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Updated: Jan 25, 2026

Transcutaneous Microcirculatory Imaging in Preterm Neonates
Published on: December 31, 2015
Prospective observational study of early respiratory management in preterm neonates less than 35 weeks of gestation
Fernando R Moya1, Jan Mazela2, Paul M Shore3
1University of North Carolina School of Medicine, Chapel Hill, NC, USA.
Insights
Endotracheal intubation (ETI) rates for respiratory distress syndrome (RDS) vary significantly in premature infants, despite guidelines recommending continuous positive airway pressure (CPAP) first. This wide variation in ETI practice suggests potential for improved management strategies.
Area of Science:
- Neonatal Medicine
- Pediatric Respiratory Care
- Clinical Practice Guidelines
Background:
- Current guidelines advocate for continuous positive airway pressure (CPAP) as the primary respiratory support for neonates with respiratory distress syndrome (RDS).
- Endotracheal intubation (ETI) is reserved for severe cases, yet its actual incidence and timing in practice are not well-documented.
Purpose of the Study:
- To investigate the incidence and timing of endotracheal intubation (ETI) in preterm neonates across different gestational ages (GAs).
- To assess variations in ETI practices among neonatal intensive care units (NICUs) in the US, Canada, and Poland.
Main Methods:
- A prospective observational study involving 2093 preterm neonates across 27 NICUs in the US, Canada, and Poland.
- Data collected included demographics, respiratory support modalities (CPAP, ETI), surfactant administration, and neonatal morbidities.
- Infants were categorized by gestational age: 26-28, 29-32, and 33-34 weeks.
Main Results:
- Overall ETI rates were highest in the 26-28 week GA group (74%), followed by 29-32 weeks (33%) and 33-34 weeks (16%).
- Significant variability in ETI rates and timing was observed within countries and even between NICUs, particularly for the youngest infants.
- While overall intubation rates were similar between countries, specific site practices showed wide divergence.
Conclusions:
- Despite established guidelines, the rate and timing of ETI for RDS exhibit considerable variability among NICUs.
- This variation appears unrelated to illness severity, highlighting a need for standardized approaches.
- Further research is warranted to understand the impact of this variability on outcomes and to develop strategies to minimize unnecessary ETI.
Background:
Current guidelines for management of respiratory distress syndrome (RDS) recommend continuous positive airway pressure (CPAP) as the primary mode of respiratory support even in the most premature neonates, reserving endotracheal intubation (ETI) for rescue surfactant or respiratory failure. The incidence and timing of ETI in practice is poorly documented.
Methods:
In 27 Level III NICUs in the US (n = 19), Canada (n = 3) and Poland (n = 5), demographics and baseline characteristics, respiratory support modalities including timing of ETI, administration of surfactant and caffeine/other methylxanthines, and neonatal morbidities were prospectively recorded in consecutive preterm neonates following written parental consent. Infants were divided into three groups according to gestational age (GA) at birth, namely 26-28, 29-32 and 33-34 weeks. Statistical comparisons between groups were done using Chi-Square tests.
Results:
Of 2093 neonates (US = 1507, 254 Canada, 332 Poland), 378 (18%) were 26-28 weeks gestational age (GA), 835 (40%) were 29-32 weeks, and 880 (42%) were 33-34 weeks. Antenatal steroid use was 81% overall, and approximately 89% in neonates ≤32 weeks. RDS incidence and use of ventilatory or supplemental oxygen support were similar across all sites. CPAP was initiated in 43% of all infants, being highest in the 29-32-week group, with a lower proportion in other GA categories (p < 0.001). The overall rate of ETI was 74% for neonates 26-28 weeks (42% within 15 min of birth, 49% within 60 min, and 57% within 3 h), 33% for 29-32 weeks (13 16 and 21%, respectively), and 16% for 33-34 weeks (5, 6 and 8%, respectively). Overall intubation rates and timing were similar between countries in all GAs. Rates within each country varied widely, however. Across US sites, overall ETI rates in 26-28-week neonates were 30-60%, and ETI within 15 min varied from 0 to 83%. Similar within 15-min variability was seen at Polish sites (22-67%) in this GA, and within all countries for 29-32 and 33-34-week neonates.
Conclusion:
Despite published guidelines for management of RDS, rate and timing of ETI varies widely, apparently unrelated to severity of illness. The impact of this variability on outcome is unknown but provides opportunities for further approaches which can avoid the need for ETI.
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