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Cortical brain states and corticospinal synchronization influence TMS-evoked motor potentials

机译:皮质大脑状态和皮质脊髓同步影响TMS诱发的运动电位

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Transcranial magnetic stimulation (TMS) influences cortical processes. Recent findings indicate, however, that, in turn, the efficacy of TMS depends on the state of ongoing cortical oscillations. Whereas power and phase of electro-myographic (EMG) activity recorded from the hand muscles as well as neural synchrony between cortex and hand muscles are known to iniuence the effect of TMS, to date, no study has shown an influence of the phase of cortical oscillations during wakefulness. We applied single-pulse TMS over the motor cortex and recorded motor-evoked potentials along with the electroencephalogram (EEG) and EMG. We correlated phase and power of ongoing EEG and EMG signals with the motor-evoked potential (MEP) amplitude. We also investigated the functional connectivity between cortical and hand muscle activity (corticomuscular coherence) with the MEP amplitude. EEG and EMG power and phase in a frequency band around 18 Hz correlated with the MEP amplitude. High beta-band (~34 Hz) corticomuscular coherence exhibited a positive linear relationship with the MEP amplitude, indicating that strong synchrony between cortex and hand muscles at the moment when TMS is applied entails large MEPs. Improving upon previous studies, we demonstrate a clear dependence of TMS-induced motor effects on the state of ongoing EEG phase and power fluctuations. We conclude that not only the sampling of incoming information but also the susceptibility of cortical communication flow depends cyclically on neural phase.
机译:经颅磁刺激(TMS)影响皮质过程。然而,最近的发现表明,TMS的功效反过来取决于进行中的皮质振荡的状态。已知从手部肌肉记录的肌电图(EMG)活动的功率和相位以及皮质与手部肌肉之间的神经同步会影响TMS的作用,但迄今为止,尚无研究显示皮质相的影响清醒时的振荡。我们在运动皮层上应用了单脉冲TMS,并记录了脑电图(EEG)和EMG的运动诱发电位。我们将正在进行的EEG和EMG信号的相位和功率与电机诱发电位(MEP)幅度相关联。我们还研究了具有MEP振幅的皮层和手部肌肉活动(皮层相干性)之间的功能连通性。 18 Hz左右频带中的EEG和EMG功率和相位与MEP振幅相关。高β波段(〜34 Hz)的皮质/细胞相干性与MEP振幅呈正线性关系,表明在应用TMS时皮质与手部肌肉之间的强同步性需要较大的MEP。通过对先前研究的改进,我们证明了TMS诱导的运动效应对正在进行的EEG相位和功率波动状态的明确依赖性。我们得出的结论不仅是传入信息的采样,而且皮层通讯流的敏感性周期性地取决于神经阶段。

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