首页> 美国卫生研究院文献>The Journal of Neurology and Psychopathology >High-voltage stimulation over the human spinal cord: sources of latency variation.
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High-voltage stimulation over the human spinal cord: sources of latency variation.

机译:人体脊髓的高压刺激:潜伏期变化的来源。

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摘要

Percutaneous electrical stimuli (up to 600 V) were applied over the cervical spinal cord to evoke responses in the biceps brachii and thenar muscles. Cathodal stimulation over the C7 spinous process was more effective than anodal stimulation or stimulation over the C5 or C3 spinous process. As the stimulus intensity was increased, the response amplitude increased and the latency decreased. When progressively higher levels of supramaximal stimuli were delivered the latency often decreased further. The shortest latencies evoked by stimulation over the C7 spinous process were close to the latencies of the responses evoked by supramaximal stimulation near Erb's point. Thus, with this type of stimulation, the site of nerve activation changes with different stimulus intensities. The variability in latency introduced by distal spread of the site of activation will affect measurements of central motor conduction time and should be considered in the diagnostic use of this technique.
机译:在颈脊髓上施加经皮电刺激(最高600 V),以引起肱二头肌和nar肌的反应。 C7棘突的阴极刺激比阳极刺激或C5或C3棘突的刺激更有效。随着刺激强度的增加,反应幅度增加,潜伏期减少。当逐渐交付更高水平的超最大刺激时,潜伏期通常会进一步降低。在C7棘突上刺激引起的最短等待时间与Erb点附近的超最大刺激引起的反应的等待时间接近。因此,在这种刺激下,神经激活的部位会随着不同的刺激强度而变化。激活部位向远端扩散所引起的潜伏期变化将影响对中心运动传导时间的测量,因此在诊断使用该技术时应予以考虑。

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