Long-term consequences of early infant injury and trauma upon somatosensory processing

B M Schmelzle-Lubiecki1, K A Andrews Campbell, R H Howard

  • 1UCL, Department of Anatomy and Developmental Biology, University College London, London, UK.

Insights

Early infant surgery can cause long-term changes in how children process touch and temperature sensations. This study found reduced sensitivity in children who had cardiac surgery as infants, affecting both injured and uninjured areas.

Area of Science:

  • Neuroscience
  • Developmental Biology
  • Pain Research

Background:

  • Early life injury can lead to lasting somatosensory changes in animal models.
  • Understanding these long-term effects in humans is crucial for pediatric care.

Purpose of the Study:

  • To investigate long-term somatosensory processing alterations in school-aged children following early infant cardiac surgery.
  • To determine if sensory deficits occur locally at the injury site and distally.

Main Methods:

  • Quantitative sensory testing (QST) was used to measure mechanical and thermal thresholds.
  • Tested sensory perception in school-aged children (9-12 years) with a history of infant cardiac surgery (n=9) and matched controls (n=9).
  • Sensory testing was performed on the thoracic scar, contralateral thoracic area, and a reference thenar area.

Main Results:

  • Children with early surgery showed significantly reduced tactile sensitivity (von Frey hair) in the non-injured thenar area compared to controls (p=0.04).
  • Scarred thoracic areas exhibited significantly reduced sensitivity to tactile stimulation (p<0.001) and thermal changes (cooling/warming).
  • Most children in the surgery group had impaired warmth detection at the scar site, with some reporting paradoxical cold sensations and altered everyday sensations.

Conclusions:

  • Infant tissue injury results in measurable, long-term alterations in mechanical and thermal sensory processing.
  • Findings in humans align with animal studies, indicating that early injury has both local and global somatosensory consequences.
  • Reported aberrant sensations and pain interference warrant further investigation into the functional impact of these sensory changes.

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