• Neuroscience · Apr 2024

    Sex-specific differences in resting oscillatory dynamics in children with prenatal alcohol exposure.

    • Felicha T Candelaria-Cook, Megan E Schendel, Lucinda L Romero, Cassandra Cerros, Dina E Hill, and Julia M Stephen.
    • The Mind Research Network and Lovelace Biomedical Research Institute, Albuquerque, NM, USA. Electronic address: fccook@mrn.org.
    • Neuroscience. 2024 Apr 5; 543: 121136121-136.

    AbstractAt rest children with prenatal alcohol exposure (PAE) exhibit impaired static and dynamic functional connectivity, along with decreased alpha oscillations. Sex-specific information regarding the impact of PAE on whole-brain resting-state gamma spectral power remains unknown. Eyes-closed and eyes-open MEG resting-state data were examined in 83 children, ages 6-13 years of age. Using a matched design, the sample consisted of 42 typically developing children (TDC) (22 males/20 females) and 41 children with PAE and/or a fetal alcohol spectrum disorders (FASD) diagnosis (21 males/20 females). Whole-brain source resting-state spectral power was examined to determine group and sex specific relationships. Within gamma, we found sex and group specific changes such that female participants with PAE/FASD had increased gamma power when compared to female TDC and male participants with PAE/FASD. These differences were detected in most source regions analyzed during both resting-states, and were observed across the age spectrum examined. Within delta, we found sex and group specific changes such that female participants with PAE/FASD had decreased delta power when compared to female TDC and male participants with PAE/FASD. The reduced delta oscillations in female participants with PAE/FASD were detected in several source regions during eyes-closed rest and were evident at younger ages. These results indicate PAE alters neural oscillations during rest in a sex-specific manner, with females with PAE/FASD showing the largest perturbations. These results further demonstrate PAE has global effects on resting-state spectral power and connectivity, creating long-term consequences by potentially disrupting the excitation/inhibition balance in the brain, interrupting normative neurodevelopment.Copyright © 2024 IBRO. Published by Elsevier Inc. All rights reserved.

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