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线圈方向对辅助运动前区刺激的影响:一项经颅磁刺激和脑电图联合研究

The Effect of Coil Orientation on the Stimulation of the Pre-Supplementary Motor Area: A Combined TMS and EEG Study.

作者信息

Casula Elias P, Leodori Giorgio, Ibáñez Jaime, Benussi Alberto, Rawji Vishal, Tremblay Sara, Latorre Anna, Rothwell John C, Rocchi Lorenzo

机构信息

Non-Invasive Brain Stimulation Unit, IRCCS Santa Lucia Foundation, 00179 Rome, Italy.

Department of Clinical and Movement Neurosciences, UCL Queen Square Institute of Neurology, University College London, London WC1N 3BG, UK.

出版信息

Brain Sci. 2022 Oct 6;12(10):1358. doi: 10.3390/brainsci12101358.

Abstract

Studies using transcranial magnetic stimulation (TMS) have demonstrated the importance of direction and intensity of the applied current when the primary motor cortex (M1) is targeted. By varying these, it is possible to stimulate different subsets of neural elements, as demonstrated by modulation of motor evoked potentials (MEPs) and motor behaviour. The latter involves premotor areas as well, and among them, the presupplementary motor area (pre-SMA) has recently received significant attention in the study of motor inhibition. It is possible that, similar to M1, different neuronal populations can be activated by varying the direction and intensity of TMS; however, the absence of a direct electrophysiological outcome has limited this investigation. The problem can be solved by quantifying direct cortical responses by means of combined TMS and electroencephalography (TMS-EEG). We investigated the effect of variable coil orientations (0°, 90°, 180° and 270°) and stimulation intensities (100%, 120% and 140% of resting motor threshold) on local mean field potential (LMFP), transcranial evoked potential (TEP) peaks and TMS-related spectral perturbation (TRSP) from pre-SMA stimulation. As a result, early and late LMFP and peaks were larger, with the coil handle pointing posteriorly (0°) and laterally (90°). This was true also for TRSP in the β-γ range, but, surprisingly, θ-α TRSP was larger with the coil pointing at 180°. A 90° orientation activated the right M1, as shown by MEPs elicitation, thus limiting the spatial specificity of the stimulation. These results suggest that coil orientation and stimulation intensity are critical when stimulating the pre-SMA.

摘要

使用经颅磁刺激(TMS)的研究表明,当以初级运动皮层(M1)为靶点时,所施加电流的方向和强度非常重要。通过改变这些参数,可以刺激不同的神经元亚群,运动诱发电位(MEP)和运动行为的调制就证明了这一点。后者还涉及运动前区,其中,补充运动前区(pre-SMA)最近在运动抑制研究中受到了广泛关注。与M1类似,通过改变TMS的方向和强度可能激活不同的神经元群体;然而,缺乏直接的电生理结果限制了这一研究。通过结合TMS和脑电图(TMS-EEG)来量化直接皮层反应,可以解决这个问题。我们研究了可变线圈方向(0°、90°、180°和270°)和刺激强度(静息运动阈值的100%、120%和140%)对pre-SMA刺激产生的局部平均场电位(LMFP)、经颅诱发电位(TEP)峰值和TMS相关频谱扰动(TRSP)的影响。结果显示,当线圈手柄指向后方(0°)和侧面(90°)时,早期和晚期LMFP以及峰值更大。β-γ范围内的TRSP也是如此,但令人惊讶的是,当线圈指向180°时,θ-α TRSP更大。如MEP诱发所示,90°方向激活了右侧M1,从而限制了刺激的空间特异性。这些结果表明,刺激pre-SMA时,线圈方向和刺激强度至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a1e/9599651/c51dcae03fdb/brainsci-12-01358-g001.jpg

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