoff, S.O. Decker, A. Skarabis, G.F. Hoffmann, C. Dohna-Schwake, U. Felderhoff-Müser, et al. 2021. “Next-Generation Sequencing Diagnostics of Bacteremia in Pediatric Sepsis.” Medicine (Baltimore) 100(25):e26403.

Schuerger, A.C., B.S. Amaradasa, N.S. Dufault, M.E. Hummerick, J.T. Richards, C.L. Khodadad, T.M. Smith, and G.D. Massa. 2021. “Fusarium Oxysporum as an Opportunistic Fungal Pathogen on Zinnia Hybrida Plants Grown on Board the International Space Station.” Astrobiology 21(9):1029–1048.

Schwartzkopf, S.H. 1997. “Human Life Support for Advanced Space Exploration.” Advances in Space Biology and Medicine 6:231–253.

Schwarzenbach, H., D.S.B. Hoon, and K. Pantel. 2011. “Cell-Free Nucleic Acids as Biomarkers in Cancer Patients.” Nature Reviews Cancer 11(6):426–437.

Scott, T.J., and N.S. Vonortas. 2017. An Economic Appraisal of Microgravity Protein Crystallization for Drug Development. Washington, DC: NASA. https://www.nasa.gov/sites/default/files/atoms/files/microg_protein_crystallization_scott-vonortas_09152017.pdf.

Seawright, J.W., V. Sridharan, R.D. Landes, M. Cao, P. Singh, I. Koturbash, X.-W. Mao, et al. 2019. “Effects of Low-Dose Oxygen Ions and Protons on Cardiac Function and Structure in Male C57BL/6J Mice.” Life Sciences in Space Research 20:72–84.

Sedda, M.A., C.P.L. Berry, K. Jani, P. Amaro-Seoane, P. Auclair, J. Baird, T. Baker, et al. 2021. “The Missing Link in Gravitational-Wave Astronomy: A Summary of Discoveries Waiting in the Decihertz Range.” Experimental Astronomy (Dordr) 51(3):1427–1440.

Senatore, G., F. Mastroleo, N. Leys, and G. Mauriello. 2018. “Effect of Microgravity & Space Radiation on Microbes.” Future Microbiology 13(7):831–847.

Sertoglu, K. 2020. “International Space Station Bioprinting Facility Receives a 3D Printed Upgrade.” https://3dprintingindustry.com/news/international-space-station-bioprinting-facility-receives-a-3d-printed-upgrade-168402.

Shackelford, L.C., A.D. LeBlanc, T.B. Driscoll, H.J. Evans, N.J. Rianon, S.M. Smith, E. Spector, D.L. Feeback, and D. Lai. 2004. “Resistance Exercise as a Countermeasure to Disuse-Induced Bone Loss.” Journal of Applied Physiology (1985) 97(1):119–129.

Shang, L., Y. Cheng, and Y. Zhao. 2017. “Emerging Droplet Microfluidics.” Chemical Reviews 117(12):7964–8040.

Shevtsov, J., C. Escobar, A.C. Schuerger, C.M. Trouillefou, L.K. Tuominen, R. Wheeler, N. O’Neil, D.G. Zaharescu, O. Monje, and M. Gül. Bioregenerative Life Support Systems: Coordinated Research into Organisms, Technology and Systems Integration. Input paper submitted to the Committee on Biological and Physical Sciences Research in Space 2023–2032. https://www.nationalacademies.org/our-work/decadal-survey-on-life-and-physical-sciences-research-in-space-2023-2032.

Shi, Q., J. Sun, C. Hou, Y. Li, Q. Zhang, and H. Wang. 2019. “Advanced Functional Fiber and Smart Textile.” Advanced Fiber Materials 1(1):3–31.

Shigenaga, A.M., and C.T. Argueso. 2016. “No Hormone to Rule Them All: Interactions of Plant Hormones During the Responses of Plants to Pathogens.” Seminars in Cell & Developmental Biology 56:174–189.

Shin, Y., and C.P. Brangwynne. 2017. “Liquid Phase Condensation in Cell Physiology and Disease.” Science 357(6357): eaaf4382.

Shindo, C., G. Bernasconi, and C.S. Hardtke. 2007. “Natural Genetic Variation in Arabidopsis: Tools, Traits and Prospects for Evolutionary Ecology.” Annals of Botany 99(6):1043–1054.

Sicker, R.J., W.M. Foster, B.J. Motil, W.V. Meyer, F.P. Chiaramonte, A. Abbott-Hearn, A. Atherton, et al. Light Microscopy Module: International Space Station Premier Automated Microscope. ID: 20170004565. Presentation at the Annual Meeting of the American Society for Gravitational and Space Research (ASGSR 2016).

Simmons, M. 2014. “Physics: A Fundamental Force for Future Security.” The Conversation. https://theconversation.com/physics-a-fundamental-force-for-future-security-22121.

Simons, D.M., E.M. Gardner, and P.I. Lelkes. 2006. “Dynamic Culture in a Rotating-Wall Vessel Bioreactor Differentially Inhibits Murine T-Lymphocyte Activation by Mitogenic Stimuli Upon Return to Static Conditions in a Time-Dependent Manner.” Journal of Applied Physiology (1985) 100(4):1287–1292.

Singh, N.K., D. Bezdan, A. Checinska Sielaff, K. Wheeler, C.E. Mason, and K. Venkateswaran. 2018. “Multi-Drug Resistant Enterobacter Bugandensis Species Isolated from the International Space Station and Comparative Genomic Analyses with Human Pathogenic Strains.” BMC Microbiology 18(1):175.

Sirignano, W.A. 2014. “Advances in Droplet Array Combustion Theory and Modeling.” Progress in Energy and Combustion Science 42:54–86. https://doi.org/10.1016/j.pecs.2014.01.002.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Smith, R.C., M.S. Cramer, P.J. Mitchell, J. Lucchesi, A.M. Ortega, E.W. Livingston, D. Ballard, et al. 2020. “Inhibition of Myostatin Prevents Microgravity-Induced Loss of Skeletal Muscle Mass and Strength.” PLOS One 15(4):e0230818.

