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Inverse kinetic and kinematic analysis of drop-foot patient's walking

机译:脚下步行患者运动的逆动力学和运动学分析

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The purpose of this study was to quantify the effect of drop-foot on biomechanical properties of human gait such as heel altitude and sagittal angles and moments of lower limb joints, during a gait cycle. Two subjects with almost the same anthropometric parameters consisted of a healthy and a unilateral drop-foot patient were asked to walk at a self selected speed over two recessed force platforms, while the movements were recorded by six infrared cameras. Joint angles and moments were calculated by inverse kinematics and inverse dynamics, using OpenSim software. The study shows, delayed incomplete swing phase in leg's motion. During the gait cycle, besides excessive hip flexion, no hip extension was observed in the affected leg. Knee flexion curve for this leg shows one peak trend instead of normal double peak behavior. The planter flexion moment of affected ankle was much less than its normal value. In the unaffected leg motion late heel strike was observed. The patient was able to lift that leg to only half of the normal value.
机译:这项研究的目的是量化在步态周期中,落脚对人体步态的生物力学特性的影响,例如脚跟高度和矢状角以及下肢关节的力矩。要求两个具有几乎相同的人体测量学参数的受试者,包括一个健康的人和一个单侧跌落的脚患者,他们要以自己选择的速度在两个隐式受力平台上行走,同时用六个红外摄像机记录其运动。使用OpenSim软件通过逆运动学和逆动力学计算关节角度和力矩。研究表明,腿部运动延迟了不完全的摆动阶段。在步态周期中,除了髋部过度屈曲外,在患肢中未观察到髋关节伸展。这条腿的膝盖弯曲曲线显示一个峰值趋势,而不是正常的双峰值行为。受累脚踝的屈曲力矩远小于其正常值。在未受影响的腿部运动中,观察到了后跟撞击。病人只能将那条腿抬起至正常值的一半。

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