Effect of obesity on inhibitory control in preadolescents during stop-signal task. An event-related potentials study.

Graciela C Alatorre-Cruz, Heather Downs, Darcy Hagood, Seth T Sorensen, D Keith Williams, Linda Larson-Prior

Journal: International journal of psychophysiology : official journal of the International Organization of Psychophysiology 2021;165():56-67

PMID: 33872629

Abstract

Preadolescence is a period in which structural and functional changes occur in brain network reorganization that relate to the development of executive control functions, particularly in the areas of attention and cognitive inhibition. Obesity has been associated with a deficit in executive functions and behavioral and electrophysiological differences using the go/no-go task (proactive inhibition), but no study has assessed brain-electrical activity using the stop-signal task (reactive inhibition) in this population. Therefore, we hypothesized that obese preadolescents would show less efficiency in reactive inhibition than their same-age non-obese peers. To test this hypothesis, event-related potentials (ERPs) were collected during a stop-signal task and compared between 27 obese preadolescents (mean BMI = 25.9; 9.65 years old) and 29 normal-weight preadolescents (mean BMI = 17.5; 9.60 years old). No significant differences between groups were observed in behavioral responses. As for ERPs, the obese group had an electrophysiological pattern associated with less efficient conflict monitoring during the "no-go" condition (i.e., less modulation of N200 latency based on the experimental condition), differences in attentional allocation in the "go" condition (less modulation of P300a latency based on experimental condition), and difficulties in rule retrieval from working memory associated with the trial-type in both experimental conditions (smaller P300b amplitude). We conclude that obese preadolescents displayed less ability to modulate conflict-monitoring in the "no-go" condition and attention allocation in the "go" condition, evidencing differences between groups in the development of attention and inhibitory control.

Copyright © 2021 The Authors. Published by Elsevier B.V. All rights reserved.

Address: Department of Pediatrics, University of Arkansas for Medical Sciences, Little Rock, AR, United States of America; Arkansas Children's Nutrition Center, 15 Children's Way, Little Rock, AR 72202, United States of America. Electronic address: [email protected].; Arkansas Children's Nutrition Center, 15 Children's Way, Little Rock, AR 72202, United States of America. Electronic address: [email protected].; Arkansas Children's Nutrition Center, 15 Children's Way, Little Rock, AR 72202, United States of America. Electronic address: [email protected].; Department of Pediatrics, University of Arkansas for Medical Sciences, Little Rock, AR, United States of America; Arkansas Children's Nutrition Center, 15 Children's Way, Little Rock, AR 72202, United States of America. Electronic address: [email protected].; Arkansas Children's Nutrition Center, 15 Children's Way, Little Rock, AR 72202, United States of America; Department of Biostatistics, University of Arkansas for Medical Sciences, Little Rock, AR, United States of America. Electronic address: [email protected].; Arkansas Children's Nutrition Center, 15 Children's Way, Little Rock, AR 72202, United States of America; Departments of Psychiatry, Neurology, Neurobiology and Developmental Sciences, Pediatrics and Biomedical Informatics, University of Arkansas for Medical Sciences, 4301 W. Markham St., Little Rock, AR, United States of America. Electronic address: [email protected].
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