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Reconstruction of human swing leg motion with passive biarticular muscle models

机译:用被动偏头肌肉模型重建人摇腿运动

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Template models, which are utilized to demonstrate general aspects in human locomotion, mostly investigate stance leg operation. The goal of this paper is presenting a new conceptual walking model benefiting from swing leg dynamics. Considering a double pendulum equipped with combinations of biarticular springs for the swing leg beside spring-mass (SLIP) model for the stance leg, a novel SLIP-based model, is proposed to explain human-like leg behavior in walking. The action of biarticular muscles in swing leg motion helps represent human walking features, like leg retraction, ground reaction force and generating symmetric walking patterns, in simulations. In order to stabilize the motion by the proposed passive structure, swing leg biarticular muscle parameters such as lever arm ratios, stiffnesses and rest lengths need to be properly adjusted. Comparison of simulation results with human experiments shows the ability of the proposed model in replicating kinematic and kinetic behavior of both stance and swing legs as well as biarticular thigh muscle force of the swing leg. This substantiates the important functional role of biarticular muscles in leg swing. (C) 2017 Elsevier B.V. All rights reserved.
机译:模板模型,用于在人类运动中展示一般方面,主要是调查姿态腿部操作。本文的目标是介绍了一个新的概念行走模式,受益于Swing腿动态。考虑到配备有偏振腿的偏振弹簧组合的双摆型姿势(滑动)模型,提出了一种新的滑动模型,以解释行走中的人类腿部行为。摆动腿运动中的偏头肌肉的作用有助于代表人行道特征,如腿部缩回,地面反作用力和产生对称行走模式。为了通过所提出的被动结构稳定运动,需要适当地调节杠杆臂比,刚度和静止长度的摆动腿偏头肌肉参数。使用人类实验的模拟结果的比较显示了所提出的模型在复制姿态和摇摆腿的运动和动力学行为以及摆动腿的偏头大腿肌肉力。这证明了偏头肌肉在腿部摆动中的重要功能作用。 (c)2017 Elsevier B.v.保留所有权利。

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