Smith, S.M., M.A. Heer, L.C. Shackelford, J.D. Sibonga, L. Ploutz-Snyder, and S.R. Zwart. 2012. “Benefits for Bone from Resistance Exercise and Nutrition in Long-Duration Spaceflight: Evidence from Biochemistry and Densitometry.” Journal of Bone and Mineral Research 27(9). https://doi.org/10.1002/jbmr.1647.

Smooke, M.D., C.S. McEnally, L.D. Pfefferle, R.J. Hall, and M.B. Colket. 1999. “Computational and Experimental Study of Soot Formation in a Coflow, Laminar Diffusion Flame.” Combustion and Flame 117(1):117–139.

Sng, N.J., B. Kolaczkowski, R.J. Ferl, and A.-L. Paul. 2018. “A Member of the CONSTANS-Like Protein Family Is a Putative Regulator of Reactive Oxygen Species Homeostasis and Spaceflight Physiological Adaptation.” AoB PLANTS 11(1).

Soliman, H.M. 1986. “The Mist-Annular Transition During Condensation and Its Influence on the Heat Transfer Mechanism.” International Journal of Multiphase Flow 12(2):277–288.

Solon, A.P., J. Stenhammar, R. Wittkowski, M. Kardar, Y. Kafri, M.E. Cates, and J. Tailleur. 2015. “Pressure and Phase Equilibria in Interacting Active Brownian Spheres.” Physical Review Letters 114(19):198301.

Soni, V., E.S. Bililign, S. Magkiriadou, S. Sacanna, D. Bartolo, M.J. Shelley, and W.T.M. Irvine. 2019. “The Odd Free Surface Flows of a Colloidal Chiral Fluid.” Nature Physics 15(11):1188–1194.

Soucy, K.G., H.K. Lim, J.H. Kim, Y. Oh, D.O. Attarzadeh, B. Sevinc, M.M. Kuo, A.A. Shoukas, M.E. Vazquez, and D.E. Berkowitz. 2011. “HZE 56Fe-Ion Irradiation Induces Endothelial Dysfunction in Rat Aorta: Role of Xanthine Oxidase.” Radiation Research 176(4):474–485.

Soulages, J.M., G.H. McKinley, N.R. Hall, K.S. Magee, G.E. Chamitoff, and E.M. Fincke. “Extensional Properties of a Dilute Polymer Solution Following Preshear in Microgravity.” Pp. 2199–2206 in Earth and Space 2010: Engineering, Science, Construction, and Operations in Challenging Environments. American Society of Civil Engineers Conference Proceedings.

Souvestre, P.A., C.K. Landrock, and A.P. Blaber. 2008. “Reducing Incapacitating Symptoms During Space Flight: Is Postural Deficiency Syndrome an Applicable Model?” Hippokratia 12(Suppl 1):41–48.

Spaans, S., R. Weusthuis, J. Van Der Oost, and S. Kengen. 2015. “NADPH-Generating Systems in Bacteria and Archaea.” Review. Frontiers in Microbiology 6.

Spagnolie, S.E. 2015. Complex Fluids in Biological Systems: Experiment, Theory, and Computation, S.E. Spagnolie, ed. Biological and Medical Physics, Biomedical Engineering. New York: Springer.

Sparrow, B.D., W. Edwards, S.E.M. Munroe, G.M. Wardle, G.R. Guerin, J.F. Bastin, B. Morris, R. Christensen, S. Phinn, and A.J. Lowe. 2020. “Effective Ecosystem Monitoring Requires a Multi-Scaled Approach.” Biological Reviews of the Cambridge Philosophical Society 95(6):1706–1719.

Spellings, M., M. Engel, D. Klotsa, S. Sabrina, A.M. Drews, N.H.P. Nguyen, K.J.M. Bishop, and S.C. Glotzer. 2015. “Shape Control and Compartmentalization in Active Colloidal Cells.” Proceedings of the National Academy of Sciences 112(34):E4642–E4650.

Spivey, R., Sheredy, W.A., and G. Flores. 2008. “An Overview of the Microgravity Science Glovebox (MSG) Facility, and the Gravity-Dependent Phenomena Research Performed in the MSG on the International Space Station (ISS).” Paper for the 46th AIAA Aerospace Sciences Meeting and Exhibit.

Spooner, B.S., and J.A. Guikema. 1992. “The NASA Specialized Center of Research and Training (NSCORT) in Gravitational Biology.” Transactions of the Kansas Academy of Science. Kansas Academy of Science 95(1–2):1–3.

Squires, T.M., and T.G. Mason. 2010. “Fluid Mechanics of Microrheology.” Annual Review of Fluid Mechanics 42(1): 413–438.

Srinidhi, D., and J.L. Turner. 2021. “Can Space Gardening Help Astronauts Cope with Isolation?” NASA Human Research Program Strategic Communications. https://www.nasa.gov/feature/can-space-gardening-help-astronauts-cope-with-isolation.

Steller, J.G., R.S. Blue, R. Burns, T.M. Bayuse, E.L. Antonsen, V. Jain, M.M. Blackwell, and R.T. Jennings. 2020. “Gynecologic Risk Mitigation Considerations for Long-Duration Spaceflight.” Aerospace Medicine and Human Performance 91(7):543–564.

Steward, W.G., R.V. Smith, and J.A. Brennan. 1995. “Cooldown Transients in Cryogenic Transfer Lines.” Conference paper. Pp. 354–363 in Advances in Cryogenic Engineering, K.D. Timmerhaus, ed. Boston, MA: Springer.

