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ISS Utilization and Countermeasure Validation: Implementing the Critical Path Roadmap to Reduce Uncertainties of Extended Human Spaceflight Expeditions

机译:国际空间站的利用和对策验证:实施关键路径路线图,以减少人类扩展太空探险的不确定性

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摘要

Human exploration of space requires the ability to understand and mitigate risks to crews exposed to the conditions associated with such missions. This becomes a greater imperative as we prepare for interplanetary expeditions involving humans who will be subjected to long transit periods in microgravity as they travel to a distant planet such as Mars, embark and live on the planet's surface for an extended time, and finally, return to the 1 g environment of Earth. We need to know, more definitively, what the human health, safety, and performance risks are, and how to prevent or counteract them throughout all phases of a long duration mission. The Johnson Space Center's Space and Life Sciences Directorate along with the National Space Biomedical Research Institute (NSBRI) have been engaged in a strategic planning effort that identifies the most critical risks confronting humans who will venture forth on such missions and the types of research and technology efforts required to mitigate and otherwise reduce the probability and/or severity of those risks. This paper describes the unique approach used to define, assess and prioritize the risks and presents the results of the assessment with an emphasis on the research and technology priorities that will help us to meet the challenge of long duration human spaceflight missions.
机译:人类对太空的探索需要能够理解和减轻暴露于此类任务相关条件下的机组人员面临的风险。当我们为涉及到人类的行星际探险做准备时,这将变得更加重要,这些人类将在前往重力较远的星球(如火星),登上并在地球表面居住更长的时间后,在微重力中经历较长的过渡期,最后返回到地球的1 g环境我们需要更确切地了解什么是人类健康,安全和性能风险,以及如何在长期任务的所有阶段中预防或应对这些风险。约翰逊太空中心的太空与生命科学局与美国国家太空生物医学研究所(NSBRI)一直在进行战略规划工作,以确定将面临此类任务的人类面临的最关键风险以及研究和技术类型减轻和降低这些风险的可能性和/或严重性所需的努力。本文介绍了用于定义,评估和确定风险优先级的独特方法,并介绍了评估结果,重点是研究和技术重点,这将有助于我们应对长期载人航天飞行任务的挑战。

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