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交感神经刺激对电刺激兔大脑皮质咀嚼区所产生的节律性下颌运动的影响。

Effects of sympathetic stimulation on the rhythmical jaw movements produced by electrical stimulation of the cortical masticatory areas of rabbits.

作者信息

Roatta S, Windhorst U, Djupsjöbacka M, Lytvynenko S, Passatore M

机构信息

Physiology Division, Department of Neuroscience, Medical School, University of Turin, c.so Raffaello 30, 10125 Turin, Italy.

出版信息

Exp Brain Res. 2005 Mar;162(1):14-22. doi: 10.1007/s00221-004-2102-z. Epub 2004 Nov 16.

Abstract

The somatomotor and sympathetic nervous systems are intimately linked. One example is the influence of peripheral sympathetic fibers on the discharge characteristics of muscle spindles. Since muscle spindles play important roles in various motor behaviors, including rhythmic movements, the working hypothesis of this research was that changes in sympathetic outflow to muscle spindles can change rhythmic movement patterns. We tested this hypothesis in the masticatory system of rabbits. Rhythmic jaw movements and EMG activity induced by long-lasting electrical cortical stimulation were powerfully modulated by electrical stimulation of the peripheral stump of the cervical sympathetic nerve (CSN). This modulation manifested itself as a consistent and marked reduction in the excursion of the mandibular movements (often preceded by a transient modest enhancement), which could be attributed mainly to corresponding changes in masseter muscle activity. These changes outlasted the duration of CSN stimulation. In some of the cortically evoked rhythmic jaw movements (CRJMs) changes in masticatory frequency were also observed. When the jaw-closing muscles were subjected to repetitive ramp-and-hold force pulses, the CRMJs changed characteristics. Masseter EMG activity was strongly enhanced and digastric EMG slightly decreased. This change was considerably depressed during CSN stimulation. These effects of CSN stimulation are similar in sign and time course to the depression exerted by sympathetic activity on the jaw-closing muscle spindle discharge. It is suggested that the change in proprioceptive information induced by an increase in sympathetic outflow (a) has important implications even under normal conditions for the control of motor function in states of high sympathetic activity, and (b) is one of the mechanisms responsible for motor impairment under certain pathological conditions such as chronic musculoskeletal head-neck disorders, associated with stress conditions.

摘要

躯体运动神经系统和交感神经系统紧密相连。一个例子是外周交感神经纤维对肌梭放电特性的影响。由于肌梭在包括节律性运动在内的各种运动行为中发挥重要作用,本研究的工作假设是,交感神经向肌梭的输出变化会改变节律性运动模式。我们在兔的咀嚼系统中验证了这一假设。由持久的皮层电刺激诱发的节律性下颌运动和肌电图活动受到颈交感神经(CSN)外周残端电刺激的强烈调制。这种调制表现为下颌运动幅度持续且显著减小(通常在之前有短暂适度增强),这主要可归因于咬肌活动的相应变化。这些变化在CSN刺激持续时间之后仍持续存在。在一些皮层诱发的节律性下颌运动(CRJM)中,还观察到咀嚼频率的变化。当下颌闭合肌受到重复的斜坡-保持力脉冲作用时,CRJM的特征发生改变。咬肌肌电图活动强烈增强,二腹肌肌电图活动略有下降。在CSN刺激期间,这种变化明显受到抑制。CSN刺激的这些效应在信号和时间进程上与交感神经活动对下颌闭合肌梭放电的抑制相似。有人提出,交感神经输出增加引起的本体感觉信息变化(a)即使在正常情况下,对于高交感神经活动状态下的运动功能控制也具有重要意义,并且(b)是某些病理状况(如与应激状况相关的慢性肌肉骨骼头颈疾病)下运动功能受损的机制之一。

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