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Timing of adoption is associated with electrophysiological brain activity and externalizing problems among children adopted internationally.


ABSTRACT: This study investigated middle childhood resting electroencephalography (EEG) and behavioral adjustment in 35 internationally adopted children removed from early caregiving adversity between 6 and 29 months of age. Older age of adoption was associated with more immature or atypical profiles of middle childhood cortical function, based on higher relative theta power (4-6 Hz), lower relative alpha power (7-12 Hz), lower peak alpha frequency, and lower absolute beta (13-20 Hz) and gamma (21-50 Hz) power. More immature or atypical EEG spectral power indirectly linked older age of adoption with increased risk for externalizing problems in middle childhood. The findings add to existing evidence linking duration of early adverse exposures with lasting effects on brain function and behavioral regulation even years after living in a stable adoptive family setting. Findings underscore the need to minimize and prevent children's exposures to early caregiving adversity, especially in the first years of life. They call for innovative interventions to support neurotypical development in internationally adopted children at elevated risk.

SUBMITTER: Bick J 

PROVIDER: S-EPMC9038029 | biostudies-literature | 2022 May

REPOSITORIES: biostudies-literature

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Timing of adoption is associated with electrophysiological brain activity and externalizing problems among children adopted internationally.

Bick Johanna J   Lipschutz Rebecca R   Tabachnick Alexandra A   Biekman Brian B   Katz Danielle D   Simons Robert R   Dozier Mary M  

Developmental psychobiology 20220501 4


This study investigated middle childhood resting electroencephalography (EEG) and behavioral adjustment in 35 internationally adopted children removed from early caregiving adversity between 6 and 29 months of age. Older age of adoption was associated with more immature or atypical profiles of middle childhood cortical function, based on higher relative theta power (4-6 Hz), lower relative alpha power (7-12 Hz), lower peak alpha frequency, and lower absolute beta (13-20 Hz) and gamma (21-50 Hz)  ...[more]

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