[Changes in the responses of motor units to transcranial magnetic stimulation in patients with multiple sclerosis and stroke].

M Schubert, K R Mills, S J Boniface, A Konstanzer, R Dengler
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Abstract

In multiple sclerosis and stroke the muscle responses to transcranial magnetic stimulation are frequently delayed, reduced in amplitude or absent. To investigate the underlying pathophysiological mechanisms, responses of single motor units to transcranial magnetic stimulation were analysed using peri-stimulus time histograms. The following response patterns were detected: 1. prolongation of latency and duration of the primary peak which occurs in healthy controls 17 to 30 ms after the stimulus and has a duration of 2 to 8 ms, 2. lack of an excitatory response, 3. prolongation of the interval between sub-peaks within the primary peak and 4. multimodal responses. Possible mechanisms for these changes are: reduction and dispersion of conduction velocities in corticospinal axons associated with impaired summation of excitatory post-synaptic potentials at the spinal motoneurone, frequency-dependent or complete conduction block in corticospinal neurones and compensatory activation of other descending motor pathways.

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[多发性硬化症和中风患者运动单元对经颅磁刺激的反应变化]。
在多发性硬化症和中风中,肌肉对经颅磁刺激的反应经常延迟、幅度降低或不存在。为了研究潜在的病理生理机制,我们使用刺激前后时间直方图分析了单个运动单元对经颅磁刺激的反应。检测到以下反应模式:1。健康对照者在刺激后17 ~ 30 ms出现潜伏期延长和初级峰持续时间延长,持续时间为2 ~ 8 ms。2 .缺乏兴奋性反应;主峰内子峰间隔的延长和4。多通道响应。这些变化的可能机制是:与脊髓运动神经元兴奋性突触后电位汇总受损相关的皮质脊髓轴突传导速度的减少和分散,皮质脊髓神经元频率依赖性或完全传导阻滞,以及其他下行运动通路的代偿激活。
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