QEEG indexed frontal connectivity effects of transcranial pulsed current stimulation (tPCS): A sham-controlled mechanistic trial

刺激 神经科学 经颅交流电刺激 心理学 阿尔法(金融) 脑电图 经颅直流电刺激 脑刺激 大脑活动与冥想 绝对权力 听力学 磁刺激 医学 发展心理学 结构效度 政治 政治学 法学 心理测量学
作者
Laura Castillo Saavedra,León Morales-Quezada,Deniz Doruk,Joanna Rozinsky,Livia Coutinho,Paula Pascoal‐Faria,Iago Navas Perissinotti,Qingmei Wang,Felipe Fregni
出处
期刊:Neuroscience Letters [Elsevier]
卷期号:577: 61-65 被引量:22
标识
DOI:10.1016/j.neulet.2014.06.021
摘要

Transcranial pulsed current stimulation (tPCS) is a non-invasive brain stimulation technique that employs weak, pulsed current at different frequency ranges, inducing electrical currents that reach cortical and subcortical structures. Very little is known about its effects on brain oscillations and functional connectivity and whether these effects are dependent on the frequency of stimulation. Our aim was to evaluate the effects of tPCS with different frequency ranges in cortical oscillations indexed by high-resolution qEEG changes for power and interhemispheric coherence. Thirty-eight healthy subjects were enrolled and received a single 20-min session of either sham or active stimulation with 1 Hz, 100 Hz or random frequency (1-5 Hz). We conducted an exploratory analysis to detect changes in mean power for theta, alpha and beta, and interhemispheric coherence for alpha and theta and four different sub-bands cognitive and non-specific adverse effects were recorded. We found that active stimulation with a random frequency ranging between 1 and 5 Hz is able to significantly increase functional connectivity for the theta and low-alpha band as compared to sham and active stimulation with either 1 or 100 Hz. Based on these findings, we discuss the possible effects of tPCS on resting functional connectivity for low-frequency bands in fronto-temporal areas. Future studies should be conducted to investigate the potential benefit of these induced changes in pathologic states.
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