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Whole-body angular momentum during stair walking using passive and powered lower-limb prostheses

机译:使用被动式和动力式下肢假肢进行楼梯行走时的全身角动量

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Individuals with a unilateral transtibial amputation have a greater risk of falling compared to able-bodied individuals, and falling on stairs can lead to serious injuries. Individuals with transtibial amputations have lost ankle plantarflexor muscle function, which is critical for regulating whole-body angular momentum to maintain dynamic balance. Recently, powered prostheses have been designed to provide active ankle power generation with the goal of restoring biological ankle function. However, the effects of using a powered prosthesis on the regulation of whole-body angular momentum are unknown. The purpose of this study was to use angular momentum to evaluate dynamic balance in individuals with a transtibial amputation using powered and passive prostheses relative to able-bodied individuals during stair ascent and descent. Ground reaction forces, external moment arms, and joint powers were also investigated to interpret the angular momentum results. A key result was that individuals with an amputation had a larger range of sagittal-plane angular momentum during prosthetic limb stance compared to able-bodied individuals during stair ascent. There were no significant differences in the frontal, transverse, or sagittal-plane ranges of angular momentum or maximum magnitude of the angular momentum vector between the passive and powered prostheses during stair ascent or descent. These results indicate that individuals with an amputation have altered angular momentum trajectories during stair walking compared to able-bodied individuals, which may contribute to an increased fall risk. The results also suggest that a powered prosthesis provides no distinct advantage over a passive prosthesis in maintaining dynamic balance during stair walking.
机译:与健壮的个体相比,单侧胫骨截肢的个体跌倒的风险更大,跌落楼梯会导致严重的伤害。胫骨截肢患者失去了踝plant屈肌功能,这对于调节全身角动量以维持动态平衡至关重要。最近,动力假体已被设计为提供主动的脚踝发电,以恢复生物脚踝功能为目标。但是,使用动力假体对全身角动量调节的影响尚不清楚。这项研究的目的是利用角动量评估在动力上升和下降过程中使用动力假肢和被动假肢相对于身体健全的个体的胫骨截肢患者的动态平衡。还研究了地面反作用力,外部力矩臂和联合力,以解释角动量结果。关键结果是,与肢体健全的人相比,肢体假肢站立时截肢的人矢状面角动量范围更大。在楼梯上升或下降过程中,被动假体和动力假体之间的角动量的额度,横向或矢状面范围或角动量矢量的最大幅度没有显着差异。这些结果表明,与健壮的个体相比,截肢的个体在楼梯行走过程中改变了角动量轨迹,这可能会增加跌倒的风险。结果还表明,动力假肢在楼梯行走过程中保持动态平衡方面没有被动假肢提供明显优势。

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