首页> 外文期刊>Journal of Neurophysiology >Preferential distribution of nociceptive input to motoneurons with muscle units in the cranial portion of the upper trapezius muscle
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Preferential distribution of nociceptive input to motoneurons with muscle units in the cranial portion of the upper trapezius muscle

机译:上斜方肌颅部肌肉单元神经元伤害感受输入的优先分布

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摘要

Pain is associated with changes in the neural drive to muscles. For the upper trapezius muscle, surface electromyography (EMG) recordings have indicated that acute noxious stimulation in either the cranial or the caudal region of the muscle leads to a relative decrease in muscle activity in the cranial region. It is, however, not known if this adaption reflects different recruitment thresholds of the upper trapezius motor units in the cranial and caudal region or a nonuniform nociceptive input to the motor units of both regions. This study investigated these potential mechanisms by direct motor unit identification. Motor unit activity was investigated with high-density surface EMG signals recorded from the upper trapezius muscle of 12 healthy volunteers during baseline, control (intramuscular injection of isotonic saline), and painful (hypertonic saline) conditions. The EMG was decomposed into individual motor unit spike trains. Motor unit discharge rates decreased significantly from control to pain conditions by 4.0 +/- 3.6 pulses/s (pps) in the cranial region but not in the caudal region (1.4 +/- 2.8 pps; not significant). These changes were compatible with variations in the synaptic input to the motoneurons of the two regions. These adjustments were observed, irrespective of the location of noxious stimulation. These results strongly indicate that the nociceptive synaptic input is distributed in a nonuniform way across regions of the upper trapezius muscle.
机译:疼痛与肌肉神经驱动的变化有关。对于上斜方肌,表面肌电图(EMG)记录表明,肌肉的颅骨或尾巴区域中的急性有害刺激会导致颅骨区域中的肌肉活动相对减少。但是,尚不知道这种适应是否反映出颅骨和尾区的上斜方肌运动单元的不同募集阈值或两个区域的运动单元的伤害感受输入不均匀。本研究通过直接的电机单元识别研究了这些潜在的机制。在基线,对照(肌肉注射等渗盐水)和疼痛(高渗盐水)条件下,使用12位健康志愿者的上斜方肌记录的高密度表面EMG信号研究了运动单位的活动。肌电图被分解成单独的电动机单元峰值列车。从控制状态到疼痛状态,运动单位的放电速度在颅骨区域以4.0 +/- 3.6脉冲/秒(pps)显着降低,而在尾巴区域则没有下降(1.4 +/- 2.8 pps;不显着)。这些变化与两个区域的运动神经元的突触输入的变化兼容。不管有害刺激的位置如何,都可以观察到这些调节。这些结果强烈表明,伤害感受性突触输入以不均匀的方式分布在上斜方肌的各个区域。

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