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Concentric macro electromyography

机译:同心肉眼肌电图

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AbstractConcentric EMG electrodes can record from a few (10 to 15) muscle fibers of a motor unit (MU). Macro EMG, is able to record from the majority of muscle fibers in the MU. The macro EMG electrode uses a single fiber action potential (SFAP) on one channel to trigger the time locked cannula (macro) response on the other channel. To study the concentric motor unit action potential (MUAP), alongside the macro potential, we built a needle electrode combining concentric and macro recording surfaces. The study of 240 motor units in 10 healthy subjects with the single fiber (SF macro) and concentric macro (conmac) electrodes revealed no significant differences between macro potentials areas and amplitudes obtained with either electrode. The ability to study a small and a large section of the motor unit simultaneously offers insights into the local or global nature of motor unit changes not otherwise available to the electromyographer. It also reveals which concentric parameters correlate best with the macro potential and, can even be of great help with the newer EMG signal decomposition techniques; by identifying each motor unit by its concentric and macro waveform simultaneously, it will allow for the “making” of these motor units helping to reduce the risk of their misclassification when the concentric MUAP is used al
机译:摘要同心肌电图电极可以记录一个运动单元(MU)的几根(10-15)肌纤维。宏观肌电图,能够记录MU中的大部分肌肉纤维。宏观肌电图电极在一个通道上使用单纤维动作电位 (SFAP) 来触发另一个通道上的时间锁定套管(宏)响应。为了研究同心运动单元动作电位(MUAP)和宏观电位,我们构建了一个结合了同心和宏观记录表面的针电极。使用单纤维(SF macro)和同心 macro(conmac)电极对 10 名健康受试者的 240 个运动单元的研究表明,使用任一电极获得的宏观电位面积和振幅之间没有显着差异。同时研究运动单元的一小部分和大部分的能力提供了对运动单元变化的局部或全局性质的见解,而肌电图师则无法获得。它还揭示了哪些同心参数与宏观电位最相关,甚至对较新的肌电图信号分解技术有很大帮助;通过同时通过其同心波形和宏波形来识别每个电机单元,它将允许“制造”这些电机单元,有助于降低使用同心 MUAP 时错误分类的风险。

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