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Using the Moon as a high-fidelity analogue environment to study biological and behavioral effects of long-duration space exploration

机译:使用月球作为高保真模拟环境研究长时间太空探索的生物学和行为效应

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Due to its proximity to Earth, the Moon is a promising candidate for the location of an extra-terrestrial human colony. In addition to being a high-fidelity platform for research on reduced gravity, radiation risk, and circadian disruption, the Moon qualifies as an isolated, confined, and extreme (ICE) environment suitable as an analog for studying the psychosocial effects of long-duration human space exploration missions and understanding these processes. In contrast, the various Antarctic research outposts such as Concordia and McMurdo serve as valuable platforms for studying biobehavioral adaptations to ICE environments, but are still Earth-bound, and thus lack the low-gravity and radiation risks of space. The International Space Station (ISS), itself now considered an analog environment for long-duration missions, better approximates the habitable infrastructure limitations of a lunar colony than most Antarctic settlements in an altered gravity setting. However, the ISS is still protected against cosmic radiation by the Earth magnetic field, which prevents high exposures due to solar particle events and reduces exposures to galactic cosmic radiation. On Moon the ICE environments are strengthened, radiations of all energies are present capable of inducing performance degradation, as well as reduced gravity and lunar dust. The interaction of reduced gravity, radiation exposure, and ICE conditions may affect biology and behavior - and ultimately mission success - in ways the scientific and operational communities have yet to appreciate, therefore a long-term or permanent human presence on the Moon would ultimately provide invaluable high-fidelity opportunities for integrated multidisciplinary research and for preparations of a manned mission to Mars.
机译:由于它靠近地球,因此月球是陆地外人类殖民地定位的有希望的候选者。除了是研究重力降低,辐射风险和昼夜节律紊乱的高保真平台之外,月球还具有孤立,密闭和极端(ICE)的环境,适合作为研究长期心理社会效应的类似物进行人类太空探索任务并了解这些过程。相反,诸如Concordia和McMurdo之类的南极研究前哨站是研究ICE环境对生物行为适应性的有价值的平台,但仍然局限在地球上,因此缺乏低重力和空间辐射的风险。现在,国际空间站(ISS)本身被认为是长期任务的模拟环境,它比重力变化后的大多数南极定居点更好地近似了月球殖民地的可居住基础设施限制。但是,国际太空站仍然受到地球磁场的保护,免受宇宙辐射的影响,这可以防止由于太阳粒子事件引起的高暴露,并减少暴露于银河系宇宙辐射的机会。在月球上,ICE环境得到了加强,存在所有能量的辐射,这些辐射能够导致性能下降以及重力和月尘减少。重力降低,辐射暴露和ICE条件相互作用可能会影响生物学和行为-最终影响任务成功-科学和作战团体尚未意识到,因此人类长期或永久存在于月球上将最终提供整合多学科研究和准备载人火星飞行的宝贵高保真机会。

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