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肘关节角度对人体肱二头肌和肱三头肌力量-肌电图关系的影响。

Effect of elbow joint angle on force-EMG relationships in human elbow flexor and extensor muscles.

作者信息

Doheny Emer P, Lowery Madeleine M, Fitzpatrick David P, O'Malley Mark J

机构信息

School of Electrical, Electronic and Mechanical Engineering, University College Dublin, Ireland.

出版信息

J Electromyogr Kinesiol. 2008 Oct;18(5):760-70. doi: 10.1016/j.jelekin.2007.03.006. Epub 2007 May 11.

Abstract

The purpose of this study was to examine the effect of joint angle on the relationship between force and electromyogram (EMG) amplitude and median frequency, in the biceps, brachioradialis and triceps muscles. Surface EMG were measured at eight elbow angles, during isometric flexion and extension at force levels from 10% to 100% of maximum voluntary contraction (MVC). Joint angle had a significant effect on MVC force, but not on MVC EMG amplitude in all of the muscles examined. The median frequency of the biceps and triceps EMG decreased with increasing muscle length, possibly due to relative changes in electrode position or a decrease in muscle fibre diameter. The relationship between EMG amplitude and force, normalised with respect to its maximum force at each angle, did not vary with joint angle in the biceps or brachioradialis muscles over all angles, or in the triceps between 45 degrees and 120 degrees of flexion. These results suggest that the neural excitation level to each muscle is determined by the required percentage of available force rather than the absolute force required. It is, therefore, recommended that when using surface EMG to estimate muscle excitation, force should be normalised with respect to its maximum value at each angle.

摘要

本研究的目的是检验关节角度对肱二头肌、肱桡肌和肱三头肌中力与肌电图(EMG)幅度及中位频率之间关系的影响。在等长屈伸过程中,于八个肘关节角度测量表面肌电图,力的水平为最大自主收缩(MVC)的10%至100%。关节角度对MVC力有显著影响,但对所有受试肌肉的MVC肌电图幅度没有影响。肱二头肌和肱三头肌肌电图的中位频率随肌肉长度增加而降低,这可能是由于电极位置的相对变化或肌纤维直径减小所致。在所有角度下,肱二头肌或肱桡肌中肌电图幅度与力之间的关系(相对于每个角度的最大力进行归一化)并不随关节角度变化,在肱三头肌中,在45度至120度屈曲之间也不随关节角度变化。这些结果表明,对每块肌肉的神经兴奋水平由可用力的所需百分比而非所需的绝对力决定。因此,建议在使用表面肌电图估计肌肉兴奋时,力应相对于其在每个角度的最大值进行归一化。

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