首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Detection of individual motor units of the puborectalis muscle by non-invasive EMG electrode arrays
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Detection of individual motor units of the puborectalis muscle by non-invasive EMG electrode arrays

机译:通过非侵入性EMG电极阵列检测耻骨直肠肌各个运动单位

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Purpose: The purpose of the study was to demonstrate that anatomical features of individual motor units of the puborectalis muscle can be detected with non-invasive electromyography (EMG) and to evaluate differences in electrophysiological properties of the puborectalis muscles in a small group of healthy and pathologic subjects. Methods: Multichannel EMG was recorded by means of a flexible probe applied on the gloved index finger and carrying an array of eight equally spaced (1.15 mm) electrodes. A multichannel EMG amplifier provided seven outputs corresponding to the pairs of adjacent electrodes. Tests were performed in three different positions (dorsal, left and right) over the puborectalis muscle on 20 subjects (nine healthy, seven constipated and four incontinent patients). Motor unit action potentials (MUAPs) generated at the innervation zone of a MU and propagating along the muscle fibers generated repetitive characteristic patterns on the seven output channels allowing identification of anatomical features of the motor units. Results: MUAPs were observed travelling in either one or both directions with the array in dorsal position, and mainly in ventral-to-dorsal direction in either lateral position. MUAP amplitude was lower in constipated and incontinent patients with respect to healthy subjects. The conduction velocity estimated on the identified MUAPs was lower for constipated patients with respect to healthy subjects suggesting different mechanical properties of the active motor units. Conclusions: This technique allows the extraction of relevant information about the anatomical features (innervation zone position and overlapping of motor unit branches) of the puborectalis muscle and its electrophysiological properties and maybe can be applied as an novel methodology for assessing the anorectal function in patients. (C) 2007 Elsevier Ltd. All rights reserved.
机译:目的:研究的目的是证明可以使用非侵入性肌电图(EMG)检测到耻骨直肠肌各个运动单位的解剖特征,并评估一小群健康且健康的耻骨直肠肌的电生理特性的差异。病理科。方法:多通道肌电图通过戴在戴手套的食指上的柔性探头记录,并带有八个等距(1.15 mm)电极阵列。一个多通道EMG放大器提供了对应于成对的相邻电极的七个输出。在20名受试者(九名健康,七名便秘和四名失禁患者)的耻骨直肠肌的三个不同位置(背,左和右)进行了测试。在MU的神经支配区产生并沿肌肉纤维传播的运动单元动作电位(MUAP)在七个输出通道上产生重复的特征模式,从而可以识别运动单元的解剖特征。结果:观察到MUAP在阵列的背侧位置沿一个或两个方向传播,并且在任一侧向位置中主要沿腹-背方向传播。就健康受试者而言,便秘和失禁患者的MUAP幅度较低。相对于健康受试者,便秘患者在已确定的MUAP上估计的传导速度较低,这表明主动运动单位的机械性能有所不同。结论:该技术可以提取有关耻骨直肠肌的解剖特征(神经区域位置和运动单位分支的重叠)及其电生理特性的相关信息,并且可以作为一种评估患者肛门直肠功能的新方法。 (C)2007 Elsevier Ltd.保留所有权利。

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