首页> 外文期刊>Clinical neurophysiology >Experimental muscle pain decreases voluntary EMG activity but does not affect the muscle potential evoked by transcutaneous electrical stimulation.
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Experimental muscle pain decreases voluntary EMG activity but does not affect the muscle potential evoked by transcutaneous electrical stimulation.

机译:实验性肌肉疼痛会降低自愿性EMG活动,但不会影响经皮电刺激诱发的肌肉电位。

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摘要

OBJECTIVE: The aim of this human study was to investigate if voluntary EMG activity and supra-maximal M-wave are affected by injection of hypertonic saline to experimentally induce muscle pain. METHODS: Surface EMG signals were recorded with an electrode array from the tibialis anterior muscle of 12 subjects. Two sets of 6 contractions, 3 electrically elicited and 3 voluntary (30% of the maximal force), alternated, were performed with each leg. During the second set of 6 contractions, hypertonic (painful; right leg) or isotonic (non-painful; left leg) saline was injected 3 times (0.2, 0.5, 0.9 ml), separated by 140 s, into the tibialis anterior. RESULTS: In the voluntary contractions, EMG average rectified value (ARV) significantly decreased (mean+/-SE, 13.2 +/- 4.2%) with increasing pain, although the exerted torque was unaltered. Conduction velocity (CV) (4.2 +/- 0.2 and 4.4 +/- 0.3 m/s, right and left leg, respectively) and mean power spectral frequency (MPF) (119.0 +/- 8.4 and 119.5+/-8.9 Hz) were not affected by the injection of hypertonic saline. In the electrically elicited contractions, M-wave CV (4.6 +/- 0.3 and 4.7 +/- 0.2 m/s), ARV (748.6 +/- 101.8 and 822.3 +/- 104.4 microV), and MPF (72.0+/-5.1 and 76.9+/-4.8 Hz) did not change with pain. CONCLUSIONS: Injection of hypertonic saline did not change muscle fiber conduction velocity or impaire neuromuscular transmission. The decrease in voluntary EMG activity with injection of hypertonic saline was thus due to central factors. SIGNIFICANCE: The injection of hypertonic saline provides a model for exciting nociceptive afferents without affecting muscle fiber electrophysiological properties.
机译:目的:本人研究的目的是研究注射高渗盐水以实验性诱发肌肉疼痛是否会影响自愿的EMG活动和超最大M波。方法:用电极阵列从12名受试者的胫骨前肌记录表面肌电信号。每条腿交替进行两组6次收缩,分别进行3次电刺激和3次自发(最大力的30%)。在第二组6次收缩期间,向胫骨前肌注射3次(0.2、0.5、0.9 ml)高渗(疼痛;右腿)或等渗(非疼痛;左腿)盐水,共140 s,共3次。结果:在自愿性收缩中,尽管施加的扭矩没有改变,但肌电平均矫正值(ARV)随疼痛的增加而显着降低(平均+/- SE,13.2 +/- 4.2%)。传导速度(CV)(右腿和左腿分别为4.2 +/- 0.2和4.4 +/- 0.3 m / s)和平均功率谱频率(MPF)(119.0 +/- 8.4和119.5 +/- 8.9 Hz)不受高渗盐水注射的影响。在电诱发的收缩中,M波CV(4.6 +/- 0.3和4.7 +/- 0.2 m / s),ARV(748.6 +/- 101.8和822.3 +/- 104.4 microV)和MPF(72.0 +/- 5.1和76.9 +/- 4.8 Hz)没有随疼痛而变化。结论:注射高渗盐水不会改变肌纤维的传导速度或不影响神经肌肉的传递。因此,注射高渗盐水导致自愿性EMG活性降低是由于中心因素。意义:高渗生理盐水的注射提供了一种刺激刺激性伤害感受传入而不影响肌纤维电生理特性的模型。

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