Cerebellar volume and functional connectivity in neonates predicts social and emotional development in toddlers
Jung-Hoon Kim1, Kushal Kapse1, Catherine Limperopoulos1
1Developing Brain Institute, Children's National Hospital, Washington, DC, United States.
Insights
The cerebellum is crucial for social-emotional development in infants. Cerebellar function, not just size, predicts infant behavior, highlighting its early role.
Area of Science:
- Developmental Neuroscience
- Neuroimaging
- Pediatric Psychology
Background:
- Adult research links the cerebellum to social and emotional cognition.
- Cerebellar injury in newborns correlates with delayed social-emotional development.
- The cerebellum's role in typically developing newborns remains unclear.
Purpose of the Study:
- To investigate the association between cerebellar structure and function in healthy neonates.
- To examine how these cerebellar features relate to social-emotional development at 18 months.
- To determine the cerebellum's contribution to early social-emotional development.
Main Methods:
- Multimodal MRI was used to assess cerebellar structure and function in 88 healthy neonates.
- Social-emotional development was evaluated at 18 months using the Infant-Toddler Social-Emotional Assessment (ITSEA).
- Principal component analysis (PCA) defined cerebellar functional gradients (FGR).
Main Results:
- Cerebellar volume did not correlate with ITSEA domain scores at 18 months.
- A specific cerebellar functional gradient (FGR7) was associated with the Externalizing domain (p=0.013).
- Both structural and functional cerebellar features reliably predicted Internalizing and Externalizing scores.
Conclusions:
- Cerebellar structure alone is not predictive of early social-emotional outcomes.
- Cerebellar functional organization is linked to specific aspects of social-emotional development.
- The cerebellum plays a significant role in social-emotional development from the earliest stages of life.
Abstract:
Over the past decade, a growing body of research in adults has emphasized the role of the cerebellum in social and emotional cognition. This has been further supported by findings of delayed social and emotional development in toddlers with cerebellar injury during the fetal and newborn periods. However, the contributions of the cerebellum to social-emotional development in typically developing newborns are unclear. To bridge this gap in knowledge, we used multimodal MRI to investigate associations between cerebellar structure and function in 88 healthy neonates (mean ± sd of postmenstrual age, = 42.00 ± 1.91 weeks) and social-emotional development at 18-months assessed using the Infant-Toddler Social-Emotional Assessment (ITSEA) (mean age on ITSEA: 18.32 ± 1.19 months old). We found that cerebellar volume was not associated with ITSEA domain scores at 18 months. We further demonstrated cerebellar functional gradient (FGR) defined using principal component analysis (PCA) was associated with Externalizing domain (linear regression model, false-discovery-rate-adjusted p = 0.013). This cluster (FGR7) included the left dentate, right VI, left Vermis VIIIb, and right V lobules. Finally, we demonstrated that either structural or functional features of the cerebellum reliably predicted scores on the Externalizing and Internalizing domains (correlation between actual and predicted scores: for structural, Fisher's z = 0.48 ± 0.01 for Internalizing, p = 0.01; for functional, Fisher's z = 0.45 ± 0.01 for Externalizing, p = 0.02; with permutation test). Collectively, our findings suggest that the cerebellum plays an important role in social-emotional development during the critical early stages of life.
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