Stockslager, M.A., S. Malinowski, M. Touat, J.C. Yoon, J. Geduldig, M. Mirza, A.S. Kim, et al. 2021. “Functional Drug Susceptibility Testing Using Single-Cell Mass Predicts Treatment Outcome in Patient-Derived Cancer Neurosphere Models.” Cell Reports 37(1):109788.

Strayer, R.F., and C.F. Atkinson. 1997. “An Overview: Recycling Nutrients from Crop Residues for Space Applications.” Compost Science & Utilization 5(3):25–31.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Stroud, J.E., M.S. Gale, S.R. Zwart, M. Heer, S.M. Smith, T. Montina, and G.A.S. Metz. 2022. “Longitudinal Metabolomic Profiles Reveal Sex-Specific Adjustments to Long-Duration Spaceflight and Return to Earth.” Cellular and Molecular Life Sciences 79(11):578.

Stutte, G.W. 1996. “Nitrogen Dynamics in the CELSS Breadboard Facility at Kennedy Space Center.” Life Support & Biosphere Science 3(1–2):67–74.

Su, S.H., M.A. Keith, and P.H. Masson. 2020. “Gravity Signaling in Flowering Plant Roots.” Plants (Basel) 9(10).

Su, Y., J.T. Yrastorza, M. Matis, J. Cusick, S. Zhao, G. Wang, and J. Xie. 2022. “Biofilms: Formation, Research Models, Potential Targets, and Methods for Prevention and Treatment.” Advanced Science 9(29):2203291.

Sugimoto, M., Y. Oono, O. Gusev, T. Matsumoto, T. Yazawa, M.A. Levinskikh, V.N. Sychev, G.E. Bingham, R. Wheeler, and M. Hummerick. 2014. “Genome-Wide Expression Analysis of Reactive Oxygen Species Gene Network in Mizuna Plants Grown in Long-Term Spaceflight.” BMC Plant Biology 14(1):4.

Sui, Y., H. Ding, and P.D.M. Spelt. 2014. “Numerical Simulations of Flows with Moving Contact Lines.” Annual Review of Fluid Mechanics 46(1):97–119.

Sulzman, F.M., D. Ellman, C.A. Fuller, M.C. Moore-Ede, and G. Wassmer. 1984. “Neurospora Circadian Rhythms in Space: A Reexamination of the Endogenous-Exogenous Question.” Science 225:232–234.

Sumner, I. 1978. Liquid Propellant Reorientation in a Low-Gravity Environment. Cleveland, OH: NASA Lewis Research Center. https://ntrs.nasa.gov/api/citations/19780021464/downloads/19780021464.pdf.

Sun, P., C. Wu, F. Zhu, S. Wang, and X. Huang. 2020. “Microgravity Combustion of Polyethylene Droplet in Drop Tower.” Combustion and Flame 222:18–26.

Swain, P., M. Mortreux, J.M. Laws, H. Kyriacou, E. De Martino, A. Winnard, and N. Caplan. 2022. “Bone Deconditioning During Partial Weight-Bearing in Rodents—A Systematic Review and Meta-Analysis,” Life Sciences in Space Research 34:87–103. https://doi.org/https://doi.org/10.1016/j.lssr.2022.07.003.

Tabor, A. 2022a. “NASA Space Biology Bootcamp Teaches the Teachers, Reaching More Students.” https://www.nasa.gov/feature/ames/nasa-space-biology-bootcamp-teaches-the-teachers-reaching-more-students.

Tabor, A. 2022b. “What Is Bionutrients?” NASA Ames Research Center. https://www.nasa.gov/ames/bionutrients.

Takamoto, M., Y. Tanaka, and H. Katori. 2022. “A Perspective on the Future of Transportable Optical Lattice Clocks.” Applied Physics Letters 120(14).

Tamaru, H., C. Koyama, H. Saruwatari, Y. Nakamura, T. Ishikawa, and T. Takada. 2018. “Status of the Electrostatic Levitation Furnace (ELF) in the ISS-KIBO.” Microgravity Science and Technology 30(5):643–651.

Taulavuori, E., K. Taulavuori, J.K. Holopainen, R. Julkunen-Tiitto, C. Acar, and I. Dincer. 2017. “Targeted Use of LEDs in Improvement of Production Efficiency Through Phytochemical Enrichment.” Journal of Science Food and Agriculture 97(15):5059–5064.

Taylor, L.A. 1992. “Resources for a Lunar Base: Rocks, Minerals, and Soil of the Moon.” Paper presented at the Second Conference on Lunar Bases and Space Activities. https://space.nss.org/wp-content/uploads/Lunar-Bases-conference-2-501-Resources-For-Lunar-Base.pdf.

Taylor, P.W. 2015. “Impact of Space Flight on Bacterial Virulence and Antibiotic Susceptibility.” Infection and Drug Resistance 8:249–262.

Teale, W.D., I.A. Paponov, and K. Palme. 2006. “Auxin in Action: Signalling, Transport and the Control of Plant Growth and Development.” Nature Reviews: Molecular Cell Biology 7(11):847–859.

Teixido, C., P. Castillo, C. Martinez-Vila, A. Arance, and L. Alos. 2021. “Molecular Markers and Targets in Melanoma.” Cells 10(9):2320.

Tesei, D., A. Jewczynko, A.M. Lynch, and C. Urbaniak. 2022. “Understanding the Complexities and Changes of the Astronaut Microbiome for Successful Long-Duration Space Missions.” Life (Basel) 12(4).

Théry, M., and L. Blanchoin. 2021. “Microtubule Self-Repair.” Current Opinion in Cell Biology 68:144–154.

Thomas, W. 2023. “FY23 Budget Outcomes: NASA.” FYI: Science Policy News. American Institute of Physics. January 27.

Thompson, L.R., J.G. Sanders, D. McDonald, A. Amir, J. Ladau, K.J. Locey, R.J. Prill, et al. 2017. “A Communal Catalogue Reveals Earth’s Multiscale Microbial Diversity.” Nature 551(7681):457–463.

