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经颅磁刺激初级感觉皮层诱导的半球间抑制

Interhemispheric Inhibition Induced by Transcranial Magnetic Stimulation Over Primary Sensory Cortex.

作者信息

Iwata Yasuyuki, Jono Yasutomo, Mizusawa Hiroki, Kinoshita Atsushi, Hiraoka Koichi

机构信息

Graduate School of Comprehensive Rehabilitation, Osaka Prefecture University Habikino, Japan.

College of Health and Human Sciences, Osaka Prefecture University Habikino, Japan.

出版信息

Front Hum Neurosci. 2016 Aug 31;10:438. doi: 10.3389/fnhum.2016.00438. eCollection 2016.

Abstract

The present study investigated whether the long-interval interhemispheric inhibition (LIHI) is induced by the transcranial magnetic stimulation over the primary sensory area (S1-TMS) without activation of the conditioning side of the primary motor area (M1) contributing to the contralateral motor evoked potential (MEP), whether the S1-TMS-induced LIHI is dependent on the status of the S1 modulated by the tactile input, and whether the pathways mediating the LIHI are different from those mediating the M1-TMS-induced LIHI. In order to give the TMS over the S1 without eliciting the MEP, the intensity of the S1-TMS was adjusted to be the sub-motor-threshold level and the trials with the MEP response elicited by the S1-TMS were discarded online. The LIHI was induced by the S1-TMS given 40 ms before the test TMS in the participants with the attenuation of the tactile perception of the digit stimulation (TPDS) induced by the S1-TMS, indicating that the LIHI is induced by the S1-TMS without activation of the conditioning side of the M1 contributing to the contralateral MEP in the participants in which the pathways mediating the TPDS is sensitive to the S1-TMS. The S1-TMS-induced LIHI was positively correlated with the attenuation of the TPDS induced by the S1-TMS, indicating that the S1-TMS-induced LIHI is dependent on the effect of the S1-TMS on the pathways mediating the TPDS at the S1. In another experiment, the effect of the digit stimulation given before the conditioning TMS on the S1- or M1-TMS-induced LIHI was examined. The digit stimulation produces tactile input to the S1 causing change in the status of the S1. The S1-TMS-induced LIHI was enhanced when the S1-TMS was given in the period in which the tactile afferent volley produced by the digit stimulation just arrived at the S1, while the LIHI induced by above-motor-threshold TMS over the contralateral M1 was not enhanced by the tactile input. Thus, the S1-TMS-induced LIHI is dependent on the status of the S1 modulated by the tactile input, and the pathways mediating the sub-motor-threshold S1-TMS-induced LIHI are not the same as the pathways mediating the above-motor-threshold M1-TMS-induced LIHI.

摘要

本研究调查了经颅磁刺激初级感觉区(S1-TMS)在不激活对侧运动诱发电位(MEP)的初级运动区(M1)的条件侧的情况下是否能诱导长间隔半球间抑制(LIHI),S1-TMS诱导的LIHI是否依赖于由触觉输入调制的S1的状态,以及介导LIHI的通路是否与介导M1-TMS诱导的LIHI的通路不同。为了在不诱发MEP的情况下对S1进行经颅磁刺激,将S1-TMS的强度调整为低于运动阈值水平,并在线丢弃由S1-TMS诱发MEP反应的试验。在因S1-TMS诱发手指刺激触觉感知减弱(TPDS)的参与者中,在测试TMS前40毫秒给予S1-TMS可诱导LIHI,这表明在介导TPDS的通路对S1-TMS敏感的参与者中,S1-TMS在不激活对侧MEP的M1条件侧的情况下可诱导LIHI。S1-TMS诱导的LIHI与S1-TMS诱发的TPDS减弱呈正相关,表明S1-TMS诱导的LIHI依赖于S1-TMS对S1处介导TPDS的通路的影响。在另一项实验中,研究了在条件TMS之前给予手指刺激对S1-或M1-TMS诱导的LIHI的影响。手指刺激向S1产生触觉输入,导致S1状态发生变化。当在手指刺激产生的触觉传入冲动刚到达S1的时间段内给予S1-TMS时,S1-TMS诱导的LIHI增强,而对侧M1上高于运动阈值的TMS诱导的LIHI不会因触觉输入而增强。因此,S1-TMS诱导的LIHI依赖于由触觉输入调制的S1的状态,并且介导低于运动阈值的S1-TMS诱导的LIHI的通路与介导高于运动阈值的M1-TMS诱导的LIHI的通路不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6ca/5006631/897ab923a930/fnhum-10-00438-g0001.jpg

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