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Temporal Structure of Muscle Synergy of Human Stepping Leg During Sit-to-Walk Motion

机译:坐足式运动期间人踏步腿肌肉协同作用的时间结构

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In daily lives, humans successfully transit their motions rather than performing separate movements. It has been widely acknowledged that there are four and five modules (called muscle synergy) in human sit-to-stand and walking motions, but it was still unclear how humans activate their redundant muscles to transit their movement from sitting to walking. Therefore this study hypothesize that human sit-to-stand can be explained from muscle synergies of sit-to-stand and walking motions, and we perform the experiment to verify it. Firstly, four and five muscle synergies were obtained from sit-to-stand and walking motion, and it has been tested whether these nine synergies are applicable to sit-to-walk motion. Results showed that sit-to-walk motion were successfully explained from nine synergies. Moreover, it was shown that humans adaptively changed the activation time of each synergies to delay body extension time and to generate necessary initial momentum for the walking motion.
机译:在日常生活中,人类成功过境动议而不是执行单独的运动。它已被广泛承认人类坐在地站和步行运动中有四个和五个模块(称为肌肉协同),但仍然尚不清楚人类如何激活他们的冗余肌肉,以将流动从坐在行走中传播。因此,这项研究假设人体静坐可以从坐在地站和行走运动的肌肉协同作用中解释,我们执行实验以验证它。首先,从坐在地面和步行运动中获得四个和五个肌肉协同作用,并已经测试了这些九种协同效应是否适用于坐足式运动。结果表明,坐足式运动从九个协同效应中成功解释。此外,表明人类自适应地改变了每个协同效应的激活时间,以延迟体延长时间并为行走运动产生必要的初始动力。

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