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人类诱发脊髓电图的波形特征及空间分布

Wave-form characteristics and spatial distribution of evoked spinal electrogram in man.

作者信息

Shimoji K, Matsuki M, Shimizu H

出版信息

J Neurosurg. 1977 Mar;46(3):304-13. doi: 10.3171/jns.1977.46.3.0304.

Abstract

The evoked spinal electrogram (SEG) in man was recorded from the epidural space, applying the technique of continuous epidural block, and compared with cord dorsum potential (CDP) in wakeful rabbits. Wave-form characteristics of the evoked SEG'S activated by the segmental nerves were almost the same in both cervical and lumbar regions. Somatosensory evoked response from the scalp was clearly demonstrated by stimulation of both the tibial nerve and fifth toe skin, whereas the evoked SEG was produced only by stimulation of the former. This finding might indicate that large nerve fibers are more responsible for producing the evoked SEG. Central latencies to the peaks of the second components of the P2 wave were 29 to 33 and 42 to 48 msec, in cervical and lumbar enlargements, respectively. This probably indicates the presence of a long feedback loop producing the second components. The amplitude of the N1 wave showed a steeper decline along the spinal cord than that of the P2 deflection, indicating between origins of these two components. Polarity of both the N1 and P2 waves became reversed when the recording electrode was situated in the anterior epidural space. The wave-form characteristics of the evoked SEG in man were very similar to those of the CDP in wakeful rabbits.

摘要

采用连续硬膜外阻滞技术,从人的硬膜外间隙记录诱发脊髓电图(SEG),并与清醒兔的脊髓背电位(CDP)进行比较。在颈段和腰段,由节段神经激活的诱发SEG的波形特征几乎相同。刺激胫神经和第五趾皮肤均能清晰显示头皮体感诱发电位,而诱发SEG仅由刺激前者产生。这一发现可能表明大神经纤维对诱发SEG的产生起更大作用。在颈膨大处,P2波第二个成分峰值的中枢潜伏期为29至33毫秒,在腰膨大处为42至48毫秒。这可能表明存在产生第二个成分的长反馈回路。N1波的振幅沿脊髓下降比P2波的偏转更陡,表明这两个成分的起源不同。当记录电极位于硬膜外前间隙时,N1波和P2波的极性均发生反转。人的诱发SEG的波形特征与清醒兔的CDP非常相似。

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