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Spatial variation of compound muscle action potentials across human gastrocnemius medialis

机译:跨腓肠肌复合肌肉动作电位的空间变化

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摘要

The massed action potential (M wave) elicited through nerve stimulation underpins a wide range of physiological and mechanical understanding of skeletal muscle structure and function. Although systematic approaches have evaluated the effect of different factors on M waves, the effect of the location and distribution of activated fibers within the muscle remains unknown. By detecting M waves from the medial gastrocnemius (MG) of 12 participants with a grid of 128 electrodes, we investigated whether different populations of muscle units have different spatial organization within MG. If populations of muscle units occupy discrete MG regions, current pulses of progressively greater intensities applied to the MG nerve branch would be expected to lead to local changes in M-wave amplitudes. Electrical pulses were therefore delivered at 2 pps, with the current pulse amplitude increased every 10 stimuli to elicit different degrees of muscle activation. The localization of MG response to increases in current intensity was determined from the spatial distribution of M-wave amplitude. Key results revealed that increases in M-wave amplitude were detected somewhat locally, by 10–50% of the 128 electrodes. Most importantly, the electrodes detecting greatest increases in M-wave amplitude were localized at different regions in the grid, with a tendency for greater stimulation intensities to elicit M waves in the more distal MG region. The presented results indicate that M waves recorded locally may not provide a representative MG response, with major implications for the estimation of, e.g., the maximal stimulation levels, the number of motor units, and the onset and normalization in H-reflex studies.
机译:通过神经刺激引起的大规模动作电位(M波)为骨骼肌的结构和功能提供了广泛的生理和机械理解。尽管系统的方法已经评估了不同因素对M波的影响,但是激活纤维在肌肉内的位置和分布的影响仍然未知。通过检测来自12个参与者的内侧腓肠肌(MG)的M波(具有128个电极的网格),我们调查了不同的肌肉单位群体在MG中是否具有不同的空间组织。如果肌肉单位群体占据离散的MG区,则施加到MG神经分支的强度逐渐增大的电流脉冲将导致M波振幅的局部变化。因此,电脉冲以2 pps的速度传递,电流脉冲幅度每10个刺激增加一次,以引起不同程度的肌肉激活。 MG响应电流强度增加的本地化是根据M波振幅的空间分布确定的。关键结果表明,在128个电极中有10%至5​​0%可以局部检测到M波振幅的增加。最重要的是,检测到M波幅度最大增加的电极位于网格中的不同区域,趋向于具有更大的刺激强度,从而在更远的MG区域引发M波。呈现的结果表明,局部记录的M波可能没有提供代表性的MG响应,这对例如最大刺激水平,运动单位的数量以及H反射研究的发作和正常化的估计具有重要意义。

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