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[低能量氦氖激光对脊髓运动神经细胞的影响]

[Influence of low energy He-Ne laser on spinal motor nerve cell].

作者信息

Shi K, Lu R, Xu X

机构信息

Institute of Orthopedics of PLA, Fourth Military Medical University, Xi'an.

出版信息

Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi. 1997 Jan;11(1):10-3.

PMID:9867942
Abstract

The object of this experimental study was to investigate the influence of low-energy He-Ne laser on the motor nerve cells of the spinal cord. The experimental study included as follws: (1) Four rabbits were used in this experiment. The L5-6 spinal cord segment was irradiated by He-Ne laser percutaneously, the nerve velocity of the comon peroneal nerve was measured in order to determine the function of the spinal motor nerve cells when the peripheral nerve was intact. (2) The common peroneal nerve was transected on one side wothout repair, two weeks after laser irradiation, the grey mater of the spinal cord of L5-6 segment was procured for electronic microscopic examination. (3) The common peroneal nerve on the contralateral side was transected and followed by end-to-end anastomosis, and laser irradiation was done on the same spinal cord segment. Two weeks after irradiation, the nerve velocity of the common peroneal nerve and the toe expanding test were investigated. The results were: (1) the He-Ne laser can influence the spinal motor nerve cells function as expressed by latent rate when the peripherial nerve is intact. i.e. the nerve velocity is slower than mormal, and the amplitude is markedly decreared. (2) the change of the microstructure of the spinal motor nerve cells is comparatively slight in the 10 and 15 minutes groups. (3) the recovery of the nerve velocity and the toe expansion are more earlier in the 15 min. group. In short, the low-energy He-Ne laser can influence the function of the spinal motor nerve cells.

摘要

本实验研究的目的是探讨低能量氦氖激光对脊髓运动神经细胞的影响。实验研究如下:(1)本实验用4只家兔。经皮对L5 - 6脊髓节段进行氦氖激光照射,测量腓总神经的神经速度,以确定外周神经完整时脊髓运动神经细胞的功能。(2)一侧切断腓总神经不进行修复,激光照射两周后,获取L5 - 6节段脊髓灰质进行电子显微镜检查。(3)切断对侧腓总神经并进行端端吻合,对同一脊髓节段进行激光照射。照射两周后,检测腓总神经的神经速度和足趾伸展试验。结果显示:(1)当外周神经完整时,氦氖激光可通过潜伏期影响脊髓运动神经细胞功能,即神经速度比正常慢,波幅明显降低。(2)10分钟组和15分钟组脊髓运动神经细胞的微观结构变化相对较小。(3)15分钟组神经速度和足趾伸展的恢复更早。总之,低能量氦氖激光可影响脊髓运动神经细胞的功能。

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