首页> 外文期刊>The Tohoku Journal of Experimental Medicine >Development of a training method for weightless environment using both electrical stimulation and voluntary muscle contraction.
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Development of a training method for weightless environment using both electrical stimulation and voluntary muscle contraction.

机译:开发一种利用电刺激和自发性肌肉收缩的失重环境训练方法。

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Extreme skeletal muscle atrophy is rampant in astronauts exposed to extended periods of microgravity (muG), and it is one of the main problems in human space exploration. A "Hybrid training" (HYB) method utilizing combined electrical stimulation and voluntary muscle contraction has been developed as a possible solution. A wearable HYB device and a virtual reality (VR) system were developed for use in space, and were verified at muG generated by parabolic flight (PF). A 36-year-old male subject performed HYB of reciprocal flexion and extension as a knee joint exercise training in a seated position at 1G, 2G and muG. The wearable HYB device and VR system developed for the study functioned well during the flight. However knee extension was insufficient at 1G and 2G, and the maximum knee extension angles at 1G and 2G were smaller than at muG. The extension velocity in the latter half of each motion was slower than in the first half at 1G and 2G, but no difference in velocity was observed at muG. The subject could extend the knee joint sufficiently and keep a constant extension velocity, because his legs were weightless at muG. The congruity between the subject's actual joint motions and instructed joint motions during muG was improved, when VR was employed with or without body fixation; accordingly, the subject was able to perform the desired joint motion. The VR system improved HYB exercise performance at muG during PF. HYB is considered a useful training method for future human space exploration.
机译:暴露于微重力(muG)较长时间的宇航员中,极端骨骼肌萎缩十分普遍,这是人类太空探索中的主要问题之一。作为一种可能的解决方案,已开发出一种利用混合电刺激和自发性肌肉收缩的“混合训练”(HYB)方法。开发了一种可穿戴的HYB设备和虚拟现实(VR)系统,用于太空,并在由抛物线飞行(PF)产生的muG上进行了验证。一名36岁的男性受试者在坐姿分别以1G,2G和muG进行膝关节运动训练时,进行了屈曲和伸展的HYB动作。为该研究开发的可穿戴HYB设备和VR系统在飞行过程中运行良好。但是,在1G和2G时,膝关节伸展不足,并且在1G和2G时的最大膝关节伸展角度小于muG时。在1G和2G时,每个动作的后半部分的伸展速度都比前半部分慢,但在muG处没有观察到速度差异。受试者可以使膝关节充分伸展,并保持恒定的伸展速度,因为他的腿在muG时失重。当在有或没有身体固定的情况下使用VR时,muG中受试者的实际关节运动与指示的关节运动之间的一致性得到了改善。因此,受试者能够执行期望的关节运动。 VR系统改善了PF期间在muG时HYB的运动表现。 HYB被认为是未来人类太空探索的有用训练方法。

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