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Aging effects on the mechanical energy transfer through the lower extremity joints during the swing phase of level walking

机译:在水平行走的摆动阶段老化对通过下肢关节的机械能传递的影响

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摘要

Age-related changes of gait performance have been evidenced by the altered kinetic coordination of the lower extremity. However, a systematic approach to explore the gait control in terms of the mechanical energy transfer across multiple segments throughout the gait phases is still not well documented. Ten healthy elderly and ten young adults were asked to walk along a 10-meter walkway at the self-selected and fast walking speeds. The visualized energy flow model of the swing leg was established and the factor analysis was then applied to extract the high-dimensional energy flow characteristics of the swing leg. The results showed that the young adults have similar energy flow characteristics of the swing leg for both fast and self-selected walking speeds, while the elderly showed an opposite energy flow pattern especially at the fast walking speed. The hip power and the knee power were also found to mainly correspond to the swing acceleration and deceleration, respectively. This study demonstrated a valuable tool to explore the change of the gait characteristics in the elderly and could help to facilitate the understanding of the neuromuscular adaptation due to aging.
机译:下肢运动协调性改变证明了步态表现与年龄有关。然而,关于跨步态多个部分的机械能传递来探索步态控制的系统方法仍然没有得到很好的记录。十名健康的老人和十名年轻的成年人被要求以自行选择的快速行走速度沿着10米的人行道行走。建立了可视化的摆腿能量流模型,然后进行因子分析以提取摆腿的高维能量流特征。结果表明,年轻人在快速和自行选择的步行速度下都具有与摆动腿相似的能量流特征,而老年人则表现出相反的能量流动模式,尤其是在快速步行速度下。还发现臀部力量和膝盖力量分别主要对应于挥杆加速和减速。这项研究证明了探索老年人步态特征变化的有价值的工具,并且可以帮助促进对衰老引起的神经肌肉适应性的理解。

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