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Updated: May 5, 2026

Electrophysiological Measurements and Analysis of Nociception in Human Infants
Published on: December 20, 2011
How well do clinical pain assessment tools reflect pain in infants?
Rebeccah Slater1, Anne Cantarella, Linda Franck
1Department of Anatomy and Developmental Biology, University College London, London, United Kingdom. r.slater@ucl.ac.uk
Insights
Infant pain assessment using behavioral cues may be unreliable. Cortical pain responses can occur without observable facial changes, indicating potential underestimation of pain in infants.
Area of Science:
- Neuroscience
- Pediatrics
- Pain Research
Background:
- Infant pain assessment is challenging for medical staff.
- Current tools rely on behavioral and physiological measures, which may not accurately reflect pain experience.
- Cortical pain response measurement offers a novel approach to evaluate pain assessment tools.
Purpose of the Study:
- To evaluate the accuracy of pain assessment tools in infants by comparing behavioral scores with cortical pain responses.
- To determine if infant pain scores reflect actual cortical pain processing.
Main Methods:
- Near-infrared spectroscopy (NIRS) was used to measure cortical hemodynamic activity in infants (25-43 wk postmenstrual).
- Cortical activity was measured following a heel lance and compared to the Premature Infant Pain Profile (PIPP) score.
- The correlation between PIPP components and cortical activity was analyzed.
Main Results:
- A good correlation was found between PIPP scores and cortical activity (correlation coefficient = 0.57).
- Facial expression, a component of PIPP, showed the strongest correlation with cortical activity (correlation coefficient = 0.74).
- Cortical pain responses were detected in some infants without observable facial changes.
Conclusions:
- Painful stimuli generally elicit parallel cortical and behavioral responses in infants.
- Infants may experience pain at the cortical level without displaying detectable behavioral changes.
- Behavioral assessment tools alone may underestimate pain in infants.
Background:
Pain in infancy is poorly understood, and medical staff often have difficulty assessing whether an infant is in pain. Current pain assessment tools rely on behavioural and physiological measures, such as change in facial expression, which may not accurately reflect pain experience. Our ability to measure cortical pain responses in young infants gives us the first opportunity to evaluate pain assessment tools with respect to the sensory input and establish whether the resultant pain scores reflect cortical pain processing.
Methods And Findings:
Cortical haemodynamic activity was measured in infants, aged 25-43 wk postmenstrual, using near-infrared spectroscopy following a clinically required heel lance and compared to the magnitude of the premature infant pain profile (PIPP) score in the same infant to the same stimulus (n = 12, 33 test occasions). Overall, there was good correlation between the PIPP score and the level of cortical activity (regression coefficient = 0.72, 95% confidence interval [CI] limits 0.32-1.11, p = 0.001; correlation coefficient = 0.57). Of the different PIPP components, facial expression correlated best with cortical activity (regression coefficient = 1.26, 95% CI limits 0.84-1.67, p < 0.0001; correlation coefficient = 0.74) (n = 12, 33 test occasions). Cortical pain responses were still recorded in some infants who did not display a change in facial expression.
Conclusions:
While painful stimulation generally evokes parallel cortical and behavioural responses in infants, pain may be processed at the cortical level without producing detectable behavioural changes. As a result, an infant with a low pain score based on behavioural assessment tools alone may not be pain free.
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