Thompson, S.W., L.P. Jordan, and G.N. Flores. 2014. An Overview of EXPRESS Rack, Microgravity Science Glovebox, and Sub-rack Facilities for Materials Science Research. Presentation at the Materials LAB Workshop. April 15. https://ntrs.nasa.gov/api/citations/20140010107/downloads/20140010107.pdf.

Tierney, B.T., N.K. Singh, A.C. Simpson, A.M. Hujer, R.A. Bonomo, C.E. Mason, and K. Venkateswaran. 2022. “MultidrugResistant Acinetobacter Pittii Is Adapting to and Exhibiting Potential Succession Aboard the International Space Station.” Microbiome 10(1):210.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Times of India. 2021. “NASA Astronaut Successfully Harvests 2 Plants in Space.” Times of India. https://timesofindia.indiatimes.com/home/science/nasa-astronaut-successfully-harvests-2-plants-in-space/articleshow/82292154.cms.

Tisserand, P., L. Le Guillou, C. Afonso, J.N. Albert, J. Andersen, R. Ansari, É. Aubourg, et al. 2007. “Limits on the Macho Content of the Galactic Halo from the EROS-2 Survey of the Magellanic Clouds.” Astronomy and Astrophysics 469(2):387–404.

Tolsma, J.S., K.T. Ryan, J.J. Torres, J.T. Richards, Z. Richardson, E.S. Land, I.Y. Perera, and C.J. Doherty. 2021. “The Circadian-Clock Regulates the Gravitropic Response.” Gravitational and Space Research 9(1):171–186.

Touboul, P., G. Métris, M. Rodrigues, Y. André, Q. Baghi, J. Bergé, D. Boulanger, et al. 2017. “Microscope Mission: First Results of a Space Test of the Equivalence Principle.” Physical Review Letters 119(23):231101.

Toulon, A., L. Breton, K.R. Taylor, M. Tenenhaus, D. Bhavsar, C. Lanigan, R. Rudolph, J. Jameson, and W.L. Havran. 2009. “A Role for Human Skin-Resident T Cells in Wound Healing.” Journal of Experimental Medicine 206(4):743–750.

Trappe, S., D. Costill, P. Gallagher, A. Creer, J.R. Peters, H. Evans, D.A. Riley, and R.H. Fitts. 2009. “Exercise in Space: Human Skeletal Muscle After 6 Months Aboard the International Space Station.” Journal of Applied Physiology (1985) 106(4):1159–1168.

Tretkoff, E. 2006. “March 20, 1800: Volta Describes the Electric Battery.” APS News 15(3).

Tunyasuvunakool, K., J. Adler, Z. Wu, T. Green, M. Zielinski, A. Žídek, A. Bridgland, et al. 2021. “Highly Accurate Protein Structure Prediction for the Human Proteome.” Nature 596(7873):590–596.

Turner, R.T., A.J. Branscum, C.P. Wong, U.T. Iwaniec, and E. Morey-Holton. 2020. “Studies in Microgravity, Simulated Microgravity and Gravity Do Not Support a Gravitostat.” Journal of Endocrinology 247(3):273–282.

Turns, S., and D.C. Haworth. 2021. An Introduction to Combustion: Concepts and Applications, 4th ed. New York: McGraw-Hill.

Turroni, S., M. Magnani, P. KC, P. Lesnik, H. Vidal, and M. Heer. 2020. “Gut Microbiome and Space Travelers’ Health: State of the Art and Possible Pro/Prebiotic Strategies for Long-Term Space Missions.” Review. Frontiers in Physiology 11.

U.S. Census Bureau. 2023. “Quick Facts: United States.” https://www.census.gov/quickfacts/fact/table/US/PST045222.

United Nations. 2023. “Benefits of Space: Agriculture.” Office for Outer Space Affairs. https://www.unoosa.org/oosa/en/benefits-of-space/agriculture.html.

University of California, Berkeley. 2023. “Evidence for Speciation.” Understanding Evolution: Evo 101. https://evolution.berkeley.edu/evolution-101/speciation/evidence-for-speciation.

University of Guelph. 2022. “CESRF: Controlled Environment Systems Research Facility.” https://www.plant.uoguelph.ca/people-and-places/research-centres/cesrf-controlled-environment-systems-research-facility.

Urbaniak, C., P. van Dam, A. Zaborin, O. Zaborina, J.A. Gilbert, T. Torok, C.C.C. Wang, and K. Venkateswaran. 2019. “Genomic Characterization and Virulence Potential of Two Fusarium Oxysporum Isolates Cultured from the International Space Station.” mSystems 4(2):e00345-00318.

Usik, M.A., M.A. Golubkova, and I.V. Ogneva. 2021. “State of Drosophila Melanogaster Ovaries After a Full Cycle of Gametogenesis Under Microgravity Modeling: Cellular Respiration and the Content of Cytoskeletal Proteins.” International Journal of Molecular Sciences 22(17).

van der Schuren, A., C. Voiniciuc, J. Bragg, K. Ljung, J. Vogel, M. Pauly, and C.S. Hardtke. 2018. “Broad Spectrum Developmental Role of Brachypodium Aux1.” New Phytologist 219(4):1216–1223.

Van Houtven, G., A. Honeycutt, B. Gilman, N. McCall, W. Throneburg, and K. Sykes. 2008. Costs of Illness Among Older Adults: An Analysis of Six Major Health Conditions with Significant Environmental Risk Factors. Research Triangle Park, NC: RTI Press.

Van Ombergen, A., A. Demertzi, E. Tomilovskaya, B. Jeurissen, J. Sijbers, I.B. Kozlovskaya, P.M. Parizel, et al. 2017. “The Effect of Spaceflight and Microgravity on the Human Brain.” Journal of Neurology 264(Suppl 1):18–22.

