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Published on: August 5, 2017
Regional cerebellum volume anomalies and associated cognitive function in children with fetal alcohol spectrum
Blake A Gimbel1,2, Donovan J Roediger3, Kent A Tuominen3
1Nationwide Children's Hospital, Columbus, Ohio, USA.
Insights
Prenatal alcohol exposure (PAE) causes specific cerebellar anomalies in children with fetal alcohol spectrum disorders (FASD). These structural differences correlate with cognitive deficits, highlighting the cerebellum's role in FASD-related cognitive impairments.
Area of Science:
- Neuroimaging
- Developmental Neuroscience
- Pediatric Neurology
Background:
- Prenatal alcohol exposure (PAE) is a leading cause of neurodevelopmental disorders, including fetal alcohol spectrum disorders (FASD).
- The cerebellum plays a crucial role in cognitive functions, and its development is particularly sensitive to PAE.
- Understanding cerebellar anomalies in FASD is vital for addressing cognitive deficits.
Purpose of the Study:
- To evaluate cerebellar structural anomalies in children with FASD using advanced MRI volumetry.
- To investigate the relationship between cerebellar morphology and cognitive performance in children with FASD.
Main Methods:
- Utilized a 3T MRI scan and the CerebNet pipeline for detailed cerebellar lobule segmentation in 47 children with FASD and 46 controls (ages 8-17).
- Assessed cognitive functions including IQ, executive function, visual memory, and processing speed.
- Employed univariate and multivariate linear models to compare cerebellar volumes and explore structure-cognition associations.
Main Results:
- Children with FASD showed significantly reduced cerebellar white matter, cortical gray matter, and vermis volumes compared to controls.
- Specific lobules, including bilateral lobules I-IV, V, and lobule X, exhibited reduced volumes in the FASD group.
- Within the FASD group, larger cerebellar white matter volume predicted better verbal working memory and processing speed.
Conclusions:
- Advanced MRI reveals regionally specific cerebellar anomalies associated with PAE in children with FASD.
- These structural cerebellar abnormalities may underlie cognitive impairments observed in FASD.
- The findings underscore the cerebellum's critical role in cognitive development and the impact of prenatal alcohol exposure.
Background:
Prenatal alcohol exposure (PAE) significantly impacts cerebellar development, which may affect cognitive function in fetal alcohol spectrum disorders (FASD). We evaluated cerebellar anomalies in children with FASD and an unexposed comparison group using an advanced MRI volumetric method that characterizes cerebellar structure at the level of individual lobules. We also explored associations between the cerebellum and cognitive performance.
Methods:
Forty-seven children with FASD and 46 typically developing comparisons (ages 8-17 years). Participants completed a 3T MRI scan and cognitive testing including IQ, executive function, visual memory, and visual-motor processing speed. T1-weighted anatomical data were processed with the CerebNet pipeline, which segments the cerebellum into lobules. Univariate and multivariate linear models (with intracranial volume [ICV] as a covariate) examined group volume differences for total cerebellar volumes and individual cerebellar lobules. Exploratory analyses examined associations between cognitive functioning and cerebellum volumes.
Results:
Participants with FASD demonstrated lower volumes than comparison participants in total bilateral cerebellar white and cortical gray matter, and a smaller total vermis. Participants with FASD had lower regional volumes than comparisons within the bilateral lobules I-IV and V (anterior lobe) and vermis X lobule (flocculonodular lobe). Within the FASD group, a larger volume in the total cerebellar white matter was a significant predictor of better performance on measures of verbal working memory and processing speed. Within the comparison group, a larger volume of lobule V was a significant predictor of better verbal working memory, while a larger volume of lobule I-IV was a significant negative predictor of better verbal working memory.
Conclusions:
A novel MRI method to evaluate cerebellum morphology in children with FASD suggests that PAE is associated with cerebellum anomalies in a regionally specific manner. The data also suggest that structural anomalies of the cerebellum may have functional consequences for important cognitive skills in children with FASD.
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