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人类在不同速度下行走的经济、运动动态和肌肉活动。

Economy, Movement Dynamics, and Muscle Activity of Human Walking at Different Speeds.

机构信息

Department of Neuroscience and Pharmacology, University of Copenhagen, Denmark.

Department of Electrical Engineering, Technical University of Denmark, Denmark.

出版信息

Sci Rep. 2017 Mar 8;7:43986. doi: 10.1038/srep43986.

Abstract

The complex behaviour of human walking with respect to movement variability, economy and muscle activity is speed dependent. It is well known that a U-shaped relationship between walking speed and economy exists. However, it is an open question if the movement dynamics of joint angles and centre of mass and muscle activation strategy also exhibit a U-shaped relationship with walking speed. We investigated the dynamics of joint angle trajectories and the centre of mass accelerations at five different speeds ranging from 20 to 180% of the predicted preferred speed (based on Froude speed) in twelve healthy males. The muscle activation strategy and walking economy were also assessed. The movement dynamics was investigated using a combination of the largest Lyapunov exponent and correlation dimension. We observed an intermediate stage of the movement dynamics of the knee joint angle and the anterior-posterior and mediolateral centre of mass accelerations which coincided with the most energy-efficient walking speed. Furthermore, the dynamics of the joint angle trajectories and the muscle activation strategy was closely linked to the functional role and biomechanical constraints of the joints.

摘要

人类行走的复杂行为表现出运动变异性、经济性和肌肉活动的速度依赖性。众所周知,行走速度与经济性之间存在 U 形关系。然而,关节角度和质心的运动动力学以及肌肉激活策略是否也与行走速度呈 U 形关系,这仍是一个悬而未决的问题。我们在 12 名健康男性中以预测的最佳速度(基于弗劳德速度)的 20%至 180%的五个不同速度范围内研究了关节角度轨迹和质心加速度的动力学。还评估了肌肉激活策略和行走经济性。使用最大李雅普诺夫指数和关联维数的组合研究了运动动力学。我们观察到膝关节角度和前-后向和内-外侧质心加速度的运动动力学的中间阶段,这与最节能的行走速度相吻合。此外,关节角度轨迹和肌肉激活策略的动力学与关节的功能作用和生物力学限制密切相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dec5/5341064/574a8c54cf9c/srep43986-f1.jpg

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