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首页> 外文期刊>Scientific reports. >Prosthetic ankle push-off work reduces metabolic rate but not collision work in non-amputee walking
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Prosthetic ankle push-off work reduces metabolic rate but not collision work in non-amputee walking

机译:假肢脚踝推举工作会降低新陈代谢速度,但在非截肢者行走中不会碰撞操作

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Individuals with unilateral below-knee amputation expend more energy than non-amputees during walking and exhibit reduced push-off work and increased hip work in the affected limb. Simple dynamic models of walking suggest a possible solution, predicting that increasing prosthetic ankle push-off should decrease leading limb collision, thereby reducing overall energy requirements. We conducted a rigorous experimental test of this idea wherein ankle-foot prosthesis push-off work was incrementally varied in isolation from one-half to two-times normal levels while subjects with simulated amputation walked on a treadmill at 1.25?m·s?1. Increased prosthesis push-off significantly reduced metabolic energy expenditure, with a 14% reduction at maximum prosthesis work. In contrast to model predictions, however, collision losses were unchanged, while hip work during swing initiation was decreased. This suggests that powered ankle push-off reduces walking effort primarily through other mechanisms, such as assisting leg swing, which would be better understood using more complete neuromuscular models.
机译:单侧膝下截肢患者在步行过程中比非截肢者消耗更多的精力,受累肢体的推举工作减少,髋关节工作增加。简单的步行动态模型提出了一种可能的解决方案,预测增加假肢脚踝的下垂应会减少前肢碰撞,从而降低总体能量需求。我们对此想法进行了严格的实验测试,其中脚踝假体下垂工作从正常水平的一半到两倍逐渐增加,而模拟截肢的受试者在跑步机上以1.25?m·s ?1 。假体推出量的增加显着减少了代谢能量的消耗,最大假体工作量减少了14%。然而,与模型预测相反,碰撞损失没有变化,而挥杆开始时的髋部工作减少了。这表明,动力踝关节推举主要是通过其他机制来减少步行努力,例如辅助腿部摆动,而使用更完整的神经肌肉模型可以更好地理解这种情况。

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