ter Braack Esther M, de Vos Cecile C, van Putten Michel J A M
Department of Clinical Neurophysiology, MIRA-Institute for Biomedical Technology and Technical Medicine, University of Twente, Carré CR 3.714, P.O. Box 217, 7500 AE, Enschede, The Netherlands,
Brain Topogr. 2015 May;28(3):520-8. doi: 10.1007/s10548-013-0312-z. Epub 2013 Sep 1.
There is growing interest in combining transcranial magnetic stimulation (TMS) with electroencephalography (EEG). Because TMS pulses are accompanied by a clicking sound, it is very likely that part of the response in the EEG consists of an auditory evoked potential (AEP). Different methods have been applied to mask the sound of TMS. However, it is unclear which masking method is most effective in reducing the AEP. In this study we explore the presumed contribution of the AEP to the response and evaluate different ways to mask the TMS clicking sound. Twelve healthy subjects and one completely deaf subject participated in this study. Eight different masking conditions were evaluated in nine hearing subjects. The amplitude of the N100-P180 complex was compared between the different masking conditions. We were not able to completely suppress the N100-P180 when the coil was placed on top of the head. Using an earmuff or exposing the subjects to white or adapted noise caused a small but significant reduction in N100-P180 amplitude, but the largest reduction was achieved when combining a layer of foam, placed between coil and head, with white or adapted noise. The deaf subject also showed a N100-P180 complex. We conclude that both the TMS clicking sound and cortical activation by the magnetic pulse contribute to the N100-P180 amplitude.
将经颅磁刺激(TMS)与脑电图(EEG)相结合的兴趣日益浓厚。由于TMS脉冲会伴随咔哒声,因此脑电图中的部分反应很可能包含听觉诱发电位(AEP)。人们已经应用了不同的方法来掩盖TMS的声音。然而,尚不清楚哪种掩蔽方法在降低AEP方面最有效。在本研究中,我们探讨了AEP对反应的假定贡献,并评估了掩盖TMS咔哒声的不同方法。12名健康受试者和1名完全失聪的受试者参与了本研究。对9名听力正常的受试者评估了8种不同的掩蔽条件。比较了不同掩蔽条件下N100 - P180复合波的幅度。当线圈置于头顶时,我们无法完全抑制N100 - P180。使用耳罩或让受试者暴露于白色噪声或适配噪声中会使N100 - P180幅度有小幅但显著的降低,但当在线圈和头部之间放置一层泡沫并结合白色噪声或适配噪声时,降低幅度最大。失聪受试者也显示出N100 - P180复合波。我们得出结论,TMS咔哒声和磁脉冲引起的皮层激活均对N100 - P180幅度有贡献。