Environmental Modulation of Physiological Parameters in the Paediatric Intensive Care Unit After Extracorporeal

Luna López-Coleto1,2,3, Aurora García-Arcos1,2,3,4, Fernando González-Martín4

  • 1Maimonides Institute for Biomedical Research of Córdoba (IMIBIC), Reina Sofia University Hospital, Córdoba, Spain.

Nursing in Critical Care
|August 17, 2026
PubMed

Insights

Environmental factors in paediatric intensive care units (PICUs) impact critically ill children's physiology. Optimizing light and noise levels may improve patient recovery and circadian rhythms.

Area of Science:

  • Pediatric critical care medicine
  • Environmental physiology
  • Circadian biology

Background:

  • Pediatric intensive care units (PICUs) present non-physiological environmental stimuli (noise, light, temperature).
  • These stimuli can disrupt physiological regulation and circadian organization in critically ill children.
  • Understanding these effects is crucial for optimizing patient care.

Purpose of the Study:

  • To investigate the impact of PICU environmental conditions (noise, light, temperature) on cardiovascular, respiratory, and thermoregulatory physiology.
  • Focus on pediatric patients post-extracorporeal cardiac surgery.
  • Assess the relationship between environmental exposures and physiological parameters.

Main Methods:

  • Prospective cohort study utilizing continuous environmental monitoring and physiological measurements.
  • Environmental data (noise, light, temperature) collected at 30-second intervals, aggregated to 15-minute resolution.
  • Generalized Additive Mixed Models (GAMMs) used to analyze associations between environmental factors and physiological variables (heart rate, blood pressure, respiratory rate, oxygen saturation, rectal temperature), accounting for circadian variation.

Main Results:

  • Environmental factors demonstrated non-linear associations with cardiovascular and respiratory parameters in 27 pediatric patients (0-14 years).
  • Heart rate and respiratory rate were most sensitive to visible light exposure.
  • Noise levels exceeded recommended thresholds, and lighting lacked a structured day-night cycle, despite significant 24-hour physiological variations observed.

Conclusions:

  • PICU environmental conditions are linked to physiological changes in pediatric patients post-cardiac surgery.
  • These environmental factors may disrupt normal temporal physiological organization.
  • Environmental optimization, including structured light-dark cycles and noise reduction, is recommended for further investigation as nursing-led interventions.
Abstract