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首页> 外文期刊>Clinical neurophysiology >Experimental muscle pain changes the spatial distribution of upper trapezius muscle activity during sustained contraction.
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Experimental muscle pain changes the spatial distribution of upper trapezius muscle activity during sustained contraction.

机译:实验性肌肉疼痛会在持续收缩期间改变上斜方肌活动的空间分布。

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摘要

OBJECTIVE: To investigate the effect of local excitation of nociceptive muscle afferents on the spatial distribution of muscle activity. METHODS: Surface electromyographic (EMG) signals were recorded from the upper trapezius muscle of 10 healthy volunteers with a 5 x 13 electrode grid during 90-s isometric contractions before, during, 15 and 30 min after intramuscular injection of hypertonic (painful) or isotonic (non-painful) saline. From the multi-channel EMG recordings, two-dimensional maps of root mean square and mean power frequency were obtained. The centre of gravity of the root mean square map was used to quantify global changes in the spatial distribution of muscle activity. RESULTS: During sustained contractions, average root mean square increased, average mean frequency decreased and the centre of gravity moved cranially. During experimental muscle pain, compared to before injection, the average root mean square decreased and there was a caudal shift of the centre of gravity. Fifteen minutesafter the painful injection the centre of gravity returned to its original position. CONCLUSIONS: Short-term dynamic reorganization of the spatial distribution of muscle activity occurred in response to nociceptive afferent input. SIGNIFICANCE: The study furnishes an extension of the pain adaptation model indicating heterogeneous inhibition of muscle activity.
机译:目的:研究伤害性传入肌肉传入刺激对肌肉活动空间分布的影响。方法:在肌注高渗(疼痛)或等渗后,运动中,运动后,运动后,运动后15分钟和30分钟内,在90 s等距收缩期间,从10个健康志愿者的5 x 13电极网格上记录来自10个健康志愿者的上斜方肌的表面肌电图(EMG)信号。 (非疼痛)生理盐水。从多通道EMG记录中,获得均方根和平均功率频率的二维图。均方根图的重心用于量化肌肉活动空间分布的整体变化。结果:在持续收缩过程中,平均均方根增加,平均均频降低,重心颅骨移动。在实验性肌肉疼痛期间,与注射前相比,平均均方根减小,重心呈尾状偏移。痛苦的注射后十五分钟,重心恢复到原始位置。结论:肌肉活动的空间分布的短期动态重组发生于伤害感受传入输入。意义:该研究提供了疼痛适应模型的扩展,表明对肌肉活动的异质抑制。

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