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经颅磁刺激诱发犬脊髓传出诱发电位

[Efferent spinal evoked potentials by transcranial magnetic stimulation in dog].

作者信息

Kajihara H

机构信息

Department of Orthopaedic Surgery, Juntendo University School of Medicine, Tokyo, Japan.

出版信息

Nihon Seikeigeka Gakkai Zasshi. 1995 Oct;69(10):1050-63.

PMID:8551090
Abstract

We have investigated the utility of transcranial magnetic stimulation for spinal cord monitoring, experimentally in dog. Experiment 1. Spinal cord potentials evoked by transcranial magnetic stimulation (TCMS) were recorded in the epidural space, using a bipolar mapping spinal electrode, and compared with potentials by transcranial electrical stimulation (TCES). Experiment 2. The effect of lateral compression on the spinal cord was observed, recording from 3 bipolar electrodes attached to the bilateral and dorsal midline epidural space. Experiment 3. The potentials evoked by TCMS were compared with the afferent potentials evoked by spinal electrical stimulation after lateral compression of the spinal cord. Efferent spinal cord potentials evoked by TCMS consisted of a 1 st component of high amplitude and short latency and a later polyphasic component with prolonged latency. The 1 st component was stable, and not affected by intravenous anesthesia. The potentials evoked by TCMS were similar to the potentials evoked by mild TCES, and the mean latency of the 1 st component by TCMS was very similar to that by mild TCES. After releasing the lateral compression, the amplitude recorded from the contralateral side of the spinal cord showed better recovery than that from the compression side. In experiment 3, for both potentials after good recovery, the latency was almost completely normalized, but the amplitude gradually decreased after two days. When there was relatively good recovery in the potentials by magnetic stimulation, the hind limbs resumed normal function. However when there was poor recovery in the potentials, the hind limbs showed a poor functional recovery. From these findings, we concluded that the potentials evoked by TCMS seem to reflect the function of the posterolateral portion of the spinal cord. These potentials were therefore a good indicator for monitoring the motor function of the spinal cord.

摘要

我们已经在犬类动物身上通过实验研究了经颅磁刺激用于脊髓监测的效用。实验1:使用双极标测脊髓电极在硬膜外间隙记录经颅磁刺激(TCMS)诱发的脊髓电位,并与经颅电刺激(TCES)诱发的电位进行比较。实验2:通过连接到双侧和背侧中线硬膜外间隙的3个双极电极进行记录,观察脊髓侧方压迫的影响。实验3:在脊髓侧方压迫后,将TCMS诱发的电位与脊髓电刺激诱发的传入电位进行比较。TCMS诱发的传出脊髓电位由一个高振幅、短潜伏期的第一成分和一个潜伏期延长的多相后期成分组成。第一成分稳定,不受静脉麻醉影响。TCMS诱发的电位与轻度TCES诱发的电位相似,TCMS第一成分的平均潜伏期与轻度TCES的非常相似。解除侧方压迫后,脊髓对侧记录到的振幅恢复情况优于压迫侧。在实验3中,对于恢复良好后的两种电位,潜伏期几乎完全恢复正常,但两天后振幅逐渐降低。当磁刺激诱发的电位恢复相对良好时,后肢恢复正常功能。然而,当电位恢复较差时,后肢的功能恢复也较差。根据这些发现,我们得出结论,TCMS诱发的电位似乎反映了脊髓后外侧部分的功能。因此,这些电位是监测脊髓运动功能的良好指标。

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