Vandenbrink, J.P., R. Herranz, F.J. Medina, R.E. Edelmann, and J.Z. Kiss. 2016. “A Novel Blue-Light Phototropic Response Is Revealed in Roots of Arabidopsis Thaliana in Microgravity.” Planta 244(6):1201–1215.

Verbeelen, T., N. Leys, R. Ganigué, and F. Mastroleo. 2021. “Development of Nitrogen Recycling Strategies for Bioregenerative Life Support Systems in Space.” Frontiers in Microbiology 12:700810.

Vialva, T. 2019. “3D Bioprinting Solutions Print Bone Tissue on Board the ISS.” 3D Printing Industry, updated December 17. https://3dprintingindustry.com/news/3d-bioprinting-solutions-print-bone-tissue-on-board-the-iss-166458.

Vickers, J. 2021. “Advanced Manufacturing Technologies.” NASA. https://www.nasa.gov/directorates/spacetech/game_changing_development/projects/archived/AMT.

Vico, L., and A. Hargens. 2018. “Skeletal Changes During and After Spaceflight.” Nature Reviews: Rheumatology 14(4): 229–245.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Vijayendran, C., T. Polen, V.F. Wendisch, K. Friehs, K. Niehaus, and E. Flaschel. 2007. “The Plasticity of Global Proteome and Genome Expression Analyzed in Closely Related W3110 and MG1655 Strains of a Well-Studied Model Organism, Escherichia Coli-K12.” Journal of Biotechnology 128(4):747–761.

Villacampa, A., M. Ciska, A. Manzano, J.P. Vandenbrink, J.Z. Kiss, R. Herranz, and F.J. Medina. 2021. “From Spaceflight to Mars g-Levels: Adaptive Response of A. Thaliana Seedlings in a Reduced Gravity Environment Is Enhanced by Red-Light Photostimulation.” International Journal of Molecular Sciences 22(2).

Villacampa, A., I. Fañanás-Pueyo, F.J. Medina, and M. Ciska. 2022. “Root Growth Direction in Simulated Microgravity Is Modulated by a Light Avoidance Mechanism Mediated by Flavonols.” Physiologia Plantarum 174(3):e13722.

Vining, K.H., and D.J. Mooney. 2017. “Mechanical Forces Direct Stem Cell Behaviour in Development and Regeneration.” Nature Reviews: Molecular Cell Biology 18(12):728–742.

Viswanathan, V., E. Mazarico, S. Merkowitz, J.G. Williams, S.G. Turyshev, D. Currie, A.I. Ermakov, et al. 2021. “Extending Science from Lunar Laser Ranging.” Bulletin of the American Astronomical Society 53(4).

Vitry, G., R. Finch, G. McStay, A. Behesti, S. Déjean, T. Larose, V. Wotring, and W.A. da Silveira. 2022. “Muscle Atrophy Phenotype Gene Expression During Spaceflight Is Linked to a Metabolic Crosstalk in Both the Liver and the Muscle in Mice.” iScience 25(10):105213.

Vogt, G. 2022. “Paradigm Shifts in Animal Epigenetics: Research on Non-Model Species Leads to New Insights into Dependencies, Functions and Inheritance of DNA Methylation.” Bioessays 44(8):e2200040.

Voigt, C.A. 2020. “Synthetic Biology 2020–2030: Six Commercially-Available Products That Are Changing Our World.” Nature Communications 11(1):6379.

Volland, S., J. Esteve-Rudd, J. Hoo, C. Yee, and D.S. Williams. 2015. “A Comparison of Some Organizational Characteristics of the Mouse Central Retina and the Human Macula.” PLOS One 10(4):e0125631.

Voorhies, A.A., C. Mark Ott, S. Mehta, D.L. Pierson, B.E. Crucian, A. Feiveson, C.M. Oubre, et al. 2019. “Study of the Impact of Long-Duration Space Missions at the International Space Station on the Astronaut Microbiome.” Scientific Reports 9(1):9911.

Vorobieff, P., M. Anderson, J. Conroy, R. White, C.R. Truman, and S. Kumar. 2011. “Analogues of Rayleigh-Taylor and Richtmyer-Meshkov Instabilities in Flows with Nonuniform Particle and Droplet Seeding.” WIT Transactions on Engineering Sciences 70:17–28.

Walker, J., and C. Granjou. 2017. “MELiSSA the Minimal Biosphere: Human Life, Waste and Refuge in Deep Space.” Futures 92:59–69.

Walther, I., P. Pippia, M.A. Meloni, F. Turrini, F. Mannu, and A. Cogoli. 1998. “Simulated Microgravity Inhibits the Genetic Expression of Interleukin-2 and Its Receptor in Mitogen-Activated T Lymphocytes.” FEBS Letters 436(1):115–118.

Wang, L., J. Xie, C. Mou, Y. Jiao, Y. Dou, and H. Zheng. 2021. “Transcriptomic Analysis of the Interaction Between Flowering Locus T Induction and Photoperiodic Signaling in Response to Spaceflight.” Frontiers in Cell & Developmental Biology 9:813246.

Wang, L., X. You, L. Zhang, C. Zhang, and W. Zou. 2022. “Mechanical Regulation of Bone Remodeling.” Bone Research 10(1):16.

Wang, M., D. Duday, E. Scolan, S. Perbal, M. Prato, C. Lasseur, and M. Hołyńska. 2021. “Antimicrobial Surfaces for Applications on Confined Inhabited Space Stations.” Advanced Materials Interfaces 8(13):2100118.

Waters, S.M., S.M. Ledford, A. Wacker, S. Verma, B. Serda, J. McKaig, J. Varelas, P.M. Nicoll, K. Venkateswaran, and D.J. Smith. 2021. “Long-Read Sequencing Reveals Increased Occurrence of Genomic Variants and Adenosine Methylation in Bacillus Pumilus SAFR-032 After Long-Duration Flight Exposure Onboard the International Space Station.” International Journal of Astrobiology 20(6):435–444.

