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ALE Meta-Analysis Reveals Neural Substrates for the Impact of Prematurity on Executive Functioning in Children and
Insights
Premature birth impacts brain development, affecting executive functioning (EF). This study found distinct neural engagement patterns in preterm individuals during EF tasks, persisting from childhood to adulthood.
Area of Science:
- Neuroscience
- Developmental Psychology
- Cognitive Science
Background:
- Premature birth is linked to lasting cognitive deficits, particularly in executive functioning (EF).
- Neural differences underlying EF deficits in preterm individuals are not fully understood.
- It remains unclear if these neural differences are consistent across childhood and adulthood.
Purpose of the Study:
- To synthesize functional magnetic resonance imaging (fMRI) findings on neural activation differences during EF tasks.
- To compare brain engagement patterns between preterm (PT) and full-term (FT) individuals in separate child and adult groups.
- To investigate the persistence of neural effects of prematurity on EF from childhood into adulthood.
Main Methods:
- A meta-analysis of fMRI studies comparing neural activation during executive functioning tasks.
- Separate analyses were conducted for child and adult groups.
- Direct contrast was performed between child and adult activation maps.
Main Results:
- Significant differences in neural engagement during EF tasks were observed in both preterm children and adults compared to full-term individuals.
- Affected brain networks include fronto-striatal circuitry, default mode network (DMN), and salience network.
- No significant differences were found between child and adult activation maps, suggesting persistent effects.
Conclusions:
- Neural engagement during executive functioning tasks differs between preterm and full-term individuals across development.
- The findings highlight the involvement of key brain networks in executive function disruptions associated with prematurity.
- Effects of prematurity on executive functioning neural mechanisms may persist from childhood through adulthood.
Abstract:
Premature birth has known impacts on brain development, leading to sustained differences in cognitive function throughout the lifespan. Despite known deficits in executive functioning (EF) within individuals born premature, the extent to which neural engagement during executive functioning tasks differs between those born preterm and full-term is not fully understood. Additionally, it is unknown whether regions of differential engagement are the same in children and adults. This meta-analysis synthesizes fMRI results of activation differences between preterm and full-term subjects during executive functioning tasks in adult and child groups separately. Our results indicate that differences in neural engagement during EF tasks differ between pre-term (PT) and full term (FT) individuals in both age groups. Moreover, the regions affected contribute to well-known brain networks, including the fronto-striatal circuitry, the default mode network (DMN), and the salience network, all of which subserve broad EF capabilities. We found no differences between child and adult maps in a direct contrast, suggesting that effects of prematurity on executive functioning may persist from childhood into adulthood, although these findings should be interpreted in context of methodological limitations and potential confounding factors. This meta-analysis provides greater insight into the neural mechanisms behind EF disruption following premature birth.
Highlights:
Differences in neural activation during executive function tasks exist in both children and adults with a history of premature birth.PT children show hyperactivity in fronto-striatal regions while PT adults show differential engagement of default mode network regions.
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