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肌纤维缩短对表面运动单位电位特征的影响。

Effects of muscle fibre shortening on the characteristics of surface motor unit potentials.

机构信息

Department of Electrical and Electronic Engineering, Universidad Pública de Navarra, Campus de Arrosadía s/n, 31006, Pamplona, Spain,

出版信息

Med Biol Eng Comput. 2014 Feb;52(2):95-107. doi: 10.1007/s11517-013-1112-z. Epub 2013 Oct 30.

Abstract

Traditionally, studies dealing with muscle shortening have concentrated on assessing its impact on conduction velocity, and to this end, electrodes have been located between the end-plate and tendon regions. Possible morphologic changes in surface motor unit potentials (MUPs) as a result of muscle shortening have not, as yet, been evaluated or characterized. Using a convolutional MUP model, we investigated the effects of muscle shortening on the shape, amplitude, and duration characteristics of MUPs for different electrode positions relative to the fibre-tendon junction and for different depths of the MU in the muscle (MU-to-electrode distance). It was found that the effects of muscle shortening on MUP morphology depended not only on whether the electrodes were between the end-plate and the tendon junction or beyond the tendon junction, but also on the specific distance to this junction. When the electrodes lie between the end-plate and tendon junction, it was found that (1) the muscle shortening effect is not important for superficial MUs, (2) the sensitivity of MUP amplitude to muscle shortening increases with MU-to-electrode distance, and (3) the amplitude of the MUP negative phase is not affected by muscle shortening. This study provides a basis for the interpretation of the changes in MUP characteristics in experiments where both physiological and geometrical aspects of the muscle are varied.

摘要

传统上,研究肌肉缩短的研究主要集中在评估其对传导速度的影响,为此,电极被定位在终板和肌腱区域之间。肌肉缩短导致表面运动单位电位(MUP)可能发生的形态变化尚未得到评估或描述。使用卷积 MUP 模型,我们研究了肌肉缩短对 MUP 形状、幅度和持续时间特征的影响,研究了不同电极位置相对于纤维-肌腱连接以及肌肉中 MU 的不同深度(MU 与电极之间的距离)的影响。结果发现,肌肉缩短对 MUP 形态的影响不仅取决于电极是否位于终板和肌腱连接之间,还取决于与该连接的特定距离。当电极位于终板和肌腱连接之间时,研究发现:(1)对于浅层 MU,肌肉缩短的影响不重要;(2)MUP 幅度对肌肉缩短的敏感性随着 MU 与电极之间的距离增加而增加;(3)MUP 负相的幅度不受肌肉缩短的影响。这项研究为解释肌肉的生理和几何方面发生变化时 MUP 特征的变化提供了依据。

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