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On the relationship between head circumference, brain size, prenatal long-chain PUFA/5-methyltetrahydrofolate
Andrés Catena1, Cristina Martínez-Zaldívar2, Carolina Diaz-Piedra1
1Mind, Brain, and Behavior Research Center, University of Granada. 18011 Granada, Spain.
Insights
Head circumference in early childhood, particularly at 4 years, strongly predicts brain structure, including grey matter volume and subcortical nuclei. Postnatal factors appear most influential for brain development up to age 4.
Area of Science:
- Neuroscience
- Developmental Biology
- Pediatrics
Background:
- Head circumference is a known predictor of infant brain size and neurocognitive development.
- The predictive value of head circumference for regional and subcortical brain volumes remains less understood.
Purpose of the Study:
- To investigate the relationship between head circumference measurements from birth and brain volumes in later childhood.
- To determine if early head circumference predicts grey matter volume (GMV) and subcortical volumes.
Main Methods:
- Seventy-four infants were assessed for head circumference at birth, 4, and 10 years.
- Brain MRI was performed at 10 years, with analyses including voxel-based morphometry and subcortical segmentation.
- Cognitive abilities were assessed at 7 years; analyses controlled for various demographic and physiological factors.
Main Results:
- Prenatal supplementation did not significantly impact head circumference, cognition, or total brain volumes.
- Head circumference at 4 years showed the strongest correlation with total GMV, white matter volume, and brain surface area.
- Significant associations were found between 4-year head circumference and GMV in frontal, temporal, and occipital regions, as well as volumes of the caudate nucleus, globus pallidus, putamen, and thalamus.
Conclusions:
- The period between 0 and 4 years represents an optimal window for brain growth.
- Postnatal factors may play a more significant role in the structural maturation of specific cortical areas and subcortical nuclei than prenatal supplementation.
- Early childhood head circumference is a valuable indicator of brain structural development.
Abstract:
Head circumference in infants has been reported to predict brain size, total grey matter volume (GMV) and neurocognitive development. However, it is unknown whether it has predictive value on regional and subcortical brain volumes. We aimed to explore the relationship between several head circumference measurements since birth and distributions of GMV and subcortical volumes at later childhood. We examined seventy-four, Caucasian, singleton, term-born infants born to mothers randomised to receive fish oil and/or 5-methyltetrahydrofolate or placebo prenatal supplementation. We assessed head circumference at birth and at 4 and 10 years of age and cognitive abilities at 7 years of age. We obtained brain MRI at 10 years of age, on which we performed voxel-based morphometry, cortical surface extraction and subcortical segmentation. Analyses were controlled for sex, age, height, weight, family status, laterality and total intracranial volume. Prenatal supplementation did not affect head circumference at any age, cognitive abilities or total brain volumes. Head circumference at 4 years presented the highest correlation with total GMV, white matter volume and brain surface area, and was also strongly associated with GMV of frontal, temporal and occipital areas, as well as with caudate nucleus, globus pallidus, putamen and thalamus volumes. As relationships between brain volumes in childhood and several outcomes extend into adulthood, we have found that ages between 0 and 4 years as the optimal time for brain growth; postnatal factors might have the most relevant impact on structural maturation of certain cortical areas and subcortical nuclei, independent of prenatal supplementation.
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