Watson, J.L., D. Juergens, N.R. Bennett, B.L. Trippe, J. Yim, H.E. Eisenach, W. Ahern, et al. 2022. “Broadly Applicable and Accurate Protein Design by Integrating Structure Prediction Networks and Diffusion Generative Models.” bioRxiv 2022.12.09.519842, preprint.

Webber, M.J., and M.W. Tibbitt. 2022. “Dynamic and Reconfigurable Materials from Reversible Network Interactions.” Nature Reviews Materials 7(7):541–556.

Weber, J.K.R. 2010. “The Containerless Synthesis of Glass.” International Journal of Applied Glass Science 1(3):248–256. https://doi.org/10.1111/j.2041-1294.2010.00026.x.

Weiland, K.J., F.G. Gati, M.E. Hill, T.F. O’Malley, and R.L. Zurawski. 2005. The Fluids and Combustion Facility: Enabling the Exploration of Space. Technical Report TM-2005-213973. Washington, DC: NASA.

Weinhold, A. 2018. “Transgenerational Stress-Adaption: An Opportunity for Ecological Epigenetics.” Plant Cell Reports 37(1):3–9.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Wheeler, R.M. 2017. “Agriculture for Space: People and Places Paving the Way.” Open Agriculture 2(1):14–32.

Wheeler, R.M., B.V. Peterson, J.C. Sager, and W.M. Knott. 1996. “Ethylene Production by Plants in a Closed Environment.” Advances in Space Research 18(4–5):193–196.

White House. 2023. “Fact Sheet: Biden-Harris Administration Announces New Actions to Advance Open and Equitable Research.” Washington, DC: Office of Science and Technology Policy. https://www.whitehouse.gov/ostp/news-updates/2023/01/11/fact-sheet-biden-harris-administration-announces-new-actions-to-advance-open-and-equitable-research.

Wicaksono, I., P.G. Hwang, S. Droubi, F.X. Wu, A.N. Serio, W. Yan, and J.A. Paradiso. 2022. “3DKnITS: Three-Dimensional Digital Knitting of Intelligent Textile Sensor for Activity Recognition and Biomechanical Monitoring.” Paper presented at the 2022 44th Annual International Conference of the IEEE Engineering in Medicine & Biology Society (EMBC), July 11–15.

Wilkinson, M.D., M. Dumontier, I.J. Aalbersberg, G. Appleton, M. Axton, A. Baak, N. Blomberg, et al. 2016. “The FAIR Guiding Principles for Scientific Data Management and Stewardship.” Scientific Data 3(1):160018.

Willey, J.S., R.A. Britten, E. Blaber, C.G.T. Tahimic, J. Chancellor, M. Mortreux, L.D. Sanford, A.J. Kubik, M.D. Delp, and X.W. Mao. 2021. “The Individual and Combined Effects of Spaceflight Radiation and Microgravity on Biologic Systems and Functional Outcomes.” Journal of Environmental Science & Health, Part C: Toxicology and Carcinogenesis 39(2):129–179.

Williams, J., S.-W. Chiow, N. Yu, and H. Müller. 2016. “Quantum Test of the Equivalence Principle and Space-Time Aboard the International Space Station.” New Journal of Physics 18(2):025018.

Williamson Smith, A. 2019. “Published Results from Crystallization Experiments on the ISS Could Help Merck Improve Cancer Drug Delivery.” ISS National Laboratory. https://www.issnationallab.org/merck-lab-publishes-pembrolizumab-results.

Wilson, J.W., C.M. Ott, L. Quick, R. Davis, K. Höner zu Bentrup, A. Crabbé, E. Richter, et al. 2008. “Media Ion Composition Controls Regulatory and Virulence Response of Salmonella in Spaceflight.” PLOS One 3(12):e3923.

Wilson, J.W., C.M. Ott, K.H. zu Bentrup, R. Ramamurthy, L. Quick, S. Porwollik, P. Cheng, et al. 2007. “Space Flight Alters Bacterial Gene Expression and Virulence and Reveals a Role for Global Regulator Hfq.” Proceedings of the National Academy of Sciences 104(41):16299–16304.

Wilson, J.W., J.L. Shinn, R.K. Tripathi, R.C. Singleterry, M.S. Clowdsley, S.A. Thibeault, F.M. Cheatwood, et al. 2001. “Issues in Deep Space Radiation Protection.” Acta Astronautica 49(3):289–312.

Witze, A. 2020. “Astronauts Have Conducted Nearly 3,000 Science Experiments Aboard the ISS.” Nature News. https://www.nature.com/articles/d41586-020-03085-8.

Wnorowski, A., A. Sharma, H. Chen, H. Wu, N.Y. Shao, N. Sayed, C. Liu, et al. 2019. “Effects of Spaceflight on Human Induced Pluripotent Stem Cell-Derived Cardiomyocyte Structure and Function.” Stem Cell Reports 13(6):960–969.

Wojcik, P., A. Kini, B. Al Othman, L.A. Galdamez, and A.G. Lee. 2020. “Spaceflight Associated Neuro-ocular Syndrome.” Current Opinion in Neurology 33(1):62–67.

Wollman, A., M. Weislogel, B. Wiles, D. Pettit, and T. Snyder. 2016. “More Investigations in Capillary Fluidics Using a Drop Tower.” Experiments in Fluids 57(4):57.

Wolverton, C. 2022. Characterizing Plant Gravity Perception Systems. https://taskbook.nasaprs.com/Tbp/index.cfm?action=public_query_taskbook_content&TASKID=15274.

Wong, C.P., U.T. Iwaniec, and R.T. Turner. 2021. “Evidence for Increased Thermogenesis in Female C57BL/6J Mice Housed Aboard the International Space Station.” npj Microgravity 7(1):23.

Wong, M.M., G.L. Chong, and P.E. Verslues. 2017. “Epigenetics and RNA Processing: Connections to Drought, Salt, and ABA?” Methods in Molecular Biology 1631:3–21.

