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Simultaneous Transcranial Alternating Current Stimulation and Functional Magnetic Resonance Imaging
Published on: June 5, 2017
Neural changes to transcranial alternating current stimulation in the gamma range over the left frontoparietal
Tien-Wen Lee1, Gerald Tramontano1
1The NeuroCognitive Institute (NCI) Clinical Research Foundation, Mt Arlington, NJ 07856, USA.
Abstract:
Applying transcranial alternating current stimulation (tACS) at the gamma range to the frontal and parietal regions can improve cognitive dysfunctions. This study aimed to explore the neural changes following tACS. Electroencephalography (EEG) recordings were obtained from a cohort of 34 participants with various cognitive impairments before and after 11 sessions of 40 Hz tACS treatment. Alternating currents at 2.0 mA were administered to the electrode positions F3 and P3 for 25 min of each session, following the 10-20 EEG convention. Using eLORETA, scalp-recorded signals were reconstructed into cortical current source density (CSD). We then assessed the differences in power and connectivity strength across multiple spectra. We observed a consistent trend of decreased CSD at the stimulating sites across different spectra, most prominent at beta and gamma bands (P < 0.01). On the contrary, the right hemisphere showed a trend of increased CSD, which was likely mediated by inter-hemispheric rivalry. In addition, the connectivity strength between the left frontal and parietal regions increased significantly (P = 0.017). Application of tACS would desynchronize regional oscillation and enhance inter-regional crosstalk. The pattern of neural changes was concordant with our previous tACS reports (5 Hz), suggesting common neural mechanisms driving the neurophysiological effects of tACS.
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