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Alcohol Reduces Cross‐Frequency Theta‐Phase Gamma‐Amplitude Coupling in Resting Electroencephalography
Author(s) -
Lee Jaewon,
Yun Kyongsik
Publication year - 2014
Publication title -
alcoholism: clinical and experimental research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.267
H-Index - 153
eISSN - 1530-0277
pISSN - 0145-6008
DOI - 10.1111/acer.12310
Subject(s) - electroencephalography , alcohol , amplitude , electrophysiology , ingestion , audiology , chemistry , coupling (piping) , psychology , neuroscience , physics , medicine , materials science , optics , biochemistry , metallurgy
Background The electrophysiological inhibitory mechanism of cognitive control for alcohol remains largely unknown. The purpose of the study was to compare electroencephalogram (EEG) power spectra and cross‐frequency phase–amplitude coupling ( CFPAC ) at rest and during a simple subtraction task after acute alcohol ingestion. Methods Twenty‐one healthy subjects participated in this study. Two experiments were performed 1 week apart, and the order of the experiments was randomly assigned to each subject. During the experiments, each subject was provided with orange juice containing alcohol or orange juice only. We recorded EEG activity and analyzed power spectra and CFPAC data. Results The results showed prominent theta‐phase gamma‐amplitude coupling at the frontal and parietal electrodes at rest. This effect was significantly reduced after alcohol ingestion. Conclusions Our findings suggest that theta‐phase gamma‐amplitude coupling is deficiently synchronized at rest after alcohol ingestion. Therefore, cross‐frequency coupling could be a useful tool for studying the effects of alcohol on the brain and investigating alcohol addiction.