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Factors Affecting Knee Flexion During the Swing Phase of Gait

机译:影响步态摆动阶段膝关节屈曲的因素

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A three-degree-of-freedom sagittal plane musculoskeletal model of the human lower extremity has been developed to simulate the swing phase of normal gait. Values for the joint angles and angular velocities at toe-off and the excitation input to the model's muscles were derived from experimental measurements. The normal swing phase simulation produced joint angles, joint moments, and heel and toe trajectories that corresponded to experimental results. Simulations were run with altered initial joint angular velocities and applied joint moments to determine the effects of each upon peak knee flexion and knee angular acceleration. It was found that knee flexion during the swing phase is caused primarily by a large initial knee flexion velocity at toe-off which is tempered by a knee extension acceleration that is chiefly caused by muscular action.
机译:已经开发出一种人的下肢的三维自由度矢状肌肉肌肉模型,以模拟正常步态的摆动阶段。从实验测量中得出了肌腱角度和肌肉角速度的角度和模型肌肉的激励输入。正常的摆动阶段模拟产生了与实验结果相对应的关节角度,关节矩和脚跟和脚趾轨迹。利用改变的初始关节角速度和应用联合时刻进行仿真,以确定每个峰值膝关节屈曲和膝关节加速度的效果。结果发现,在摆动阶段期间的膝部屈曲主要由肌腱上的大型初始膝关节屈曲速度引起,该孔屈曲速度由主要由肌肉作用引起的膝关节延长加速度而来。

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