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体内单个肘部肌肉旋转方向和力矩-角度关系的测定。

In vivo determination of the direction of rotation and moment-angle relationship of individual elbow muscles.

作者信息

Zhang L, Butler J, Nishida T, Nuber G, Huang H, Rymer W Z

机构信息

Sensory Motor Performance Program, Rehabilitation Institute of Chicago, USA.

出版信息

J Biomech Eng. 1998 Oct;120(5):625-33. doi: 10.1115/1.2834754.

Abstract

The direction of rotation (DOR) of individual elbow muscles, defined as the direction in which a muscle rotates the forearm relative to the upper arm in three-dimensional space, was studied in vivo as a function of elbow flexion and forearm rotation. Electrical stimulation was used to activate an individual muscle selectively, and the resultant flexion-extension, supination-pronation, and varus-valgus moments were used to determine the DOR. Furthermore, multi-axis moment-angle relationships of individual muscles were determined by stimulating the muscle at a constant submaximal level across different joint positions, which was assumed to result in a constant level of muscle activation. The muscles generate significant moments about axes other than flexion-extension, which is potentially important for actively controlling joint movement and maintaining stability about all axes. Both the muscle DOR and the multi axis moments vary with the joint position systematically. Variations of the DOR and moment-angle relationship across muscle twitches of different amplitudes in a subject were small, while there were considerable variations between subjects.

摘要

研究了个体肘部肌肉的旋转方向(DOR),其定义为肌肉在三维空间中使前臂相对于上臂旋转的方向,并将其作为肘部屈曲和前臂旋转的函数进行了体内研究。采用电刺激选择性激活单个肌肉,并通过由此产生的屈伸、旋前旋后和内翻外翻力矩来确定DOR。此外,通过在不同关节位置以恒定的次最大水平刺激肌肉来确定单个肌肉的多轴力矩-角度关系,假定这会导致肌肉激活水平恒定。肌肉会在屈伸轴以外的轴上产生显著力矩,这对于主动控制关节运动和维持所有轴上的稳定性可能很重要。肌肉的DOR和多轴力矩均随关节位置而系统变化。同一受试者不同幅度肌肉抽搐的DOR和力矩-角度关系变化较小,但不同受试者之间存在相当大的差异。

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