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个体运动单位在人类肱二头肌中产生的表面动作电位的空间分布。

Spatial distribution of surface action potentials generated by individual motor units in the human biceps brachii muscle.

机构信息

Department of Electrical and Electronic Engineering, Public University of Navarra, 31006 Pamplona, Spain.

出版信息

J Electromyogr Kinesiol. 2013 Aug;23(4):766-77. doi: 10.1016/j.jelekin.2013.03.011. Epub 2013 Apr 22.

DOI:10.1016/j.jelekin.2013.03.011
PMID:23619102
Abstract

This study analyses the spatial distribution of individual motor unit potentials (MUPs) over the skin surface and the influence of motor unit depth and recording configuration on this distribution. Multichannel surface (13×5 electrode grid) and intramuscular (wire electrodes inserted with needles of lengths 15 and 25mm) electromyographic (EMG) signals were concurrently recorded with monopolar derivations from the biceps brachii muscle of 10 healthy subjects during 60-s isometric contractions at 20% of the maximum torque. Multichannel monopolar MUPs of the target motor unit were obtained by spike-triggered averaging of the surface EMG. Amplitude and frequency characteristics of monopolar and bipolar MUPs were calculated for locations along the fibers' direction (longitudinal), and along the direction perpendicular (transverse) to the fibers. In the longitudinal direction, monopolar and bipolar MUPs exhibited marked amplitude changes that extended for 16-32mm and 16-24mm over the innervation and tendon zones, respectively. The variation of monopolar and bipolar MUP characteristics was not symmetrical about the innervation zone. Motor unit depth had a considerable influence on the relative longitudinal variation of amplitude for monopolar MUPs, but not for bipolar MUPs. The transverse extension of bipolar MUPs ranged between 24 and 32mm, whereas that of monopolar MUPs ranged between 72 and 96mm. The mean power spectral frequency of surface MUPs was highly dependent on the transverse electrode location but not on depth. This study provides a basis for the interpretation of the contribution of individual motor units to the interference surface EMG signal.

摘要

本研究分析了个体运动单位电位(MUPs)在皮肤表面的空间分布,以及运动单位深度和记录配置对这种分布的影响。在 10 名健康受试者的肱二头肌进行 60 秒 20%最大扭矩等长收缩期间,同时记录了多通道表面(13×5 电极网格)和肌内(插入长度为 15 和 25mm 的针的线电极)肌电图(EMG)信号。通过表面 EMG 的尖峰触发平均获得目标运动单位的多通道单极 MUP。计算了单极和双极 MUP 在纤维方向(纵向)和垂直于纤维方向(横向)上的位置的幅度和频率特性。在纵向方向上,单极和双极 MUP 表现出明显的幅度变化,在神经支配和肌腱区域分别延伸 16-32mm 和 16-24mm。单极和双极 MUP 特征的变化在神经支配区不对称。运动单位深度对单极 MUP 幅度的相对纵向变化有很大影响,但对双极 MUP 没有影响。双极 MUP 的横向扩展范围在 24 和 32mm 之间,而单极 MUP 的横向扩展范围在 72 和 96mm 之间。表面 MUP 的平均功率谱频率高度依赖于横向电极位置,但不依赖于深度。本研究为解释个体运动单位对干扰表面 EMG 信号的贡献提供了基础。

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