微重力和超重力对动物的生物效应

Q1 Engineering
Guofeng Cheng;Biao Yu;Chao Song;Vitalii Zablotskii;Xin Zhang
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引用次数: 0

摘要

太空重力的改变会对人体产生显著的适应性影响,包括肌肉、骨骼和前庭系统的变化。然而,除了重力之外,空间中还存在多种因素;因此,很难将重力相关的生物效应与其他因素(包括辐射)的生物效应区分开来。虽然地球表面的一切都受到重力的影响,但重力引起的效应并不明确。在这里,不同的研究方法已经用于重力变化,包括抛物线飞行,反磁悬浮和离心机,进行了回顾和比较。本文综述了已报道的与重力改变有关的动物生物效应,讨论了超重力和微重力的潜在风险,重点讨论了研究较为广泛的微重力。值得注意的是,尽管各种微重力和超重力研究方法都有其局限性,例如反磁悬浮中不可避免的磁场效应和抛物线飞行持续时间短,但很明显,模拟重力变化的地面临床、动物和细胞实验已经成为空间研究的重要和必要的补充。这些研究不仅从生物力学和生物物理学的角度提供了重力影响的关键和基础的生物学信息,而且有助于制定未来宇航员的对策。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bioeffects of Microgravity and Hypergravity on Animals
Gravity alterations in space cause significant adaptive effects on the human body, including changes to the muscular, skeletal, and vestibular systems. However, multiple factors besides gravity exist in space; therefore, it is difficult to distinguish gravity-related bioeffects from those of the other factors, including radiation. Although everything on the Earth surface is subject to gravity, gravity-induced effects are not explicitly clear. Here, different research methods that have been used in gravity alterations, including parabolic flight, diamagnetic levitation, and centrifuge, are reviewed and compared. The bioeffects that are reported to be associated with altered gravity in animals are summarized, and the potential risks of hypergravity and microgravity are discussed, with a focus on microgravity, which has been studied more extensively. It should be noted that although various microgravity and hypergravity research methods have their limitations, such as the inevitable magnetic field effects in diamagnetic levitation and short duration of parabolic flight, it is evident that ground-based clinical, animal, and cellular experiments that simulate gravity alterations have served as important and necessary complements to space research. These researches not only provide critical and fundamental biological information on the effects of gravity from biomechanics and the biophysical perspectives, but also help in developing future countermeasures for astronauts.
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来源期刊
Chinese Journal of Electrical Engineering
Chinese Journal of Electrical Engineering Energy-Energy Engineering and Power Technology
CiteScore
7.80
自引率
0.00%
发文量
621
审稿时长
12 weeks
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