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Published on: September 29, 2021
Do burn injuries during infancy affect pain and sensory sensitivity in later childhood?
Iris Wollgarten-Hadamek1, Johanna Hohmeister, Sueha Demirakça
1Department of Clinical and Cognitive Neuroscience, Central Institute of Mental Health, Mannheim, Germany.
Insights
Early burn injuries in infancy can cause lasting changes in pain sensitivity in children. The severity of the burn impacts whether mechanical or thermal pain processing is altered long-term.
Area of Science:
- Neuroscience
- Developmental Psychology
- Pediatric Medicine
Background:
- Neonatal and early infant pain or stress can lead to long-term changes in somatosensory and pain processing.
- Burn injuries in infancy are traumatic events that may impact sensory development.
Purpose of the Study:
- To investigate long-term pain and sensory sensitivity in school-aged children with a history of moderate or severe burn injuries in infancy.
- To determine if burn severity influences the pattern of altered pain sensitivity.
Main Methods:
- Quantitative sensory testing was used to assess detection and pain thresholds for thermal and mechanical stimuli.
- Perceptual sensitization to heat and mechanical stimuli was evaluated in school-aged children (9-16 years) with a history of burns and controls.
- Testing was conducted on unaffected body sites (thenar, trigeminal region) to assess global changes.
Main Results:
- Moderately burned children showed altered mechanical sensitivity (higher detection thresholds, lower pain thresholds, increased sensitization).
- Severely burned children exhibited altered thermal pain sensitivity (elevated pain thresholds, increased sensitization), with less consistent mechanical alterations.
- Findings suggest a differential impact of burn severity on pain processing pathways.
Conclusions:
- Early traumatic burn injuries can induce global, long-term alterations in sensory and pain processing.
- The severity of the initial burn injury may differentially affect mechanical versus thermal pain sensitivity.
- These findings highlight the profound and lasting impact of early life trauma on neurodevelopment and pain perception.
Abstract:
Studies in animals and humans suggest that neonatal and early infant pain or stress experiences can induce long-term alterations in somatosensory and pain processing. We studied pain and sensory sensitivity in school-aged children (9-16 years) who had suffered moderate (N=24) or severe (N=24) burn injuries in infancy (6-24 months of age) and 24 controls. Quantitative sensory testing entailing detection and pain thresholds for thermal and mechanical stimuli and perceptual sensitization to tonic heat and repetitive mechanical stimuli was performed. Two testing sites (thenar, trigeminal region), both not affected by the burn injury, were used to determine whether there are global changes in pain sensitivity. The result pattern suggests a differential impact of burn severity. Compared to controls, moderately burned children showed significantly higher mechanical detection thresholds (thenar) and significantly lower mechanical pain thresholds and significantly greater perceptual sensitization to repetitive mechanical stimuli (both testing sites). No significant alterations were observed for thermal stimuli. In contrast, severely burned children showed, compared to controls, primarily alterations in thermal pain sensitivity (elevated pain thresholds at both testing sites, significantly greater perceptual sensitization at the thenar). In these children, mechanical pain sensitivity and detection thresholds were not consistently altered. This differential pattern of altered sensory and pain sensitivity may reflect differences in experienced stress, pain and analgesic treatment between moderately and severely burned children. Most importantly, our findings suggest that early traumatic and painful injuries, such as burns, can induce global, long-term alterations in sensory and pain processing.
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