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介导 TMS 诱导的人类短潜伏期皮质内抑制的皮质网络的非线性输入-输出特性。

Non-linear input-output properties of the cortical networks mediating TMS-induced short-interval intracortical inhibition in humans.

机构信息

Er6 UPMC Univ. Paris 06, Service MPR, Hôpital Pitié-Salpêtrière, 47, bd de l'Hôpital, F-75005 Paris Cedex 13, France.

出版信息

Eur J Neurosci. 2012 Feb;35(3):457-67. doi: 10.1111/j.1460-9568.2011.07961.x.

DOI:10.1111/j.1460-9568.2011.07961.x
PMID:22288482
Abstract

The effects of transcranial magnetic stimulation (TMS) on post-discharge histograms of single motor units in the first dorsal interosseous have been tested to estimate the input-output properties of cortical network-mediating short-interval intracortical inhibition (SICI) to pyramidal cells of the human primary motor cortex. SICI was studied using the paired pulse paradigm (2-ms interval): test TMS intensity was varied to evoke peaks of different size in post-discharge histograms, reflecting the corticospinal excitatory post-synaptic potential in the relevant spinal motoneuron, and conditioning TMS intensity was constant (0.6 × the resting motor threshold). Navigated brain stimulation was used to monitor the coil position. A linear relationship was observed between test peak size and test TMS intensity, reflecting linear summation of excitatory inputs induced by TMS. SICI was estimated using the difference between conditioned (produced by the paired pulses) and test peaks (produced by the isolated test pulse). Although the conditioning intensity (activating cortical inhibitory interneurons mediating SICI) was kept constant throughout the experiments, the level of SICI changed with the test peak size, in a non-linear fashion, suggesting that low-threshold cortical neurons (excitatory interneurons/pyramidal cells) are less sensitive to SICI than those of higher threshold. These findings provide the first experimental evidence, under physiological conditions, for non-linear input/output properties of a complex cortical network. Consequently, changes in the recruitment gain of cortical inhibitory interneurons can greatly modify the excitability of pyramidal cells and their response to afferent inputs.

摘要

经颅磁刺激(TMS)对第一背间骨间肌单个运动单位放电后直方图的影响已被测试,以估计皮层网络介导的短程皮质内抑制(SICI)对人类初级运动皮层锥体细胞的输入-输出特性。使用成对脉冲范式(2ms 间隔)研究 SICI:测试 TMS 强度变化以在放电后直方图中诱发出不同大小的峰值,反映相关脊髓运动神经元中的皮质脊髓兴奋性突触后电位,而条件 TMS 强度保持不变(静息运动阈值的 0.6 倍)。导航脑刺激用于监测线圈位置。测试峰值大小与测试 TMS 强度之间存在线性关系,反映了 TMS 诱导的兴奋性输入的线性总和。使用条件(由成对脉冲产生)和测试峰(由单独的测试脉冲产生)之间的差异来估计 SICI。尽管在整个实验过程中保持条件强度(激活介导 SICI 的皮质抑制性中间神经元)不变,但 SICI 的水平以非线性方式随测试峰值大小而变化,这表明低阈值皮质神经元(兴奋性中间神经元/锥体细胞)对 SICI 的敏感性低于高阈值的神经元。这些发现为复杂皮层网络的非线性输入-输出特性提供了首次在生理条件下的实验证据。因此,皮质抑制性中间神经元募集增益的变化可以极大地改变锥体细胞的兴奋性及其对传入输入的反应。

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