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经颅磁刺激对腿部运动区I1波的主要激活作用。

Predominant activation of I1-waves from the leg motor area by transcranial magnetic stimulation.

作者信息

Terao Y, Ugawa Y, Hanajima R, Machii K, Furubayashi T, Mochizuki H, Enomoto H, Shiio Y, Uesugi H, Iwata N K, Kanazawa I

机构信息

Department of Neurology, Division of Neuroscience, Graduate School of Medicine, University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, Japan.

出版信息

Brain Res. 2000 Mar 17;859(1):137-46. doi: 10.1016/s0006-8993(00)01975-2.

Abstract

We performed transcranial magnetic stimulation (TMS) to elucidate the D- and I-wave components comprising the motor evoked potentials (MEPs) elicited from the leg motor area, especially at near-threshold intensity. Recordings were made from the tibialis anterior muscle using needle electrodes. A figure-of-eight coil was placed so as to induce current in the brain in eight different directions, starting from the posterior-to-anterior direction and rotating it in 45 degrees steps. The latencies were compared with those evoked by transcranial electrical stimulation (TES) and TMS using a double cone coil. Although the latencies of MEPs ranged from D to I3 waves, the most prominent component evoked by TMS at near-threshold intensity represented the I1 wave. With the double cone coil, the elicited peaks always represented I1 waves, and D waves were evoked only at very high stimulus intensities, suggesting a high effectiveness of this coil in inducing I1 waves. Using the figure-of-eight coil, current flowing anteriorly or toward the hemisphere contralateral to the recorded muscle was more effective in eliciting large responses than current flowing posteriorly or toward the ipsilateral hemisphere. The effective directions induced I1 waves with the lowest threshold, whereas the less effective directions elicited I1 and I2 waves with a similar frequency. Higher stimulus intensities resulted in concomitant activation of D through I3 waves with increasing amount of D waves, but still the predominance of I1 waves was apparent. The amount of I waves, especially of I1 waves, was greater than predicted by the hypothesis that TMS over the leg motor area activates the output cells directly, but rather suggests predominant transsynaptic activation. The results accord with those of recent human epidural recordings.

摘要

我们进行了经颅磁刺激(TMS),以阐明由腿部运动区引出的运动诱发电位(MEP)中的D波和I波成分,特别是在接近阈值强度时。使用针电极从胫前肌进行记录。放置一个八字形线圈,以便在大脑中从后向前方向开始,以45度步长旋转,在八个不同方向上诱导电流。将潜伏期与经颅电刺激(TES)和使用双锥线圈的TMS所诱发的潜伏期进行比较。尽管MEP的潜伏期范围从D波到I3波,但在接近阈值强度时,TMS诱发的最突出成分代表I1波。使用双锥线圈时,诱发的峰值始终代表I1波,只有在非常高的刺激强度下才会诱发D波,这表明该线圈在诱发I1波方面具有很高的有效性。使用八字形线圈时,向前或流向与记录肌肉对侧半球的电流比向后或流向同侧半球的电流更有效地诱发大反应。有效方向以最低阈值诱发I1波,而效果较差的方向以相似频率诱发I1波和I2波。更高的刺激强度导致D波到I3波同时激活,D波数量增加,但I1波仍然占主导地位。I波的数量,特别是I1波的数量,大于通过假设腿部运动区的TMS直接激活输出细胞所预测的数量,而是表明主要是经突触激活。这些结果与最近人类硬膜外记录的结果一致。

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