首页> 外文会议>International Astronautical Congress; 20070924-28; Hyderabad(IN) >POSTURAL MUSCLE ATROPHY PREVENTION AND RECOVERY AND BONE REMODELING THROUGH HIGH FREQUENCY PROPRIOCEPTION FOR ASTRONAUTS
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POSTURAL MUSCLE ATROPHY PREVENTION AND RECOVERY AND BONE REMODELING THROUGH HIGH FREQUENCY PROPRIOCEPTION FOR ASTRONAUTS

机译:航天器的高频惯性对姿势肌萎缩的预防和恢复以及骨骼重塑

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摘要

The difficulty in applying active exercises during space flights increases the importance of passive countermeasures, but coupling load and instability remains indispensable for generating high frequency (HF) proprioceptive flows and preventing muscle atrophy and osteoporosis. The present study, in microgravity conditions during a parabolic flight, verified whether an electronic system, composed of a rocking board, a postural reader and a bungee-cord loading apparatus creates HF postural instability comparable to that reachable on the Earth. Tracking the subject, in single stance, to real time visual signals is necessary to obtain HF instability situations. The bungee-cord loading apparatus allowed the subject to manage the 81.5% body weight load (100% could easily be exceeded). A preliminary training program schedule on the Earth and in space is suggested. Comparison with a pathological muscle atrophy is presented. The possibility of generating HF proprioceptive flows could complement current countermeasures for the prevention and recovery of muscle atrophy and osteoporosis in terrestrial and space environments. These exercises combine massive activation of spindles and joint receptors, applying simultaneously HF variations of pressure to different areas of the sole of the foot. This class of exercises could improve the effectiveness of current countermeasures, reducing working time and fatigue.
机译:在太空飞行中进行主动锻炼的难度增加了被动对策的重要性,但是耦合负载和不稳定性对于产生高频(HF)本体感觉血流并防止肌肉萎缩和骨质疏松仍然必不可少。本研究在抛物线飞行过程中的微重力条件下,验证了由摇摆板,姿势读取器和蹦极绳加载设备组成的电子系统是否会产生与地球上可达到的HF姿势不稳定性。要获得HF不稳定的情况,必须以单一的姿势跟踪对象到实时视觉信号。蹦极绳装载设备使受试者能够承受81.5%的体重负荷(很容易超过100%)。建议对地球和太空进行初步培训。提出了与病理性肌肉萎缩的比较。产生HF本体感受性血流的可能性可以补充目前在陆地和太空环境中预防和恢复肌肉萎缩和骨质疏松的对策。这些练习结合了纺锤体和关节感受器的大量激活,同时将HF压力变化同时施加到脚底的不同区域。此类练习可以提高当前对策的有效性,减少工作时间和疲劳。

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