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PREDICTION OF THE LOWER EXTREMITY MUSCLE FORCES DURING STAIR ASCENT AND DESCENT

机译:在楼梯上升和下降期间预测下肢肌肉力

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An inverse dynamics musculoskeletal model of the lower extremity was combined with an optimization technique to estimate individual muscular forces and powers during stair ascent and descent. Eighteen Hill-type musculotendon actuators per leg were combined into the eleven functional muscle groups based on anatomical classification to drive the model in the sagittal plane. Simulation results illustrate the major functional differences in plantar flexors of the ankle and extensors of the knee and hip joints during ascent and descent. The results of this study not only could be employed to evaluate the rehabilitation results in the elderly but also could be used to design more anthropometric assistive devices with optimum power consumption.
机译:下肢的逆动力学肌肉骨骼模型与优化技术相结合,以估计楼梯上升和下降期间的个体肌肉力和力量。根据解剖分类,每条腿的十八座山型Musculotendon致动器将其组合成11个功能肌肉群,以在矢状平面中驱动模型。仿真结果说明了在上升和下降期间踝关节和髋关节的踝关节的Portherar屈曲的主要功能差异。本研究的结果不仅可以用于评估老年人的康复结果,而且可以用于设计具有最佳功耗的人类测量辅助装置。

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