Wright, P.F., M.E. Ackerman, and E.B. Brickley. 2019. “Mucosal Immunity: The Forgotten Arm of the Immune System.” Journal of the Pediatric Infectious Disease Society 8(1):53–54.

Wu, P.-H., S.S. Gambhir, C.M. Hale, W.-C. Chen, D. Wirtz, and B.R. Smith. 2020. “Particle Tracking Microrheology of Cancer Cells in Living Subjects.” Materials Today 39:98–109.

Wu, X.-T., X. Yang, R. Tian, Y.-H. Li, C.-Y. Wang, Y.-B. Fan, and L.-W. Sun. 2022. “Cells Respond to Space Microgravity Through Cytoskeleton Reorganization.” The FASEB Journal 36(2):e22114.

Xu, D., Y. Gao, L. Guo, C. Lin, and Y. Sun. 2018. “Effect of Dys-1 Mutation on Gene Expression Profile in Space-Flown Caenorhabditis Elegans.” Muscle Nerve 10.1002/mus.26076.

Xu, P., H. Chen, J. Hu, and W. Cai. 2021. “Potential Evidence for Transgenerational Epigenetic Memory in Arabidopsis Thaliana Following Spaceflight.” Communications Biology 4(1):835.

Xu, V., M. Jaffe, C.D. Panda, S.L. Kristensen, L.W. Clark, and H. Müller. 2019. “Probing Gravity by Holding Atoms for 20 Seconds.” arXiv:1907.03054 [physics.atom-ph]. https://doi.org/10.48550/arXiv.1907.03054.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Xu, Y., W. Pei, and W. Hu. 2022. “A Current Overview of the Biological Effects of Combined Space Environmental Factors in Mammals.” Review. Frontiers in Cell and Developmental Biology 10.

Xue, Y.-F., J.-F. Zhao, J.-J. Wei, J. Li, D. Guo, and S.-X. Wan. 2011. “Experimental Study of Nucleate Pool Boiling of FC-72 on Smooth Surface Under Microgravity.” Microgravity Science and Technology 23(1):75.

Yagi-Utsumi, M., S. Yanaka, C. Song, T. Satoh, C. Yamazaki, H. Kasahara, T. Shimazu, K. Murata, and K. Kato. 2020. “Characterization of Amyloid B Fibril Formation Under Microgravity Conditions.” npj Microgravity 6(1):17.

Yan, X., S.P. Sasi, H. Gee, J. Lee, Y. Yang, R. Mehrzad, J. Onufrak, et al. 2014. “Cardiovascular Risks Associated with Low Dose Ionizing Particle Radiation.” PLOS One 9(10):e110269.

Yang, J., J. Barrila, C.M. Ott, O. King, R. Bruce, R.J.C. McLean, and C.A. Nickerson. 2021. “Longitudinal Characterization of Multispecies Microbial Populations Recovered from Spaceflight Potable Water.” npj Biofilms and Microbiomes 7(1):70.

Yang, J., J. Barrila, K.L. Roland, C.M. Ott, and C.A. Nickerson. 2016. “Physiological Fluid Shear Alters the Virulence Potential of Invasive Multidrug-Resistant Non-Typhoidal Salmonella Typhimurium D23580.” npj Microgravity 2(1):16021.

Yang, J., Y. Fu, and H. Liu. 2022. “Microbiomes of Air Dust Collected During the Ground-Based Closed Bioregenerative Life Support Experiment ‘Lunar Palace 365.’” Environmental Microbiome 17(1):4.

Yang, J., S.G. Thornhill, J. Barrila, C.A. Nickerson, C.M. Ott, and R.J.C. McLean. 2018. “Chapter 1—Microbiology of the Built Environment in Spacecraft Used for Human Flight.” Methods in Microbiology 45:3–26, V. Gurtler and J.T. Trevors, eds. Academic Press, Reprint.

Yi, Y., W. Xu, Y. Fan, and H.-X. Wang. 2021. “Drosophila as an Emerging Model Organism for Studies of Food-Derived Antioxidants.” Food Research International 143:110307.

Yin, J., Y. Cao, Y.-H. Li, S.-K. Liao, L. Zhang, J.-G. Ren, W.-Q. Cai, et al. 2017. “Satellite-Based Entanglement Distribution Over 1200 Kilometers.” Science 356(6343):1140–1144.

Youssef, M., T. Hueckel, G.-R. Yi, and S. Sacanna. 2016. “Shape-Shifting Colloids via Stimulated Dewetting.” Nature Communications 7(1):12216.

Yu, C.-N., K. Lazaridis, Y. Wu, E. Voroshilov, M.D. Krivilyov, S.D. Mesarovic, and D.P. Sekulic. 2021. “Filling a Hole by Capillary Flow of Liquid Metal–Equilibria and Instabilities.” Physics of Fluids 33(3):034109.

Yu, T., B.W. Parks, S. Yu, R. Srivastava, K. Gupta, X. Wu, S. Khaled, P.Y. Chang, J.H. Kabarowski, and D.F. Kucik. 2011. “Iron-Ion Radiation Accelerates Atherosclerosis in Apolipoprotein E-Deficient Mice.” Radiation Research 175(6):766–773.

Yuan, M., M.A. Custaud, Z. Xu, J. Wang, M. Yuan, C. Tafforin, L. Treffel, et al. 2019. “Multi-System Adaptation to Confinement During the 180-Day Controlled Ecological Life Support System (CELSS) Experiment.” Frontiers in Physiology 10:575.

Zea, L., R.J.C. McLean, T.A. Rook, G. Angle, D.L. Carter, A. Delegard, A. Denvir, et al. 2020. “Potential Biofilm Control Strategies for Extended Spaceflight Missions.” Biofilm 2:100026.

Zea, L., Z. Nisar, P. Rubin, M. Cortesão, J. Luo, S.A. McBride, R. Moeller, et al. 2018. “Design of a Spaceflight Biofilm Experiment.” Acta Astronautica 148:294–300.

