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Astrobiological Aspects of Mars and Human Presence: Pros and Cons

机译:火星和人类存在的天体生物学方面:利弊

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摘要

After the realization of the International Space Station, human exploratory missions to Moon or Mars, i.e. beyond low Earth orbit, are widely considered as the next logical step of peaceful cooperation in space on a global scale. Besides the human desire to extend the window of habitability, human exploratory missions are driven by several aspects of science, technology, culture and economy. Mars is currently considered as a major target in the search for life beyond the Earth. Understanding the history of water on Mars appears to be one of the clues to the puzzle on the probability of life on Mars. On Earth microorganisms have flourished for more than 3.5 Ga and have developed strategies to cope with so-called extreme conditions (e.g., hot vents, permafrost, subsurface regions, rocks or salt crystals). Therefore, in search for life on Mars, microorganisms are the most likely candidates for a putative biota on Mars and the search for morphological or chemical signatures of life or its relics is one of the primary and most exciting goals of Mars exploration. The presence of humans on the surface of Mars will substantially increase this research potential, e.g., by supporting deep subsurface drilling and by allowing intellectual collection and sophisticated in situ analysis of samples of astrobiological interest. On the other hand, such long-duration missions beyond LEO will add a new dimension to human space flight, concerning the distance of travel, the radiation environment, the gravity levels, the duration of the mission, and the level of confinement and isolation the crew will be exposed to. This will raise the significance of several health issues, above all radiation protection, gravity related effects as well as psychological issues. Furthermore, the import of internal and external microorganisms inevitably accompanying any human mission to Mars, or brought purposely to Mars as part of a bioregenerative life support system needs careful consideration with regard to planetary protection issues. Therefore, before planning any human exploratory mission, the critical issues concerning human health and wellbeing as well as protection of Mars in its pristine condition need to be investigated.
机译:国际空间站建成后,人类对月球或火星(即低地球轨道以外)的探索任务被广泛认为是在全球范围内和平开展空间合作的下一个逻辑步骤。除了人类渴望扩大可居住性的窗口外,人类探索任务还受到科学,技术,文化和经济等多个方面的驱动。目前,火星被视为寻找地球以外生命的主要目标。理解火星上水的历史似乎是关于火星生命概率之谜的线索之一。在地球上,微生物的生长已超过3.5 Ga,并已开发出应对所谓极端条件(例如,热气孔,多年冻土,地下区域,岩石或盐晶体)的策略。因此,在火星上寻找生命时,微生物最有可能成为火星上推测的生物群的候选者,寻找生命或其遗迹的形态或化学特征是火星探索的主要和最令人兴奋的目标之一。人类在火星表面的存在将大大增加这项研究的潜力,例如,通过支持深层地下钻探,并允许对天体生物学感兴趣的样品进行智力收集和复杂的原位分析。另一方面,LEO以外的此类长期飞行任务将为人类太空飞行增添新的维度,涉及行进距离,辐射环境,重力水平,飞行任务的持续时间以及飞行器的限制和隔离水平。机组人员将受到暴露。这将提高几个健康问题的重要性,尤其是辐射防护,与重力有关的影响以及心理问题。此外,在人类执行火星任务或作为生物再生生命支持系统的一部分有目的地带入火星时,不可避免地会引入内部和外部微生物,这需要就行星保护问题进行认真考虑。因此,在计划任何人类探索任务之前,需要研究与人类健康和福祉以及在原始状态下保护火星有关的关键问题。

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