IF 2.6 4区 医学 Q2 PHYSIOLOGY
Jonas Böcker, Jochen Zange, Torsten Siedel, Guillaume Fau, Sebastian Langner, Thomas Krueger, Jörn Rittweger
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引用次数: 0

摘要

长期处于失重状态会导致肌肉和骨骼质量下降。因此,国际空间站(ISS)上的宇航员目前每天都要进行强制性锻炼。国际空间站的任务通常持续 6 个月,而未来的任务将大大延长,例如前往火星。为此,我们开发了一种名为 ATHLETIC 的外骨骼运动装置。本研究对该装置的功能性和相关性进行了评估。十名参与者进行了阻力练习(深蹲)和负重练习(反向运动跳、反应跳)。结果表明,所有参与者在技术上都能在 ATHLETIC 上完成预期练习,尽管与参考练习相比,负荷有所减轻。这导致机械性能和肌肉活动减少。由于不熟悉水平训练轴,一些参与者难以正确完成动作。需要进行后续研究,测试足够次数的练习是否能使参与者接近参考测量的表现,以及是否需要进一步改进设备以提高练习表现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ATHLETIC: An exoskeleton countermeasure exercise device for resistive and plyometric training in deep-space missions.

Prolong exposure to weightlessness leads to loss of muscle and bone mass. Therefore, astronauts on board the International Space Station (ISS) currently perform mandatory daily exercises. ISS missions usually last 6 months, and future missions will become significantly longer when going, for example, to Mars. To that purpose, an exoskeleton-based exercise device, called ATHLETIC, was developed. The functionality and relevance of this device was evaluated in this study. Ten participants performed resistance exercises (squats) and plyometric exercises (countermovement jumps, reactive hops). Results showed that all participants were technically able to perform the intended exercises on ATHLETIC, albeit with reduced loading as compared to the reference exercises. This resulted in less mechanical performance and muscle activity. Due to the unfamiliar horizontal training axis, some participants had difficulty performing the movements correctly. Follow-up studies are required testing, whether an adequate number of practicing sessions could enable persons to approach the performances of reference measurements, and whether further improvements of the device are needed to improve the exercise performance.

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来源期刊
Experimental Physiology
Experimental Physiology 医学-生理学
CiteScore
5.10
自引率
3.70%
发文量
262
审稿时长
1 months
期刊介绍: Experimental Physiology publishes research papers that report novel insights into homeostatic and adaptive responses in health, as well as those that further our understanding of pathophysiological mechanisms in disease. We encourage papers that embrace the journal’s orientation of translation and integration, including studies of the adaptive responses to exercise, acute and chronic environmental stressors, growth and aging, and diseases where integrative homeostatic mechanisms play a key role in the response to and evolution of the disease process. Examples of such diseases include hypertension, heart failure, hypoxic lung disease, endocrine and neurological disorders. We are also keen to publish research that has a translational aspect or clinical application. Comparative physiology work that can be applied to aid the understanding human physiology is also encouraged. Manuscripts that report the use of bioinformatic, genomic, molecular, proteomic and cellular techniques to provide novel insights into integrative physiological and pathophysiological mechanisms are welcomed.
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