Impact of postnatal weight gain on brain white matter maturation in very preterm infants

Pratheek S Bobba1, Clara F Weber2, Adrian R Acuna Higaki1

  • 1Department of Radiology and Biomedical Imaging, Yale School of Medicine, New Haven, Connecticut, USA.

Insights

Higher birth weight and postnatal weight gain in very preterm infants are linked to more mature white matter (WM) brain tracts. These findings highlight the importance of early nutrition for neurodevelopment in premature babies.

Area of Science:

  • Neonatal neuroscience
  • Neuroimaging
  • Developmental pediatrics

Background:

  • Very preterm infants (<32 weeks gestational age) often experience neurological deficits.
  • The neurobiological mechanisms linking birth weight and postnatal growth to neurological outcomes in VPIs are not fully understood.

Purpose of the Study:

  • To investigate how birth weight and postnatal weight gain impact white matter (WM) maturation in very preterm infants (VPIs).
  • To utilize diffusion tensor imaging (DTI) to characterize these associations.

Main Methods:

  • Included 91 VPIs with complete birth/postnatal weight data and predischarge DTI scans.
  • Employed voxel-wise general linear model and tract-based regression analyses.
  • Controlled for gestational age at birth and time between birth and scan.

Main Results:

  • Higher birth weight Z-scores correlated with more mature WM tracts, especially in the corpus callosum and sagittal striatum.
  • Increased postnatal weight Z-score changes (first 4 weeks) also associated with enhanced WM maturity.
  • Results were adjusted for gestational age, birth weight Z-score, and scan timing.

Conclusions:

  • Birth weight and postnatal weight gain in VPIs are associated with white matter maturation markers detectable via MRI.
  • These neuroimaging metrics may serve as early biomarkers for nutritional intervention effects on VPI brain development.
Abstract

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