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[利用短半径离心机创造人工重力以支持行星际载人任务医疗的问题]

[The problem of creation of artificial gravity with the use of a short-radius centrifuge for medical support of interplanetary piloted missions].

作者信息

Kotovskaia A R, Vil'-Vil'iams I F, Luk'ianuk V Iu

出版信息

Aviakosm Ekolog Med. 2003;37(5):36-40.

Abstract

On the evidence of orbital flights, the system of countermeasures against the effects of microgravity does not fully make for deconditioning of a number of human organs and systems and recovery of preflight physical status and working ability of members of long-term missions takes 1.5 to 2 mos. of the post-flight rehabilitation. In order to maintain the physical form, health and performance of crews in future interplanetary missions, we should be ready to offer them a novel countermeasure, i.e. regular sessions of artificial gravity generated by a short-radius centrifuge (SRC) on board vehicles. The articles presents the substantiation and concept of ground-based simulation studies of health benefits from SRC in interplanetary missions. Of primary concern is development of SRC regimens that will put up a strong opposition to microgravity, assure crew safety, and reduce to the minimum time to fulfill the in-flight countermeasure program. Answers to arising questions can be found by consolidation of the expertise and resources of the countries willing to meet this challenge.

摘要

根据轨道飞行的证据,针对微重力影响的对策系统并不能完全防止一些人体器官和系统功能失调,长期任务成员飞行前的身体状态和工作能力需要在飞行后1.5至2个月的康复期才能恢复。为了在未来的星际任务中保持机组人员的体能、健康和工作表现,我们应准备为他们提供一种新的对策,即在飞行器上由短半径离心机(SRC)定期产生人工重力。本文介绍了在星际任务中对SRC带来的健康益处进行地面模拟研究的依据和概念。首要关注的是制定SRC方案,以有力对抗微重力,确保机组人员安全,并将执行飞行中对策计划的时间减至最短。通过整合愿意应对这一挑战的国家的专业知识和资源,可以找到对出现问题的答案。

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