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Neural Correlates of Inhibitory Control in Children: Evidence Using MRI and fNIRS

Leela Shah; Xin Zhou; Marissa Ann DiPiero; Jayse Merle Weaver; Corrina Frye; Steven R. Kecskemeti; Ruth Y. Litovsky; Andrew L. Alexander; Elizabeth M. Planalp; Douglas C. Dean
Brain Topography · Vol. 38, Issue 5 · 2025

Abstract

Inhibitory control (IC) develops in stages from infancy through adolescence and is associated with numerous developmental disorders and learning outcomes. This study examined how neural architecture – in particular myelination – underlies brain activation patterns observed during IC tasks in a sample of 28 children aged 4–10 years old. IC was observed using reaction times during go/no-go and flanker IC tasks. Myelination was measured using quantitative longitudinal relaxation rate (R1) mapping obtained from selected white matter regions of interest (ROIs). Brain activation was defined as task-related changes in hemoglobin oxygenation as measured by functional near-infrared spectroscopy (fNIRS) averaged within ROIs. Results indicated that myelination in ROIs was higher in older children and fNIRS activation in frontal channels was significantly and positively associated with go/no-go mean reaction time. Myelination in the corona radiata and superior longitudinal fasciculus was positively associated with frontal fNIRS activation, while myelination was negatively associated with go/no-go and flanker mean reaction times across white matter ROIs. Overall, significance level notably varied across models. Independently of inhibitory control constructs, these regions may be of interest in future structure-function studies across development.

Bibliographic Information

JournalBrain Topography
PublisherSpringer
Publication Date2025-09-01
Publication Year2025
Volume38
Issue5
Document TypeJournal Article
Print ISSN0896-0267
eISSN1573-6792
DOI10.1007/s10548-025-01129-8

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NARA Access Coverage1988-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10548
Publisher PageOpen Publisher Page
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