White matter volume and anisotropy in preterm children: a pilot study of neurocognitive correlates

Ada Yung1, Grace Poon, De-Qiang Qiu

  • 1Department of Paediatrics and Adolescent Medicine, The University of Hong Kong, Queen Mary Hospital, Hong Kong.

Pediatric Research
|April 12, 2007
PubMed

Insights

Preterm children show reduced whole brain white matter (WM) volume and anisotropy in late childhood. These reductions significantly impact long-term cognitive outcomes, highlighting the lasting effects of prematurity.

Area of Science:

  • Neuroscience
  • Developmental Pediatrics
  • Radiology

Background:

  • Prematurity and low birth weight are associated with long-term neurological and cognitive deficits.
  • White matter (WM) integrity is crucial for cognitive development.
  • Understanding the long-term impact of prematurity on WM structure is essential for predicting cognitive outcomes.

Purpose of the Study:

  • To compare whole brain white matter (WM) volume and fractional anisotropy (FA) between preterm and term children.
  • To investigate the relationship between WM characteristics and cognitive outcomes in preterm children.

Main Methods:

  • Volumetric and diffusion-tensor magnetic resonance imaging (DTI) were used to assess WM in 25 preterm and 13 term children.
  • Intelligence quotient (IQ) testing was performed on preterm children.
  • Statistical analyses, including multiple regression, were employed to determine relationships.

Main Results:

  • Preterm children exhibited significantly lower mean WM volume and FA compared to term controls.
  • Both WM volume and FA were significant independent predictors of full-scale IQ (FSIQ) in preterm children, even after adjusting for birth weight, gestational age, and gender.
  • Reduced WM volume and FA persisted into late childhood.

Conclusions:

  • Preterm children demonstrate persistent reductions in whole brain white matter volume and anisotropy in late childhood.
  • These microstructural WM differences are significantly associated with long-term cognitive deficits in individuals born preterm.
  • Findings underscore the critical role of WM development in cognitive outcomes following prematurity.

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