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Analytical model for estimating intersegmental forces exerted on human lower limbs during walking motion

机译:估计步行运动过程中施加在人下肢上的节间力的分析模型

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摘要

Existing methods for evaluating the intersegmental forces acting on the human lower limbs during walking generally measure the ground reaction force exerted on the feet using force plates and estimate the intersegmental forces using an inverse dynamics approach. However, force plates are inconvenient and expensive. Accordingly, the present study proposes an approach for evaluating the intersegmental forces without the need for force plates by modeling the human lower limbs as a seven-link manipulator system. In the proposed approach, the intersegmental forces are derived directly from the analytical model using Newton-Euler theory based on the posture information obtained from a system of gyroscopes and accelerometers during walking motion. The results obtained from the analytical model are compared with the experimental data obtained using load cells. It is found that the estimated results are in good agreement with the measured results. Thus, the basic validity of the proposed analysis system is confirmed.
机译:用于评估步行过程中作用在人类下肢上的节间力的现有方法通常使用力板测量施加在脚上的地面反作用力,并使用逆动力学方法估计节间力。然而,测力板不方便且昂贵。因此,本研究提出了一种通过将人类的下肢建模为七连杆机械手系统而无需使用力板来评估节间力的方法。在所提出的方法中,基于在步行运动期间从陀螺仪和加速度计系统获得的姿势信息,使用牛顿-欧拉理论直接从分析模型中得出节间力。从分析模型获得的结果与使用称重传感器获得的实验数据进行比较。发现估计结果与测量结果非常吻合。因此,证实了所提出的分析系统的基本有效性。

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