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我们为何以这样的方式行走。

Why we walk the way we do.

作者信息

Brenière Y

机构信息

Laboratoire de Physiologie du Mouvement, Université Paris-Sud, Orsay, France.

出版信息

J Mot Behav. 1996 Dec;28(4):291-8. doi: 10.1080/00222895.1996.10544598.

Abstract

By using inverse dynamics and forceplate recordings, this study established the principle of oscillating systems and the influence of gravity and body parameters on the programming of the gait parameters, step frequency and length. Calculation of the ratio of the amplitude of the center of mass (CM) and the center of foot pressure (CP) oscillations yielded an equation and established a biomechanical constant, the natural body frequency (NBF). NBF appears to be an absolute invariant parameter, specific to human standing posture and gait in terrestrial gravity, which influences the relative positions of CM and CP and whose value separates the frequency bands of standing posture from those for gait. This equation was tested by using the experimental paradigm of stepping in place and then used in calculating the magnitude of CM oscillations during gait. The biomechanical analysis of the experimental observations allows one to establish the relationships between body parameters and gravity and the central programming of locomotor parameters.

摘要

通过使用逆动力学和测力台记录,本研究确立了振荡系统的原理以及重力和身体参数对步态参数、步频和步长编程的影响。计算质心(CM)和足压中心(CP)振荡幅度的比值得出一个方程,并建立了一个生物力学常数,即自然身体频率(NBF)。NBF似乎是一个绝对不变的参数,特定于地球重力下的人体站立姿势和步态,它影响CM和CP的相对位置,其值将站立姿势的频带与步态的频带区分开来。该方程通过原地踏步的实验范式进行了测试,然后用于计算步态期间CM振荡的幅度。对实验观察结果的生物力学分析使人们能够确立身体参数与重力之间的关系以及运动参数的中枢编程。

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