Crew Interaction in Extended Space Missions
Abstract
:1. Introduction
2. Theoretical Background
3. Methodology
3.1. Sample and Procedure
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- Pre-flight training and baseline data collection—30–60 days before launch;
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- In-flight data collection—once in 2 weeks, starting from the 3rd week of the flight;
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- Post-flight study—on the 10th day after landing.
3.2. Tools
3.2.1. The PSPA (Personal Self-Perception and Attitudes)
3.2.2. The PVQ and the Subjective Vitality Measurement
3.3. The PSPA Data Analysis
3.3.1. Factor Analysis of Primary Ratings
3.3.2. Content Analysis of Interpersonal Perception Criteria
3.3.3. Analysis of Perceived “Psychological Similarity”
3.3.4. Statistical Methods
4. Results
4.1. Group Dynamics under the Long-Term Space Flight Factors
4.1.1. The Relationship between the Crewmembers in the Course of Annual Space Flight
4.1.2. Correlations with the Data of the Space Experiment “Content”
4.2. Analysis of Perceived “Psychological Similarity” with Other Crewmembers
4.3. Dynamics of the Values Hierarchy (Significance of Professionally Important Traits) during Space Flight
5. Discussion
6. Conclusions
Author Contributions
Funding
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Vakoch, D.A. (Ed.) Psychology of Space Exploration: Contemporary Research in Historical Perspective; National Aeronautics and Space Administration: Washington, DC, USA, 2011; p. 264.
- Bell, S.; Brown, S.G.; Mitchell, T. What we know about team dynamics for long-distance space missions: A systematic review of analog research. Front. Physiol. 2019, 10, 811. [Google Scholar] [CrossRef]
- Kanas, N. Behavioral Health and Human Interactions in Space; Springer Nature: Cham, Switzerland, 2023. [Google Scholar]
- Kanas, N.; Manzey, D. Space Psychology and Psychiatry, 2nd ed.; Microcosm Press: El Segundo, CA, USA; Springer: Dordrecht, the Netherlands, 2008. [Google Scholar]
- Boyd, J.E.; Kanas, N.A.; Salnitskiy, V.P.; Gushin, V.I.; Saylor, S.A.; Weiss, D.S.; Marmar, C.R. Cultural differences in Crewmembers and Mission Control Personnel during Two Space Station Programs. Aviat. Space Environ. Med. 2009, 80, 532–540. [Google Scholar] [PubMed]
- Palinkas, L.A.; Suedfeld, P. Psychological issues in isolated and confined extreme environments. Neurosci. Biobehav. Rev. 2021, 126, 413–429. [Google Scholar] [CrossRef]
- Harrison, A.A.; Connors, M.M. Groups in exotic environments. Adv. Exp. Soc. Psychol. 1984, 18, 49–87. [Google Scholar]
- Sandal, G.M.; Bye, H.H.; van de Vijver, F.J.R. Personal values and crew compatibility: Results from a 105 days simulated space mission. Acta Astronaut. 2011, 69, 141–149. [Google Scholar] [CrossRef]
- Sandal, G.M.; Bye, H.H. Value diversity and crew relationships during a simulated space flight to Mars. Acta Astronaut. 2015, 114, 164–173. [Google Scholar] [CrossRef]
- Ma, Q.; Sandal, G.M.; Wu, R.; Xiong, J.; Xu, Z.; He, L.; Liu, Y.; Li, Y. Personal value diversity in confinement and isolation: Pilot study results from the 180-day CELSS integration experiment. Acta Astronaut. 2019, 164, 84–91. [Google Scholar] [CrossRef]
- Lott, A.; Lott, B. Group cohesiveness as interpersonal attraction: A review of relationships with antecedent and consequent variables. Psychol. Bull. 1965, 64, 259–309. [Google Scholar] [CrossRef]
- Turner, J.C.; Sachdev, J.; Hogg, M.A. Social categorization, interpersonal attraction and group formation. Br. J. Soc. Psychol. 1983, 22, 227–239. [Google Scholar] [CrossRef]
- Suedfeld, P. Space memoir: Value hierarchies before and after mission—A pilot study. Acta Astronaut. 2006, 58, 583–586. [Google Scholar] [CrossRef]