Zea, L., N. Prasad, S.E. Levy, L. Stodieck, A. Jones, S. Shrestha, and D. Klaus. 2016. “A Molecular Genetic Basis Explaining Altered Bacterial Behavior in Space.” PLOS One 11(11):e0164359. https://doi.org/10.1371/journal.pone.0164359.

Zeidler, C., G. Woeckner, J. Schöning, V. Vrakking, P. Zabel, M. Dorn, D. Schubert, B. Steckelberg, and J. Stakemann. 2021. “Crew Time and Workload in the EDEN ISS Greenhouse in Antarctica.” Life Sciences in Space Research 31:131–149.

Zeitlin, C., D.M. Hassler, F.A. Cucinotta, B. Ehresmann, R.F. Wimmer-Schweingruber, D.E. Brinza, S. Kang, et al. 2013. “Measurements of Energetic Particle Radiation in Transit to Mars on the Mars Science Laboratory.” Science 340(6136): 1080–1084.

Zell, M., J. Straub, and A. Weinzierl. 1984. “Nucleate Pool Boiling in Subcooled Liquid Under Microgravity: Results of TEXUS Experimental Investigations.” In ESA Fifth European Symposium on Materials Science Under Microgravity. Results of Spacelab 1:327–333.

Zhang, L., X. Guo, Z. Zhang, A. Wang, and J. Zhu. 2021. “Cold-Regulated Gene LeCOR413PM2 Confers Cold Stress Tolerance in Tomato Plants.” Gene 764:145097.

Zhang, W., and R. Ramautar. 2021. “CE-MS for Metabolomics: Developments and Applications in the Period 2018–2020.” Electrophoresis 42(4). https://doi.org/10.1002/elps.202000203.

Zhang, J., P.J. Santos, P.A. Gabrys, S. Lee, C. Liu, and R.J. Macfarlane. 2016. “Self-Assembling Nanocomposite Tectons.” Journal of the American Chemical Society 138(50):16228–16231.

Zhang, Y., L. Wang, J. Xie, and H. Zheng. 2015. “Differential Protein Expression Profiling of Arabidopsis Thaliana Callus Under Microgravity on Board the Chinese SZ-8 Spacecraft.” Planta 241(2):475–488.

Zhao, T., G. Liu, D. Liu, Y. Yi, B. Xie, and H. Liu. 2022. “Water Recycle System in an Artificial Closed Ecosystem—Lunar Palace 1: Treatment Performance and Microbial Evolution.” Science of the Total Environment 806(Pt 3):151370.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×

Zheng, D., T. Liwinski, and E. Elinav. 2020. “Interaction Between Microbiota and Immunity in Health and Disease.” Cell Research 30(6):492–506.

Zheng, X., J. Dolde, V. Lochab, B.N. Merriman, H. Li, and S. Kolkowitz. 2022. “Differential Clock Comparisons with a Multiplexed Optical Lattice Clock.” Nature 602(7897):425–430.

Zhou, M., N.J. Sng, C.E. LeFrois, A.-L. Paul, and R.J. Ferl. 2019. “Epigenomics in an Extraterrestrial Environment: Organ-Specific Alteration of DNA Methylation and Gene Expression Elicited by Spaceflight in Arabidopsis Thaliana.” BMC Genomics 20(1):205.

Zia, R.N. 2018. “Active and Passive Microrheology: Theory and Simulation.” Annual Review of Fluid Mechanics 50(1):371–405.

Zimmermann, A. 2023. U.S. R&D and Innovation in a Global Context: The 2023 Data Update. Washington, DC: American Association for the Advancement of Science. https://www.aaas.org/sites/default/files/2023-05/AAAS%20Global%20RD%20Update%20April%202023.pdf.

Zohar, E., J.I. Cirac, and B. Reznik. 2012. “Simulating Compact Quantum Electrodynamics with Ultracold Atoms: Probing Confinement and Nonperturbative Effects.” Physical Review Letters 109(12):125302.

Zudell, D. 2021. “Experiment Bound for Space Station Turns Down the Heat.” NASA. https://www.nasa.gov/feature/glenn/2021/experiment-bound-for-space-station-turns-down-the-heat.

Zupanska, A.K., F.C. Denison, R.J. Ferl, and A.L. Paul. 2013. “Spaceflight Engages Heat Shock Protein and Other Molecular Chaperone Genes in Tissue Culture Cells of Arabidopsis Thaliana.” American Journal of Botany 100(1):235–248.

Zupanska, A.K., E.R. Schultz, J. Yao, N.J. Sng, M. Zhou, J.B. Callaham, R.J. Ferl, and A.L. Paul. 2017. “ARG1 Functions in the Physiological Adaptation of Undifferentiated Plant Cells to Spaceflight.” Astrobiology 17(11):1077–1111.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
×
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2023. Thriving in Space: Ensuring the Future of Biological and Physical Sciences Research: A Decadal Survey for 2023-2032. Washington, DC: The National Academies Press. doi: 10.17226/26750.
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Research in biological and physical sciences in space provides the critical scientific and technological foundations that make space exploration possible. As humanity looks towards the Moon and Mars for future missions, this work is needed to help astronauts adapt and live in the harsh environments of space. Thriving in Space provides a roadmap for increasing national investment in biological and physical science research, from experiments to infrastructure to education. This report identifies key scientific questions, priorities, and ambitious research campaigns that will enable human space exploration and transform our understanding of how the universe works.

Thriving in Space reviews the state of knowledge in the current and emerging areas of space-related biological and physical sciences research and generates recommendations for a comprehensive vision and strategy for a decade of transformative science at the frontiers of biological and physical sciences research in space. This report will help NASA define and align biological and physical sciences research to uniquely advance scientific knowledge, meet human and robotic exploration mission needs, and provide terrestrial benefits.

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