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Longitudinal and transverse propagation of surface mechanomyographic waves generated by single motor unit activity

机译:由单个电机单元活动产生的表面机电正则波的纵向和横向传播

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摘要

Multi-channel surface mechanomyographic (MMG) signals generated by individual motor units were analyzed to investigate whether the surface mechanical waves induced by fiber contraction propagate over the skin surface. The MMG signals were recorded from the tibialis anterior muscle of ten healthy subjects with 13 uniaxial accelerometers, located both along and transverse to the fiber direction. Intramuscular electromyographic signals served to identify individual motor units whose action potentials were used to trigger the averaging of the MMG signals. The spike-triggered averaged MMG had similar characteristics in locations along the longitudinal direction; however, its amplitude decreased along the transverse direction. Moreover, the time-to-positive peak increased along the transverse direction, indicating a transverse wave propagation with a velocity of 2.4 ± 1.1 m/s in the linear direction. The results support the hypothesis that the MMG signal mainly originates from muscle fiber displacement underlining a bending mode due to contraction and provide the basis for interpreting the interference MMG in relation to motor unit activity.
机译:分析了各个电机单元生成的多通道表面机电图(MMG)信号,以研究纤维收缩引起的表面机械波是否在皮肤表面传播。 MMG信号是从十名健康受试者的胫骨前肌沿13个单轴加速度计记录下来的,这些单轴加速度计沿纤维方向和垂直于纤维方向定位。肌内肌电信号用于识别单个运动单位,其动作电位用于触发MMG信号的平均。尖峰触发的平均MMG在沿纵向的位置上具有相似的特性;但是,其幅度沿横向减小。此外,时间到正峰沿横向方向增加,表明横向波以线性方向以2.4±1.1 m / s的速度传播。该结果支持以下假设:MMG信号主要源自因收缩而在弯曲模式下突出的肌肉纤维位移,并为解释与运动单位活动有关的干扰MMG提供了基础。

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