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Inhibitory influence of the ipsilateral motor cortex on responses to stimulation of the human cortex and pyramidal tract

机译:同侧运动皮层对刺激人类皮层和锥体束的反应的抑制作用

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class="enumerated" style="list-style-type:decimal">The ability of the primary motor cortex (M1) to modulate motor responses in ipsilateral hand muscles seems to be important for normal motor control and potentially also for recovery after brain lesions. It is not clear which pathways mediate this ipsilateral modulation. Transcallosal connections have been proposed, but are known to be sparse between cortical hand motor representations in primates. The present study was performed to determine whether descending ipsilateral modulation of motor responses might also be mediated below the cortical level in humans.A paired-pulse protocol was used, in which motor-evoked potentials (MEPs) were produced by cortical transcranial magnetic stimulation (cTMS) or by electrical stimulation of the pyramidal tract at the level of the pyramidal decussation (pdTES), in both preactivated and relaxed hand muscles. Paired stimuli were applied at various interstimulus intervals (ISIs) between 2 and 100 ms. The conditioning stimulus (CS) was always magnetic, and delivered to the M1 ipsilateral to the target hand, prior to the test stimulus (TS). The magnetic TS was delivered to the M1 contralateral to the target hand; the electrical TS was applied through electrodes placed over the mastoid process bilaterally. Further experiments included cortical electrical stimulation and H-reflexes. The MEP amplitudes were averaged separately for each ISI and the control condition (no CS), and expressed as a percentage of the unconditioned response.Conditioning stimulation of the ipsilateral M1 resulted in significant inhibition of magnetically evoked MEPs, and also of MEPs produced by pdTES. Inhibition occurred at ISIs between 6 and 50 ms, and was observed in preactivated and relaxed muscles. Higher CS intensities caused greater inhibition of both cTMS- and pdTES-evoked MEPs.While the conditioning effects on magnetically evoked muscle responses could be explained by a transcallosal mechanism, the effects on pdTES-evoked MEPs cannot, because they are elicited subcortically and are therefore not susceptible to inhibitory mechanisms transmitted at the cortico-cortical level.In conclusion, the present results provide novel evidence that the inhibitory influence of the human M1 on ipsilateral hand muscles is to a significant extent mediated below the cortical level, and not only through cortico-cortical transcallosal connections. They point to a concept of inhibitory interaction between the two primary motor cortices that is relayed at multiple levels along the neuroaxis, thus perhaps providing a structurally redundant system which may become important in case of lesions.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 初级运动皮层(M1)调节同侧手部肌肉运动反应的能力对于正常的运动控制和脑损伤后的恢复似乎很重要。尚不清楚哪些途径介导这种同侧调节。已经提出了经call骨连接,但是已知灵长类中的皮质手运动代表之间稀疏。进行本研究是为了确定在人的皮质水平以下是否也可能介导了运动反应的同侧下降调节。 使用了配对脉冲协议,其中将运动诱发电位(MEP)在预先激活和放松的手部肌肉中,通过皮质经颅磁刺激(cTMS)或通过锥体束水平(pdTES)的锥体束电刺激产生。在2到100毫秒之间的各种刺激间隔(ISI)上应用配对的刺激。调节刺激(CS)始终具有磁性,并在测试刺激(TS)之前传递到目标手的同侧M1。磁性TS被传递到目标手的对侧M1;通过两侧放置在乳突上的电极施加电TS。进一步的实验包括皮层电刺激和H反射。将每个ISI和对照条件(无CS)的MEP振幅分别取平均值,并表示为无条件反应的百分比。 对同侧M1的条件刺激会显着抑制磁诱发的MEP,以及pdTES产生的MEP。抑制作用发生在6至50 ms的ISI处,并在预激活和松弛的肌肉中观察到。 CS强度越高,对cTMS和pdTES诱发的MEPs的抑制作用就越大。 虽然调理作用对磁诱发的肌肉反应的调节作用可以通过透声机理来解释,但对pdTES诱发的MEP的影响却不能,因为 总的来说,本研究结果提供了新的证据,表明人类M1对同侧手部肌肉的抑制作用是在很大程度上低于皮层水平介导,而不仅是通过皮层-皮层间的call愈连接。他们指出了沿神经轴在多个水平上传递的两个主要运动皮层之间的抑制性相互作用的概念,因此也许提供了一种结构上冗余的系统,在发生病变时可能变得很重要。

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