Cortical morphometry and IQ in VLBW children without cerebral palsy born in 2003-2007

Anne Elisabeth Sølsnes1, Kristine H Grunewaldt2, Knut J Bjuland1

  • 1Department of Laboratory Medicine, Children's and Women's Health, Trondheim, Norway.

Neuroimage. Clinical
|June 25, 2015
PubMed

Insights

Very low birth weight (VLBW) children show altered cortical development and reduced cognitive function, even without apparent brain injury. These brain changes are linked to lower Full IQ scores in VLBW individuals.

Area of Science:

  • Neuroscience
  • Developmental Pediatrics
  • Medical Imaging

Background:

  • Children born prematurely with very low birth weight (VLBW) face increased risks of preterm perinatal brain injury.
  • This injury can impact brain maturation, particularly the cerebral cortex.
  • Understanding these effects is crucial for early intervention and support.

Purpose of the Study:

  • To compare cortical thickness and surface area in VLBW children versus term-born controls.
  • To explore the relationship between cortical morphology and Full IQ in these groups.
  • To identify specific cortical alterations associated with cognitive outcomes in VLBW children.

Main Methods:

  • Cross-sectional study involving 37 VLBW and 104 term-born children (ages 5-10).
  • Cognitive assessment using age-appropriate Wechsler tests.
  • T1-weighted MRI scans analyzed with FreeSurfer for cortical thickness and surface area.

Main Results:

  • VLBW children exhibited smaller cortical surface area in frontal, temporal, and parietal lobes.
  • Frontal and occipital cortex was thicker, while posterior parietal cortex was thinner in VLBW group.
  • Significant Full IQ differences were found (VLBW M=98 vs. Controls M=108); reduced IQ in VLBW linked to frontal thickening and temporo-parietal thinning.

Conclusions:

  • Cortical deviations are present in childhood VLBW survivors, even with optimal perinatal care and no initial focal brain injury.
  • These structural brain differences correlate with reduced cognitive functioning (Full IQ).
  • Findings highlight the subtle but significant impact of VLBW on neurodevelopmental trajectories.

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