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人类行走过程中同时存在正向和负向外部机械功。

Simultaneous positive and negative external mechanical work in human walking.

作者信息

Donelan J Maxwell, Kram Rodger, Kuo Arthur D

机构信息

Locomotion Laboratory, Department of Integrative Biology, 3060 Valley Life Sciences Building, University of California, Berkeley, CA 94720-3140, USA.

出版信息

J Biomech. 2002 Jan;35(1):117-24. doi: 10.1016/s0021-9290(01)00169-5.

Abstract

In human walking, the center of mass motion is similar to an inverted pendulum. Viewing double support as a transition from one inverted pendulum to the next, we hypothesized that the leading leg performs negative work to redirect the center of mass velocity, while simultaneously, the trailing leg performs positive work to replace the lost energy. To test this hypothesis, we developed a method to quantify the external mechanical work performed by each limb (individual limbs method). Traditional measures of external mechanical work use the sum of the ground reaction forces acting on the limbs (combined limbs method) allowing for the mathematical cancellation of simultaneous positive and negative work during multiple support periods. We expected to find that the traditional combined limbs method underestimates external mechanical work by a substantial amount. We used both methods to measure the external mechanical work performed by humans walking over a range of speeds. We found that during double support, the legs perform a substantial amount of positive and negative external work simultaneously. The combined limbs measures of positive and negative external work were approximately 33% less than those calculated using the individual limbs method. At all speeds, the trailing leg performs greater than 97% of the double support positive work while the leading leg performs greater than 94% of the double support negative work.

摘要

在人类行走过程中,质心运动类似于一个倒立摆。将双支撑视为从一个倒立摆过渡到下一个倒立摆,我们假设前导腿做负功以重新定向质心速度,与此同时,后随腿做正功以补充损失的能量。为了验证这一假设,我们开发了一种方法来量化每个肢体所做的外部机械功(单个肢体法)。传统的外部机械功测量方法使用作用在肢体上的地面反作用力之和(组合肢体法),这使得在多个支撑阶段同时出现的正功和负功在数学上相互抵消。我们预计会发现传统的组合肢体法会大幅低估外部机械功。我们使用这两种方法来测量人类在一系列速度下行走时所做的外部机械功。我们发现,在双支撑期间,双腿同时做大量的正外部功和负外部功。组合肢体法测得的正外部功和负外部功比使用单个肢体法计算得出的结果大约少33%。在所有速度下,后随腿完成双支撑正功的比例超过97%,而前导腿完成双支撑负功的比例超过94%。

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