Department of Biomedical Engineering and Computational Science (BECS), Aalto University School of Science and Technology, Espoo, Finland.
Neurosci Lett. 2010 Jun 30;478(1):24-8. doi: 10.1016/j.neulet.2010.04.059. Epub 2010 Apr 29.
The purpose of this study was to assess the relationship between peripheral muscle responses (motor evoked potentials, MEP) evoked by transcranial magnetic stimulation (TMS) and the early components of the TMS-evoked EEG response, both of which reflect cortical excitability. Left primary motor cortex of five healthy volunteers was stimulated with 100% of the motor threshold. The relationship between MEP amplitudes and the peak-to-peak amplitudes of the N15-P30 complex of the evoked EEG signal was determined at the single-trial level. MEP and N15-P30 amplitudes were significantly correlated in all five subjects. The results support the view that the amount of direct activation of neurons in M1 evoked by TMS affects both subsequent cortical activation and the activation of the target muscle. Cortical excitability is altered in some neuronal disorders and modulated locally during various tasks. It could thus be used as a marker of the state of health in many cases and as a method to study brain function. The present results improve our understanding of the early components of the TMS-evoked EEG signal, which reflect cortical excitability, and may thus have widespread use in clinical and scientific studies.
本研究旨在评估经颅磁刺激(TMS)诱发的外周肌肉反应(运动诱发电位,MEP)与 TMS 诱发的 EEG 反应的早期成分之间的关系,这两者都反映了皮质兴奋性。使用 100%运动阈值刺激 5 名健康志愿者的左侧初级运动皮层。在单试次水平上确定 MEP 幅度与诱发电 EEG 信号的 N15-P30 复合波的峰-峰幅度之间的关系。在所有 5 名受试者中,MEP 和 N15-P30 幅度均呈显著相关性。结果支持 TMS 诱发的 M1 中神经元直接激活量影响后续皮质激活和靶肌肉激活的观点。皮质兴奋性在某些神经元疾病中发生改变,并在各种任务中局部调节。因此,它可以作为许多情况下健康状况的标志物,并作为研究大脑功能的一种方法。本研究结果提高了我们对反映皮质兴奋性的 TMS 诱发 EEG 信号早期成分的理解,从而可能在临床和科学研究中得到广泛应用。