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首页> 外文期刊>Biomedical Engineering: Applications, Basis and Communications >A computer simulation of the effect of muscle loss on hip joint effort during the stance phase of transfemoral amputee gait
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A computer simulation of the effect of muscle loss on hip joint effort during the stance phase of transfemoral amputee gait

机译:在经股截肢步态步态阶段,肌肉损失对髋关节力量影响的计算机模拟

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摘要

The effect of muscle loss on the energy expenditure of hip joint, and its individual muscles, during stance phase of gait, was studied using a computer simulation. With each muscle as an ideal force generator, the lower extremity was simulated as a two-degree of freedom linkage with the hip and knee as its joints. Kinematic data and ground reaction forces were recorded by a gait analysis system. The forces exerted by muscles were determined to produce recorded hip and knee joint angles. Simulation results showed that, due to muscle loss, the work done by hip joint of the transected limb is more than that of the intact limb. Also, as more muscles are removed from the transected limb, residual muscles should do more work to flex or extend the hip. This finding is in line with the common practice in transfemoral amputation, according to which, it is important to maintain the length of residual limb as much as possible.
机译:在步态站立阶段,通过计算机模拟研究了肌肉损失对髋关节及其单个肌肉能量消耗的影响。将每条肌肉作为理想的力量生成器,将下肢模拟为以臀部和膝盖为关节的两个自由度链接。运动学数据和地面反作用力由步态分析系统记录。确定由肌肉施加的力以产生记录的髋关节和膝关节角度。仿真结果表明,由于肌肉丢失,横断肢的髋关节所完成的工作要多于完整肢体。同样,随着更多的肌肉从横断的肢体中移出,残余的肌肉应做更多的工作来弯曲或伸展臀部。该发现与经股截肢的常规做法相符,根据该惯例,重要的是尽可能地保持残肢的长度。

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