Autism spectrum disorder is associated with ventricular enlargement in a low birth weight population

Tammy Z Movsas1, Jennifer A Pinto-Martin, Agnes H Whitaker

  • 1Midland County Department of Public Health, Midland, MI 48640, USA. tmovsas@gmail.com

The Journal of Pediatrics
|February 16, 2013
PubMed

Insights

Neonatal cranial ultrasound showing ventricular enlargement in low birth weight (LBW) infants significantly increases the risk of autism spectrum disorder (ASD) in adulthood. This finding highlights a key risk factor for ASD in this vulnerable population.

Area of Science:

  • Neuroscience
  • Developmental Pediatrics
  • Neonatology

Background:

  • Autism spectrum disorder (ASD) is a neurodevelopmental condition with increasing prevalence.
  • Low birth weight (LBW) infants are at higher risk for neurodevelopmental disorders, including ASD.
  • Neonatal brain injury, detectable by cranial ultrasound, may contribute to ASD risk.

Purpose of the Study:

  • To investigate the association between neonatal cranial ultrasound abnormalities and the later diagnosis of ASD.
  • To identify specific ultrasound markers that predict ASD risk in adult survivors of LBW.

Main Methods:

  • Secondary analysis of a prospective cohort of 1105 LBW infants.
  • Cranial ultrasounds were performed in the first week of life to detect brain injury.
  • ASD assessment involved a two-stage process at ages 16 and 21 years, identifying 14 cases.

Main Results:

  • Any white matter injury (ventricular enlargement and/or parenchymal lesion) tripled the risk of a positive ASD screen.
  • Ventricular enlargement specifically increased the risk of ASD diagnosis nearly seven-fold.
  • Isolated germinal matrix/intraventricular hemorrhage did not elevate ASD risk.

Conclusions:

  • Ventricular enlargement in LBW neonates, indicative of diffuse white matter injury, is a significant predictor of rigorously-diagnosed ASD.
  • Cranial ultrasound findings in the neonatal period can identify LBW infants at increased risk for ASD.
  • Early identification of brain injury may inform targeted interventions for LBW infants at risk for neurodevelopmental disorders.
Abstract

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