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Neonatal pain-related stress, functional cortical activity and visual-perceptual abilities in school-age children born at extremely low gestational age

  • Sam M. Doesburg
  • , Cecil M. Chau
  • , Teresa P.L. Cheung
  • , Alexander Moiseev
  • , Urs Ribary
  • , Anthony T. Herdman
  • , Steven P. Miller
  • , Ivan L. Cepeda
  • , Anne Synnes
  • , Ruth E. Grunau
  • University of Toronto
  • Child and Family Research Institute
  • Simon Fraser University
  • Down Syndrome Research Foundation
  • University of British Columbia

Research output: Contribution to journalArticlepeer-review

204 Scopus citations

Abstract

Children born very prematurely (≤32 weeks) often exhibit visual-perceptual difficulties at school-age, even in the absence of major neurological impairment. The alterations in functional brain activity that give rise to such problems, as well as the relationship between adverse neonatal experience and neurodevelopment, remain poorly understood. Repeated procedural pain-related stress during neonatal intensive care has been proposed to contribute to altered neurocognitive development in these children. Due to critical periods in the development of thalamocortical systems, the immature brain of infants born at extremely low gestational age (ELGA; ≤28 weeks) may have heightened vulnerability to neonatal pain. In a cohort of school-age children followed since birth we assessed relations between functional brain activity measured using magnetoencephalogragy (MEG), visual-perceptual abilities and cumulative neonatal pain. We demonstrated alterations in the spectral structure of spontaneous cortical oscillatory activity in ELGA children at school-age. Cumulative neonatal pain-related stress was associated with changes in background cortical rhythmicity in these children, and these alterations in spontaneous brain oscillations were negatively correlated with visual-perceptual abilities at school-age, and were not driven by potentially confounding neonatal variables. These findings provide the first evidence linking neonatal pain-related stress, the development of functional brain activity, and school-age cognitive outcome in these vulnerable children.

Original languageEnglish
Pages (from-to)1946-1952
Number of pages7
JournalPain
Volume154
Issue number10
DOIs
StatePublished - Oct 2013
Externally publishedYes

Keywords

  • Preterm Magnetoencephalography Neural oscillation Neonatal pain Cognitive outcome Spontaneous brain activity Visual perception Prematurity Spontaneous brain activity Child development Resting-state Pain Cognition Perception Development

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