[猫不同组皮神经纤维和肌神经纤维刺激时脊髓背髓索纤维的兴奋]。

Neirofiziologiia = Neurophysiology Pub Date : 1992-01-01
V L Shaposhnikov
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引用次数: 0

摘要

电刺激猫皮肤神经和肌肉神经的不同纤维群对灰色背柱纤维动作电位的影响进行了研究,使用针电极在左侧和对侧背柱的L2- L3级进行了记录。背柱的动作电位是由皮神经刺激引起的,其形式比受刺激的肌神经更为复杂。皮神经的无髓纤维与背柱的无髓纤维相连。高阈值A-和c -纤维的激发激活了背柱中传导速度最快的纤维。当刺激皮神经的所有纤维时,背柱记录到传导速度为146 ~ 0.24 m/s的动作电位。结果表明,这种传导速度在背柱一直保持到C7水平。肌神经刺激仅刺激背柱髓鞘纤维,传导速度为90 ~ 2.3 m/s。通过间隔30-300毫秒交替刺激任一神经,我们降低了第二个被刺激神经的动作电位振幅。这可能与脊髓中皮肤神经和肌肉神经输入在同一神经元上的收敛有关。我们认为背柱高阈值皮肤信号的快速传递与快速获取损伤性刺激信息的必要性有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[The excitation of the fibers of the funiculus dorsalis medullae spinalis during the stimulation of different groups of cutaneous and muscle nerve fibers in the cat].

Electric stimulation of various groups of fibres of cutaneous and muscle nerve of cat has been studied for its effect on action potentials in the gray dorsal column fibres, Registration was performed at the level L2--L3 from ipsi- and contralateral dorsal columns, using needle electrodes. Action potentials of dorsal columns, arisen by stimulation of cutaneous nerves, had a more complex form than those of stimulated muscle nerves. Nonmyelinated fibres of a cutaneous nerve are shown to relate to those of dorsal columns. Excitation of high-threshold A- and C-fibres activates the most fast-conducting fibres of dorsal columns. When a stimulus was applied to all fibres of the cutaneous nerve, the action potentials with conduction velocities of 146-0.24 m/s were recorded in dorsal columns. It was shown that such conduction velocities remained in dorsal columns to level C7. Stimulation of muscle nerves excited only myelinic fibres of dorsal columns, the conduction velocities ranging from 90 to 2.3 m/s. By alternating stimulation of either nerve with a 30-300 ms interval we decreased the action potential amplitude of the nerve that was the second to be stimulated. It is likely be related to convergence of the cutaneous and muscle nerve inputs in the spinal cord on the same neurons. A suggestion is made that faster transfer of high-threshold cutaneous signals in dorsal column are associated with the necessity of rapid information about damaging stimulation.

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