Early Procedural Pain Is Associated with Regionally-Specific Alterations in Thalamic Development in Preterm Neonates

Emma G Duerden1, Ruth E Grunau2,3, Ting Guo1

  • 1Department of Paediatrics, The Hospital for Sick Children, Toronto, Ontario M5G 1X8, Canada.

Insights

Early procedural pain in very preterm infants alters thalamic development, impacting somatosensory processing and long-term cognitive and motor skills. This highlights a sensitive period for neonatal brain vulnerability to pain.

Area of Science:

  • Neuroscience
  • Developmental Biology
  • Neonatology

Background:

  • Very preterm neonates undergo numerous invasive procedures.
  • Neonatal procedural pain is linked to altered brain development, but lacks temporal and anatomical specificity.
  • Pain modulatory systems are immature in preterm infants, suggesting a vulnerable developmental window.

Purpose of the Study:

  • To investigate the association between early procedural pain exposure and thalamic development in very preterm neonates.
  • To determine if early pain predicts changes in thalamic volume, metabolism, and white-matter pathways.
  • To link thalamic development to cognitive and motor outcomes at 3 years corrected age.

Main Methods:

  • Prospective cohort study of 155 very preterm neonates (24-32 weeks' gestation).
  • Two MRIs (structural, metabolic, diffusion) at median postmenstrual ages 32 and 40 weeks.
  • Detailed clinical data collection and cognitive/motor assessments at 3 years corrected age.

Main Results:

  • Early pain was associated with slower thalamic growth, particularly in extremely preterm neonates.
  • Pain-related volume losses were localized to somatosensory thalamic regions.
  • Early pain correlated with decreased thalamic metabolism (NAA/Cho) and altered thalamocortical pathways, impacting later neurodevelopmental outcomes.

Conclusions:

  • Early procedural pain disrupts thalamic development in a sensitive period, affecting somatosensory processing.
  • Thalamic growth is crucial for cognitive and motor outcomes in preterm infants.
  • The thalamus plays a key role in the link between neonatal pain and adverse neurodevelopmental outcomes.