Related Experiment Video
Updated: Jan 28, 2026

Development of a Neonatal Piglet Acute Lung Injury Model Recreating the Early Environment of Preterm Infant Lungs
Published on: October 31, 2025
Physiology and Predictors of Impaired Gas Exchange in Infants with Bronchopulmonary Dysplasia
Jenny Svedenkrans1,2,3, Benjamin Stoecklin1,4,5, J Gareth Jones6
11Centre for Neonatal Research and Education.
Insights
A new bedside test accurately measures impaired oxygenation in infants with bronchopulmonary dysplasia (BPD). This simple SpO2/PiO2 curve shift test can predict and assess respiratory outcomes in preterm infants with BPD.
Area of Science:
- Neonatology
- Pediatric Pulmonology
- Respiratory Physiology
Background:
- Bronchopulmonary dysplasia (BPD) impacts preterm infants, necessitating sensitive outcome measures for clinical evaluation and research.
- Current methods for assessing BPD severity and gas exchange in neonates have limitations.
- Developing noninvasive tools is crucial for better understanding and management of BPD.
Purpose of the Study:
- To noninvasively assess pulmonary gas exchange in preterm infants with and without BPD.
- To grade BPD severity using a novel gas exchange assessment method.
- To identify factors influencing impaired gas exchange in this population.
Main Methods:
- A prospective observational study involving 219 very preterm infants.
- Stepwise reduction of inspired oxygen partial pressure (PiO2) to monitor oxygen saturation (SpO2).
- Derivation of the SpO2/PiO2 curve, including right shift, a/a gradient, and shunt, analyzed with statistical modeling.
Main Results:
- The SpO2/PiO2 curve shift increased, and the a/a gradient decreased with BPD severity.
- Moderate-to-severe BPD was associated with increased right-left shunt.
- Lower gestational age and longer invasive ventilation duration predicted worse gas exchange parameters.
- The SpO2/PiO2 curve shift demonstrated high sensitivity and specificity for BPD severity.
Conclusions:
- A simple bedside SpO2/PiO2 curve shift test effectively quantifies impaired oxygenation in most infants with BPD.
- This noninvasive method shows promise for predicting and measuring respiratory outcomes in preterm infants.
- The findings support the use of the SpO2/PiO2 curve shift as a valuable clinical tool for BPD assessment.
Abstract:
Rationale: A sensitive outcome measure for infants with bronchopulmonary dysplasia would facilitate clinical benchmarking and enhance epidemiologic understanding, evaluation of clinical interventions, and outcome prediction.Objectives: Noninvasive assessment of pulmonary gas exchange in preterm infants with and without bronchopulmonary dysplasia to grade disease severity and to identify determinants of impaired gas exchange.Methods: This is a prospective observational study in very preterm infants. Inspired oxygen partial pressure (PiO) was decreased stepwise to achieve oxygen saturation as measured by pulse oximetry (SpO) that decreased from 95% to 86%. Right shift, a/, and right-left shunt were derived from the resulting SpO versus PiO curve and compared with current disease severity classification. Potential determinants of shift, a/, and shunt were identified using principal components analysis and multiple linear regression.Measurements and Main Results: A total of 219 infants with median (interquartile range) gestation of 28 weeks and 0 days (26 weeks and 0 days to 29 weeks and 0 days) had a valid study at 35 weeks and 4 days (34 weeks and 1 day to 39 weeks and 3 days) of postmenstrual age. Shift increased and a/ decreased as severity of bronchopulmonary dysplasia increased. Infants with moderate-severe disease also had increased shunt. Extent of impaired gas exchange overlapped between severity groups. Infants requiring mechanical support but no supplemental oxygen at 36 weeks' postmenstrual age had similar values of shift, a/, and shunt to preterm infants without bronchopulmonary dysplasia. Lower gestation and increased duration of invasive ventilation independently predicted increased shift, decreased a/, and increased shunt. Shift was the most sensitive and specific index of the severity of bronchopulmonary dysplasia.Conclusions: Most infants with bronchopulmonary dysplasia have impaired oxygenation quantified by a simple, sensitive bedside test. Shift of the SpO/PiO curve may be useful for prediction and measurement of preterm infant respiratory outcomes.
Related Concept Videos
Gas Exchange and Transport
Physical Principles Governing Gas Exchange
Gas Laws Governing Respiration
The behavior of gases is guided by Dalton's Law of partial pressures and Henry's Law.
Dalton's Law asserts that the total...
Social Exchange Theory
Social Exchange Theory
Kinetic Molecular Theory and Gas Laws Explain Properties of Gas Molecules
Capillary Exchange

