Related Experiment Video
Updated: Feb 2, 2026

Studying Brain Function in Children Using Magnetoencephalography
Published on: April 8, 2019
Physiological Effect of Prone Position in Children with Severe Bronchiolitis: A Randomized Cross-Over Study
Florent Baudin1, Guillaume Emeriaud2, Sandrine Essouri3
1Lyon University Hospital, Hôpital Femme Mère Enfant, Pediatric Intensive Care Unit, Bron, France; University of Lyon, University Claude Bernard Lyon1, Ifsttar, UMRESTTE, UMR T_9405, Lyon, France.
Insights
The prone position reduces breathing effort and metabolic cost in infants with severe bronchiolitis on noninvasive ventilation. This finding suggests potential benefits for respiratory support in infants.
Area of Science:
- Pediatric Respiratory Medicine
- Critical Care Medicine
- Neonatology
Background:
- Infants with severe bronchiolitis often require noninvasive ventilation.
- Optimizing patient positioning is crucial for improving respiratory mechanics and reducing the work of breathing.
Purpose of the Study:
- To evaluate the impact of the prone position on inspiratory effort, metabolic cost of breathing, and neural drive to the diaphragm in infants with severe bronchiolitis receiving noninvasive ventilation.
- To compare physiological measures in the prone versus supine positions.
Main Methods:
- A randomized crossover study involving 14 infants with severe bronchiolitis requiring noninvasive ventilation.
- Infants received continuous positive airway pressure (CPAP) in both prone and supine positions for 1 hour each.
- Simultaneous recording of respiratory pressures, electrical activity of the diaphragm, and clinical scores (modified Wood clinical asthma score).
Main Results:
- The prone position significantly reduced the esophageal pressure-time product, indicating lower inspiratory effort.
- The modified Wood clinical asthma score and electrical activity of the diaphragm were also significantly lower in the prone position.
- Diaphragmatic neuromechanical efficiency (transdiaphragmatic pressure to diaphragm electrical activity swing ratio) was significantly higher in the prone position.
Conclusions:
- The prone position offers physiological benefits for infants with severe bronchiolitis requiring noninvasive ventilation.
- Prone positioning significantly decreases inspiratory effort and the metabolic cost of breathing.
- Further research is warranted to confirm these findings in a larger infant population.
Objective:
To assess the effect of the prone position on physiological measures, including inspiratory effort, metabolic cost of breathing, and neural drive to the diaphragm as compared with the supine position in infants with severe bronchiolitis requiring noninvasive ventilation.
Study Design:
Fourteen infants, median age 33 days (IQR [first and third quartiles], 25-58) were randomized to receive 7 cmH2O continuous positive airway pressure for 1 hour in the prone position or in the supine position, which was followed by cross-over to the supine position and the prone position for 1 hour, respectively. Flow, esophageal, airway, gastric, and transdiaphragmatic pressures, as well as electrical activity of the diaphragm were simultaneously recorded. The modified Wood clinical asthma score was also assessed.
Results:
Median esophageal pressure-time product per minute was significantly lower in the prone position than in the supine position (227 cmH2O*s/minute [IQR, 156-282] cmH2O*s/minute vs 353 cmH2O*s/minute [IQR, 249-386 cmH2O*s/minute]; P = .048), as were the modified Wood clinical asthma score (P = .033) and electrical activity of the diaphragm (P = .006). The neuromechanical efficiency of the diaphragm, as assessed by transdiaphramagtic pressure to electrical activity of the diaphragm swing ratio, was significantly higher in the prone position than in the supine position (1.1 cmH2O/µV [IQR, 0.9-1.3 cmH2O/µV] vs 0.7 cmH2O/µV [IQR, 0.6-1.2 cmH2O/µV], respectively; P = .022).
Conclusions:
This study suggests a benefit of the prone position for infants with severe bronchiolitis requiring noninvasive ventilation by significantly decreasing the inspiratory effort and the metabolic cost of breathing. Further studies are needed to evaluate the potential impact of these physiological findings in a larger population.
Trial Registration:
Clinicaltrials.gov: NCT02602678.
Related Concept Videos
Bioequivalence Experimental Study Designs: Completely Randomized and Randomized Block Designs
Crossing Over
The homologous pairs of sister chromosomes—one from the maternal and one from the paternal genome—then begin to align alongside each other lengthwise, matching corresponding DNA positions in a process...
Crossing Over
Cross-Sectional Research
Monohybrid Crosses
Random Error

