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经济行走的碰撞几何形状预测了人体腿部和脚部的比例。

The collisional geometry of economical walking predicts human leg and foot segment proportions.

机构信息

Structure and Motion Lab., The Royal Veterinary College, North Mymms, Hatfield, Herts AL9 7TA UK.

出版信息

J R Soc Interface. 2023 Mar;20(200):20220800. doi: 10.1098/rsif.2022.0800. Epub 2023 Mar 22.

Abstract

Human walking appears complicated, with many muscles and joints performing rapidly varying roles over the stride. However, the function of walking is simple: to support body weight as it translates economically. Here, a scenario is proposed for the sequence of joint and muscle actions that achieves this function, with the timing of muscle loading and unloading driven by simple changes in geometry over stance. In the scenario, joints of the legs and feet are sequentially locked, resulting in a vaulting stance phase and three or five rapid 'mini-vaults' over a series of 'virtual legs' during the step-to-step transition. Collision mechanics indicate that the mechanical work demand is minimized if the changes in the centre-of-mass trajectory over the step-to-step transition are evenly spaced, predicting an even spacing of the virtual legs. The scenario provides a simple account for the work-minimizing mechanisms of joints and muscles in walking, and collision geometry allows leg and foot proportions to be predicted, accounting for the location of the knee halfway down the leg, and the relatively stiff, plantigrade, asymmetric, short-toed human foot.

摘要

人类行走看似复杂,许多肌肉和关节在步态中快速地发挥着不同的作用。然而,行走的功能很简单:在经济地平移时支撑体重。在这里,提出了一个实现此功能的关节和肌肉活动顺序的场景,通过支撑期的几何形状的简单变化来驱动肌肉的加载和卸载的时机。在该场景中,腿部和脚部的关节依次锁定,导致在跨步过渡期间形成一个跳跃式的支撑阶段和三个或五个快速的“迷你跳跃”,跨越一系列“虚拟腿”。碰撞力学表明,如果跨步过渡过程中质心轨迹的变化均匀间隔,机械功的需求最小化,这预测了虚拟腿的均匀间隔。该场景为关节和肌肉在行走中最小化工作的机制提供了一个简单的解释,而碰撞几何形状允许预测腿和脚的比例,解释了膝盖在腿中间的位置,以及相对僵硬、跖行、不对称、短趾的人类脚。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1b3/10031400/69eb64303d70/rsif20220800f01.jpg

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