Department of Psychology, New York University, New York, NY, 10003, USA.
Center for Neuroscience, New York University, New York, NY, 10003, USA.
Sci Rep. 2021 Sep 17;11(1):18562. doi: 10.1038/s41598-021-96849-9.
Parieto-occipital alpha rhythms (8-12 Hz) underlie cortical excitability and influence visual performance. Whether the synchrony of intrinsic alpha rhythms in the occipital cortex can be entrained by transcranial magnetic stimulation (TMS) is an open question. We applied 4-pulse, 10-Hz rhythmic TMS to entrain intrinsic alpha oscillators targeting right V1/V2, and tested four predictions with concurrent electroencephalogram (EEG): (1) progressive enhancement of entrainment across time windows, (2) output frequency specificity, (3) dependence on the intrinsic oscillation phase, and (4) input frequency specificity to individual alpha frequency (IAF) in the neural signatures. Two control conditions with an equal number of pulses and duration were arrhythmic-active and rhythmic-sham stimulation. The results confirmed the first three predictions. Rhythmic TMS bursts significantly entrained local neural activity. Near the stimulation site, evoked oscillation amplitude and inter-trial phase coherence (ITPC) were increased for 2 and 3 cycles, respectively, after the last TMS pulse. Critically, ITPC following entrainment positively correlated with IAF rather than with the degree of similarity between IAF and the input frequency (10 Hz). Thus, we entrained alpha-band activity in occipital cortex for ~ 3 cycles (~ 300 ms), and IAF predicts the strength of entrained occipital alpha phase synchrony indexed by ITPC.
顶枕部α节律(8-12 Hz)是皮质兴奋性的基础,并影响视觉表现。经颅磁刺激(TMS)能否使枕叶皮质固有α节律同步尚不清楚。我们应用 4 脉冲、10 Hz 节律性 TMS 对右侧 V1/V2 的固有α振荡器进行调制,并通过同时进行的脑电图(EEG)测试了四个预测:(1)随时间窗口的逐渐增强,(2)输出频率特异性,(3)对固有振荡相位的依赖性,以及(4)对个体α频率(IAF)的输入频率特异性的神经特征。两种具有相同脉冲数和持续时间的对照条件为无节律性激活和节律性假刺激。结果证实了前三个预测。节律性 TMS 爆发显著地调制了局部神经活动。在刺激部位附近,在最后一个 TMS 脉冲后,诱发的振荡幅度和试验间相位相干性(ITPC)分别增加了 2 和 3 个周期。关键的是,调制后的 ITPC 与 IAF 呈正相关,而与 IAF 与输入频率(10 Hz)的相似程度无关。因此,我们在枕叶皮层中调制了大约 3 个周期(大约 300 毫秒)的α 波段活动,IAF 预测了由 ITPC 索引的调制后枕叶α 相同步的强度。