Brenière Y, Cuong Do M, Bouisset S
a Laboratoire dé Physiologie du Mouvement Universite dé Paris-Sud.
J Mot Behav. 1987 Mar;19(1):62-76. doi: 10.1080/00222895.1987.10735400.
The aim of our research was to examine the function of the pre-gait weight shifts in generating the dynamic forces needed to start walking at different speeds. Five subjects participated in the experiment, and a total of 105 gait initiation movements, executed on a large force plate, for three speed conditions (slow, normal, and fast), were examined. Results, which related to durations of the anticipation and of the step execution phases and to biomechanical parameters (progression velocity of the center of gravity, backward shift of the center of foot pressure, and magnitude of propulsive forces at heel-off time), suggested that dynamic phenomena prior to stepping are essential to walking as far as they contribute to the creation of convenient conditions for progression. The configuration of the support basis prior to stepping limits the progression velocity reached at the end of the first step.
我们研究的目的是检验预步态体重转移在产生以不同速度开始行走所需的动力方面的作用。五名受试者参与了该实验,在一个大型测力板上针对三种速度条件(慢速、正常速度和快速)总共进行了105次步态起始动作测试。与预期阶段和步执行阶段的持续时间以及生物力学参数(重心前进速度、足底压力中心后移以及足跟离地时推进力的大小)相关的结果表明,迈步前的动态现象对于行走至关重要,因为它们有助于创造便于前进的条件。迈步前支撑基础的形态限制了第一步结束时所能达到的前进速度。