- Schwartz, S.H. Universals in the content and structure of values: Theoretical advances and empirical tests in 20 countries. In Advances in Experimental Social Psychology; Zanna, M., Ed.; Academic Press: New York, NY, USA, 1992; Volume 25, pp. 1–65. [Google Scholar]
- Solcova, I.; Vinokhodova, A.; Gushin, V.; Kuznetsova, P. Tend-and-befriend behavior during spaceflight simulation. Acta Astronaut. 2022, 191, 79–87. [Google Scholar] [CrossRef]
- Vinokhodova, A.G.; Gushin, V.I. Study of values and interpersonal perception in cosmonauts on board of international space station. Acta Astronaut. 2014, 93, 359–365. [Google Scholar] [CrossRef]
- Gushin, V.; Vinokhodova, A.; Yusupova, A.; Sandal, G. Russian space experiment «INTERACTIONS-2». In Psychology and Human Performance in Space Programs; CRC Press: Boca Raton, FL, USA, 2020; Volume 2, pp. 289–293. [Google Scholar]
- Gushin, V.I.; Efimov, V.A.; Smirnova, T.M.; Vinokhodova, A.G.; Kanas, N. Subject’s perception of the crew interaction dynamics under prolonged isolation. Aviat. Space Environ. Med. 1998, 69, 556–561. [Google Scholar]
- Kelly, G.A. A Theory of Personality: The Psychology of Personal Constructs; WW Norton: New York, NY, USA, 1963. [Google Scholar]
- Osgood, C.E.; Tzeng, O.C.S. Language, Meaning, and Culture: The Selected Papers of C.E. Osgood; Bloomsbury Academic: New York, NY, USA, 1990. [Google Scholar]
- Bell, R.; Bannister, D.; Fransella, F. A Manual for Repertory Grid Technique; John Wiley & Sons: Hoboken, NJ, USA, 2004; p. 288. [Google Scholar]
- Petrenko, V.F. Fundamentals of Psychosemantics, 3rd ed.; Eksmo: Moscow, Russia, 2010. [Google Scholar]
- Vinokhodova, A.G.; Gushchin, V.I.; Yusupova, A.K.; Suedfeld, P.; Johnson, P. Retrospective analysis of interpersonal perception and values of experienced cosmonauts—Members of multinational missions to the orbital stations «MIR» and the ISS. Aviakosmicheskaya I Ekol. Med. 2017, 51, 22–30. [Google Scholar] [CrossRef]
- Ryan, R.M.; Frederick, C.M. On energy, personality and health: Subjective vitality as a dynamic reflection of well-being. J. Personal. 1997, 65, 529–565. [Google Scholar] [CrossRef] [PubMed]
- Cooper, C. Individual Differences and Personality, 4th ed.; Routledge: London, UK, 2000; p. 542. [Google Scholar]
- Schwartz, S.H. Value orientations: Measurement, antecedents and consequences across nations. In Measuring Attitudes Cross-nationally—Lessons from the European Social Survey; Jowell, R., Roberts, C., Fitzgerald, R., Eva, G., Eds.; Sage: London, UK, 2006. [Google Scholar]
- Triandis, H.C. Culture and Social Behavior; The McGraw-Hills Inc.: New York, NY, USA, 2005; p. 320. [Google Scholar]
- Yusupova, A.K.; Shved, D.M.; Gushchin, V.I.; Supolkina, N.S.; Chekalina, A.I. Preliminary results of “Content” space experiment. Hum. Physiol. 2019, 45, 6–13. [Google Scholar] [CrossRef]
- Yusupova, A.; Supolkina, N.; Shved, D.; Gushin, V.; Nosovsky, A.; Savinkina, A. Crew communication styles under regular and excessive workload. Acta Astronaut. 2022, 199, 464–470. [Google Scholar] [CrossRef]
- Tajfel, H. Social Psychology of Inter-group Relations. Annu. Rev. Psychol. 1982, 32, 1–39. [Google Scholar] [CrossRef]
- Suedfeld, P.; Brcic, J.; Johnson, P.J.; Gushin, V. Personal growth following long-duration spaceflight. Acta Astronaut. 2012, 79, 118–123. [Google Scholar] [CrossRef]
- Suedfeld, P.; Johnson, P.J.; Gushin, V.I.; Brcic, J. Motivational profiles of retired astronauts. Acta Astronaut. 2018, 146, 202–205. [Google Scholar] [CrossRef]
- Kanas, N. Humans in Space: The Psychological Hurdles; Springer: New York, NY, USA, 2015. [Google Scholar]
