Related Experiment Video
Updated: Aug 6, 2026

Disruption of Frontal Lobe Neural Synchrony During Cognitive Control by Alcohol Intoxication
Published on: February 6, 2019
Magnetoencephalography detects rectification of abnormal brain hypercorrelations following abstinence from alcohol in
Scott M Lewis1,2, Arthur C Leuthold1,3, Gihyun Yoon4,5
1The Addiction Research Group, Brain Sciences Center, Minneapolis Veterans Affairs Health Care System, Minneapolis, Minnesota, United States.
Abstract:
Here, we used magnetoencephalography (MEG) to investigate changes in brain functional organization and their time course following alcohol abstinence in chronic alcoholic patients. Eighteen male veterans (10 control and 8 currently alcohol-dependent) participated in this study. MEG in alcoholic participants was obtained on various days, starting at day 3 of alcohol abstinence. A MEG scan consisted of a 45-s data acquisition period from 248 whole head axial gradiometers at a frequency of 1.017 kHz. All 30,628 pairwise zero-lag cross-correlations (CC0) between prewhitened sensor time courses per scan were computed and analyzed. We found the following. At day 3 post abstinence, the mean |CC0| was 2.1× higher than that of controls, indicating a strongly hypercorrelated state. This hypercorrelation decreased gradually in a logarithmic fit, both for negative and positive CC0, which became less negative and less positive with time, respectively. These results demonstrate the power of MEG as a sensitive tool to detect, quantify, and track functional brain status during alcohol detoxification.NEW & NOTEWORTHY Here, we report on the hypercorrelation status of the chronic alcoholic brain assessed using magnetoencephalography (MEG) comprising strong negative and positive cross-correlations between 248 MEG sensors in a 45-s duration of data acquisition in the resting state. The strong correlations were reduced over time with the logarithm of the day in abstinence and were estimated to return to the levels of controls in 564-577 days, attesting to the potential for functional brain network recovery during abstinence.

