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Associations between infant amygdala functional connectivity and social engagement following a stressor: A
Yannan Hu1, Haitao Chen2, Xiaomei Li1
1Department of Human Development and Family Studies, University of Illinois at Urbana-Champaign, Urbana, Illinois, USA.
Insights
Early brain connectivity in infants influences stress recovery. Greater amygdala network synchronization and amygdala-salience network segregation at 3 months predicted poorer stress recovery up to 6 months.
Area of Science:
- Neuroscience
- Developmental Psychology
- Infant Mental Health
Background:
- Infant brain functional connectivity (FC) underpins socioemotional development.
- Limited understanding exists regarding early amygdala FC and infant stress recovery.
Purpose of the Study:
- To examine the association between amygdala FC at 3 months and infant stress recovery across the first year.
- Investigate within-network amygdala FC and between-network connectivity with default-mode (DMN) and salience (SAL) networks.
Main Methods:
- Resting-state functional magnetic resonance imaging (fMRI) in 35 infants at 3 months.
- The still-face paradigm assessed infant stress recovery (social engagement) at 3, 6, and 9 months.
Main Results:
- Greater positive within-network amygdala FC and amygdala-SAL FC at 3 months predicted lower stress recovery at 3 and 6 months.
- No significant association was found between amygdala-DMN FC and stress recovery.
- These associations were not significant at 9 months.
Conclusions:
- Early functional synchronization within the amygdala network may impact infant stress recovery.
- Early segregation between the amygdala and SAL networks may also influence stress recovery.
- Findings highlight the role of early brain functional architecture in infant socioemotional regulation.
Abstract:
Functional architecture of the infant brain, especially functional connectivity (FC) within the amygdala network and between the amygdala and other networks (i.e., default-mode [DMN] and salience [SAL] networks), provides a neural basis for infant socioemotional functioning. Yet, little is known about the extent to which early within- and between-network amygdala FC are related to infant stress recovery across the first year of life. In this study, we examined associations between amygdala FC (i.e., within-network amygdala connectivity, and between-network amygdala connectivity with the DMN and SAL) at 3 months and infant recovery from a mild social stressor at 3, 6 and 9 months. At 3 months, thirty-five infants (13 girls) underwent resting-state functional magnetic resonance imaging during natural sleep. Infants and their mothers completed the still-face paradigm at 3, 6, and 9 months, and infant stress recovery was assessed at each time point as the proportion of infant social engagement during the reunion episode. Bivariate correlations indicated that greater positive within-network amygdala FC and greater positive amygdala-SAL FC, but not amygdala-DMN FC, at 3 months predicted lower levels of stress recovery at 3 and 6 months, but were nonsignificant at 9 months. These findings provide preliminary evidence that early functional synchronization within the amygdala network, as well as segregation between the amygdala and the SAL, may contribute to infant stress recovery in the context of infant-mother interaction.
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