理解人体在曲柄旋转中的运动

M. Svinin, K. Ohta, Zhiwei Luo, S. Hosoe
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引用次数: 5

摘要

处理曲柄旋转任务。这项任务要求臂链的协调运动不产生过多的内力。这项研究主要是为了理解受外部环境约束的舒适的人类运动。为了更深入地了解曲柄旋转任务,我们建立了一个数学模型,并分析了加权最小范数肌肉力分配方案,该方案可用于解决力冗余问题。实验数据分析表明,在舒适的运动中,人可能会调节曲柄的旋转刚度。这提供了一个额外的约束,可用于通过优化技术解决力冗余。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Understanding of human movements in crank rotation
Deals with a crank rotation task. The task requires coordinated movements of arm links without developing excessive internal forces. This research is directed, mainly, to the understanding of comfortable human movements constrained by the external environment. To get a deeper insight into the crank rotation task, we develop a mathematical model and analyze a weighted minimum norm muscle force distribution scheme that can be used in the resolution of the force redundancy. Analysis of experimental data shows that in comfortable motions a human is likely to modulate the rotational stiffness of the crank. This gives an additional constraint that can be used in the resolution of the force redundancy by optimization techniques.
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