- Novikov, M.A.; Bystritskaya, A.F.; Eskov, K.N.; Vasiliev, V.K.; Vinokhodova, A.G.; Davies, C. HOMEOSTAT—A Bioengineering System. In Proceedings of the 23th International Conference on Environmental Systems, Colorado Springs, CO, USA, 12–15 July 1993. [Google Scholar]
- Eskov, K.N. Evaluation of the Efficiency of Interpersonal Interactions in a Long-Term Isolation Experiment. Hum. Physiol. 2011, 37, 879–882. [Google Scholar] [CrossRef]
- Santy, P. Choosing the Right Staff. The Psychological Selection of Astronauts and Cosmonauts, 1st ed.; Praeger: Elmwood Park, NJ, USA, 1994; p. 368. [Google Scholar]
- Rivolier, J.; Bachelard, C.; Cazes, G.; Gaud, R.; Le Scanff, C.; Rosnet, E.; Novikov, M.; Gushchin, V.; Efimov, V.; Eskov, K.; et al. International Antarctic Psychological Program (IAPP)/Final Report; ESA: Paris, France, 1996; pp. 108–118. [Google Scholar]
- Bell, S.T.; Brown, S.G.; Mitchell, T.D. Data Mining Review of Team Benchmark Studies Related to Long Duration Space Exploration Missions/Final Report; NASA Lyndon B. Johnson Space Center: Houston, TX, USA, 2015. [Google Scholar]
Constructs Included in the Factor | |
---|---|
11 | curious—0.647 *—41%—static |
12 | dreamer—0.475 *—22%—realistic |
06 | smart—0.409 *—16%—fool |
03 | beginner—−0.228—5%—experienced |
04 | funny—0.222—4%—boring |
09 | clever—0.220—4%—stupid |
Variable 1 | Variable 2 | Spearman’s Correlation | Significance Level |
---|---|---|---|
Distance between real Self of other subjects and their image of subj. A | Distance between ideal Self of other subjects and their image of subj. A | 0.252 | 0.257 |
Distance between real Self of other subjects and their image of subj. B | Distance between ideal Self of other subjects and their image of subj. B | 0.769 ** | 0.000 |
Distance between real Self of other subjects and their image of subj. C | Distance between ideal Self of other subjects and their image of subj. C | 0.018 | 0.890 |
Distance between real Self of other subjects and their image of subj. D | Distance between ideal Self of other subjects and their image of subj. D | 0.713 ** | 0.000 |
Distance between real Self of other subjects and their image of subj. E | Distance between ideal Self of other subjects and their image of subj. E | −0.119 | 0.469 |
Distance between real Self of other subjects and their image of subj. F | Distance between ideal Self of other subjects and their image of subj. F | 0.634 * | 0.027 |
Distance between real Self of other subjects and their image of subj. A | Distance between real Self of other subjects and their image of subj. D | −0.593 ** | 0.003 |
Distance between ideal Self of other subjects and their image of subj. A | Distance between ideal Self of other subjects and their image of subj. D | −0.669 ** | 0.000 |
Confrontation with MCC | Distance between real Self and ideal Self | 0.333 ** | 0.008 |
Confrontation with MCC | Weight of 1st factor | 0.301 * | 0.017 |
The Subgroup, Assessed by the Subjects | Number of Crewmembers |
---|---|
Russians from the subject’s crew | - |
Russians from the prior crew | 8 |
Russians from the subsequent crew | 9 |
NASA astronauts from the subject’s crew | 11 |
NASA astronauts from the prior crew | 10 |
NASA astronauts from the subsequent crew | 9 |
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Vinokhodova, A.; Gushin, V.; Kuznetsova, P.; Yusupova, A. Crew Interaction in Extended Space Missions. Aerospace 2023, 10, 719. https://doi.org/10.3390/aerospace10080719
Vinokhodova A, Gushin V, Kuznetsova P, Yusupova A. Crew Interaction in Extended Space Missions. Aerospace. 2023; 10(8):719. https://doi.org/10.3390/aerospace10080719
Chicago/Turabian StyleVinokhodova, Alla, Vadim Gushin, Polina Kuznetsova, and Anna Yusupova. 2023. "Crew Interaction in Extended Space Missions" Aerospace 10, no. 8: 719. https://doi.org/10.3390/aerospace10080719