The impact of exercise intensity on neurophysiological indices of food-related inhibitory control and cognitive control: A randomized crossover event-related potential (ERP) study.

Bruce W Bailey, Alexandra M Muir, Ciera L Bartholomew, William F Christensen, Kaylie A Carbine, Harrison Marsh, Hunter LaCouture, Chance McCutcheon, Michael J Larson

Journal: NeuroImage 2021;237():118162

PMID: 34020012

Abstract

Food-related inhibitory control, the ability to withhold a dominant response towards highly palatable foods, influences dietary decisions. Food-related inhibitory control abilities may increase following a bout of aerobic exercise; however, the impact of exercise intensity on both food-related inhibitory control and broader cognitive control processes is currently unclear. We used a high-powered, within-subjects, crossover design to test how relative intensity of aerobic exercise influenced behavioral (response time, accuracy) and neural (N2 and P3 components of the scalp-recorded event-related potential [ERP]) measures of food-related inhibitory and cognitive control. Two hundred and ten participants completed three separate conditions separated by approximately one week in randomized order: two exercise conditions (35% VO or 70% VO) and seated rest. Directly following exercise or rest, participants completed a food-based go/no-go task and a flanker task while electroencephalogram data were recorded. Linear mixed models showed generally faster response times (RT) and improved accuracy following 70% VO exercise compared to rest, but not 35% VO; RTs and accuracy did not differ between 35% VO exercise and rest conditions. N2 and P3 amplitudes were larger following 70% VO exercise for the food-based go/no-go task compared to rest and 35% VO exercise. There were no differences between exercise conditions for N2 amplitude during the flanker task; however, P3 amplitude was more positive following 70% VO compared to rest, but not 35% VO exercise. Biological sex did not moderate exercise outcomes. Results suggest improved and more efficient food-related recruitment of later inhibitory control and cognitive control processes following 70% VO exercise.

Copyright © 2021. Published by Elsevier Inc.

Address: Department of Exercise Sciences, Brigham Young University, 267 SFH, Provo, UT 84606, United States. Electronic address: [email protected].; Department of Psychology, Brigham Young University, United States.; Department of Exercise Sciences, Brigham Young University, 267 SFH, Provo, UT 84606, United States.; Department of Statistics, Brigham Young University, United States.; Department of Psychology, California State University Dominguez Hills, United States.; Department of Psychology, Brigham Young University, United States; Neuroscience Center, Brigham Young University, United States.
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