Paus T, Sipila P K, Strafella A P
Montreal Neurological Institute, McGill University, Montreal, Quebec H3A 2B4, Canada.
J Neurophysiol. 2001 Oct;86(4):1983-90. doi: 10.1152/jn.2001.86.4.1983.
Using multichannel electroencephalography (EEG), we investigated temporal dynamics of the cortical response to transcranial magnetic stimulation (TMS). TMS was applied over the left primary motor cortex (M1) of healthy volunteers, intermixing single suprathreshold pulses with pairs of sub- and suprathreshold pulses and simultaneously recording EEG from 60 scalp electrodes. Averaging of EEG data time locked to the onset of TMS pulses yielded a waveform consisting of a positive peak (30 ms after the pulse P30), followed by two negative peaks [at 45 (N45) and 100 ms]. Peak-to-peak amplitude of the P30-N45 waveform was high, ranging from 12 to 70 microV; in most subjects, the N45 potential could be identified in single EEG traces. Spectral analysis revealed that single-pulse TMS induced a brief period of synchronized activity in the beta range (15-30 Hz) in the vicinity of the stimulation site; again, this oscillatory response was apparent not only in the EEG averages but also in single traces. Both the N45 and the oscillatory response were lower in amplitude in the 12-ms (but not 3-ms) paired-pulse trials, compared with the single-pulse trials. These findings are consistent with the possibility that TMS applied to M1 induces transient synchronization of spontaneous activity of cortical neurons within the 15- to 30-Hz frequency range. As such, they corroborate previous studies of cortical oscillations in the motor cortex and point to the potential of the combined TMS/EEG approach for further investigations of cortical rhythms in the human brain.
我们使用多通道脑电图(EEG)研究了皮层对经颅磁刺激(TMS)反应的时间动态变化。对健康志愿者的左侧初级运动皮层(M1)施加TMS,将单个阈上脉冲与成对的阈下和阈上脉冲混合,并同时从60个头皮电极记录EEG。对与TMS脉冲起始时间锁定的EEG数据进行平均,得到一个波形,该波形由一个正峰(脉冲后30毫秒,P30),随后是两个负峰[分别在45(N45)和100毫秒]组成。P30 - N45波形的峰峰值幅度较高,范围为12至70微伏;在大多数受试者中,N45电位可在单个EEG轨迹中识别。频谱分析表明,单脉冲TMS在刺激部位附近诱发了β频段(15 - 30赫兹)的一段短暂同步活动;同样,这种振荡反应不仅在EEG平均值中明显,在单个轨迹中也很明显。与单脉冲试验相比,在12毫秒(而非3毫秒)的成对脉冲试验中,N45和振荡反应的幅度均较低。这些发现与以下可能性一致,即应用于M1的TMS在15至30赫兹频率范围内诱发了皮层神经元自发活动的短暂同步。因此,它们证实了先前关于运动皮层皮层振荡的研究,并指出了TMS/EEG联合方法在进一步研究人类大脑皮层节律方面的潜力。