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运动摆动期肢体动力学的调制。

Modulation of limb dynamics in the swing phase of locomotion.

作者信息

Hoy M G, Zernicke R F

出版信息

J Biomech. 1985;18(1):49-60. doi: 10.1016/0021-9290(85)90044-2.

Abstract

A method was presented for quantifying cat (Felis catus) hind limb dynamics during swing phase of locomotion using a two-link rigid body model of leg and paw, which highlighted the dynamic interactions between segments. Comprehensive determination was made of cat segment parameters necessary for dynamic analysis, and regression equations were formulated to predict the inertial parameters of any comparable cat. Modulations in muscle and non-muscle components of knee and ankle joint moments were examined at two treadmill speeds using three gaits: (a) pace-like walk and trot-like walk, at 1.0 ms-1, and (b) gallop, at 2.1 ms-1. Results showed that muscle and segment interactive moments significantly effected limb trajectories during swing. Some moment components were greater in galloping than in walking, but net joint maxima were not significantly different between speeds. Moment magnitudes typically were greater for pace-like walking than for trot-like walking at the same speed. Generally, across gaits, the net and muscle moments were in phase with the direction of distal joint motion, and these same moments were out of phase with proximal joint motion. Intersegmental dynamics were not modulated exclusively by speed of locomotion, but interactive moments were also influenced significantly by gait mode.

摘要

提出了一种方法,利用腿和爪的双连杆刚体模型量化猫(Felis catus)在运动摆动阶段的后肢动力学,该模型突出了各节段之间的动态相互作用。全面确定了动态分析所需的猫节段参数,并制定了回归方程以预测任何可比猫的惯性参数。使用三种步态在两种跑步机速度下检查了膝关节和踝关节力矩的肌肉和非肌肉成分的调制:(a)在1.0 m/s时类似踱步的行走和类似小跑的行走,以及(b)在2.1 m/s时的飞奔。结果表明,肌肉和节段相互作用矩在摆动过程中显著影响肢体轨迹。飞奔时的一些力矩成分大于行走时,但不同速度下的净关节最大值没有显著差异。在相同速度下,类似踱步的行走的力矩大小通常大于类似小跑的行走。一般来说,在所有步态中,净力矩和肌肉力矩与远端关节运动方向同相,而这些相同的力矩与近端关节运动异相。节段间动力学并非仅由运动速度调制,相互作用矩也受到步态模式的显著影响。

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