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Updated: May 4, 2026

Biochemical Measurement of Neonatal Hypoxia
Published on: August 24, 2011
Persisting hypoxaemia is an insufficient measure of adverse lung function in very immature infants
Insights
Very immature infants born before 28 weeks show impaired lung function at term, irrespective of Bronchopulmonary dysplasia (BPD) diagnosis. This suggests all extremely preterm infants may face future respiratory risks.
Area of Science:
- Neonatal physiology
- Pediatric pulmonology
- Respiratory medicine
Background:
- Bronchopulmonary dysplasia (BPD), characterized by prolonged neonatal hypoxemia, is a known risk factor for adult respiratory disease.
- The precise nature of lung injury and its relationship to BPD in extremely premature infants remains unclear.
Purpose of the Study:
- To compare lung function at term in very premature infants (gestational age < 28 weeks) and full-term infants.
- To investigate the correlation between neonatal hypoxemia severity/duration and lung function parameters in preterm infants.
Main Methods:
- Functional residual capacity and gas-mixing efficiency were measured using multiple-breath nitrogen washout.
- Respiratory system compliance and conductance were assessed via the occlusion method.
- Alveolar-arterial oxygen pressure difference served as an indicator of oxygenation failure.
Main Results:
- Preterm infants exhibited significantly different lung function compared to full-term controls across all tested parameters.
- Infants diagnosed with BPD showed more compromised lung function than preterm infants without BPD.
- Even preterm infants without BPD had notably impaired functional residual capacity, compliance, and gas-mixing efficiency compared to controls.
Conclusions:
- Infants born before 28 weeks' gestation demonstrate significantly impaired lung function at term, independent of a BPD diagnosis.
- All extremely premature infants are potentially at risk for long-term respiratory complications and require appropriate monitoring.
Background:
Bronchopulmonary dysplasia (BPD), defined as protracted neonatal hypoxaemia, is considered a risk factor for respiratory disease in adulthood. The relationship between this diagnosis and the actual lung injury appearing in very immature infants is, however, unknown.
Objectives:
To compare lung function at term in very immature infants and full-term infants, and to determine how degree and duration of neonatal hypoxaemia are related to other aspects of lung function.
Design And Methods:
All surviving, consecutive infants with gestational age below 28 weeks from a geographically defined area were eligible. The alveolar-arterial oxygen pressure difference was assessed as a measure of oxygenation failure. At term, functional residual capacity and gas-mixing efficiency were measured by multiple-breath nitrogen washout, and compliance and conductance of the respiratory system by the occlusion method. The results were compared to those in 50 full-term controls.
Main Results:
Thirty-seven of 46 eligible infants were included. The preterm infants differed markedly from the full-term infants in all lung functions tested. Infants diagnosed as having BPD had more compromised lung function than those without, but the latter group differed markedly from the full-term group in functional residual capacity, compliance and gas-mixing efficiency. Only the mechanical variables were correlated to hypoxaemia at 36 weeks postmenstrual age (PMA).
Conclusions:
Infants with gestational age below 28 weeks at birth have remarkably impaired lung function at term, regardless of whether they carry the diagnosis BPD or not. All very immature infants may be at risk of future respiratory disease and should be monitored appropriately.
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