首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Investigation of motor unit recruitment during stimulated contractions of tibialis anterior muscle
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Investigation of motor unit recruitment during stimulated contractions of tibialis anterior muscle

机译:胫前肌受激收缩过程中运动单位募集的研究

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This work investigated motor unit (MU) recruitment during transcutaneous electrical stimulation (TES) of the tibialis anterior (TA) muscle, using experimental and simulated data. Surface electromyogram (EMG) and torque were measured during electrically-elicited contractions at different current intensities, on eight healthy subjects.EMG detected during stimulation (M-wave) was simulated selecting the elicited MUs on the basis of: (a) the simulated current density distribution in the territory of each MU and (b) the excitation threshold characteristic of the MU. Exerted force was simulated by adding the contribution of each of the elicited MUs. The effects of different fat layer thickness (between 2 and 8. mm), different distributions of excitation thresholds (random excitation threshold, higher threshold for larger MUs or smaller MUs), and different MU distributions within the muscle (random distribution, larger MU deeper in the muscle, smaller MU deeper) on EMG variables and torque were tested.Increase of the current intensity led to a first rapid increase of experimental M-wave amplitude, followed by a plateau. Further increases of the stimulation current determined an increase of the exerted force, without relevant changes of the M-wave. Similar results were obtained in simulations.Rate of change of conduction velocity (CV) and leading coefficient of the second order polynomial interpolating the force vs. stimulation level curve were estimated as a function of increasing current amplitudes. Experimental data showed an increase of estimated CV with increasing levels of the stimulation current (for all subjects) and a positive leading coefficient of force vs. stimulation current curve (for five of eight subjects). Simulations matched the experimental results only when larger MUs were preferably located deeper in the TA muscle (in line with a histochemical study). Marginal effect of MU excitation thresholds was observed, suggesting that MUs closer to the stimulation electrode are recruited first during TES regardless of their excitability.
机译:这项工作使用实验和模拟数据调查了胫骨前(TA)肌肉的经皮电刺激(TES)期间的运动单位(MU)募集。在八位健康受试者的不同电流强度下,在电诱发的收缩期间测量了表面肌电图(EMG)和扭矩。在刺激(M波)期间模拟检测到的EMG,并基于以下条件选择诱发的MU:(a)模拟电流每个MU区域内的密度分布和(b)MU的激励阈值特性。通过添加每个引起的MU的作用来模拟施加的力。不同脂肪层厚度(2至8毫米之间),激发阈值的不同分布(随机激发阈值,较大MU或较小MU的阈值较高)以及肌肉内不同MU分布(随机分布,较大MU较深)的影响在肌内,对肌电图变量和扭矩测试了更小的MU深度)。电流强度的增加导致实验性M波振幅首先快速增加,然后达到平稳。刺激电流的进一步增加确定了施加力的增加,而没有M波的相关变化。在仿真中获得了相似的结果。根据电流幅度的增加,估算了插值力-刺激水平曲线的二阶多项式的传导速度(CV)的变化率和前导系数。实验数据表明,随着刺激电流水平的增加(所有受试者),估计的CV有所增加,并且力的正引导系数与刺激电流的曲线呈正相关(八个受试者中的五个)。只有当较大的MU最好位于TA肌肉的更深处时(与组织化学研究一致),模拟结果才与实验结果相符。观察到MU激励阈值的边际效应,这表明更接近刺激电极的MU在TES期间首先被招募,无论其兴奋性如何。

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