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Preoxygenation Techniques for Tracheal Intubation in Critically Ill Adults Utilizing Oxygen Mask and Noninvasive Ventilation
Published on: December 5, 2025
Reduced intubation rates for infants after introduction of high-flow nasal prong oxygen delivery
A Schibler1, T M T Pham, K R Dunster
1Paediatric Critical Care Research Group, Mater Health Services, South Brisbane, Australia.
Insights
High-flow nasal prong (HFNP) therapy significantly altered respiratory support in infants under 24 months. HFNP use reduced the need for invasive ventilation, particularly in infants with viral bronchiolitis, with no identified adverse events.
Area of Science:
- Pediatric Intensive Care
- Respiratory Support
- Neonatal Medicine
Background:
- High-flow nasal prong (HFNP) therapy is increasingly used for respiratory support in infants.
- Understanding its impact on ventilatory practices and patient outcomes is crucial.
Purpose of the Study:
- To evaluate changes in ventilatory practice following HFNP introduction in infants <24 months.
- To identify patient subgroups requiring escalated ventilation and assess HFNP-related adverse events.
Main Methods:
- Retrospective chart review of infants (<24 months) receiving HFNP therapy.
- Data extraction from local PICU database and ANZPIC registry for infants with bronchiolitis.
Main Results:
- 298 infants received HFNP therapy; 12% required escalation to invasive ventilation.
- In viral bronchiolitis subgroup (n=167), only 4% needed invasive ventilation.
- Intubation rates for viral bronchiolitis decreased from 37% to 7% with increased HFNP use; no adverse events reported.
Conclusions:
- HFNP therapy has significantly impacted ventilatory strategies in infants.
- HFNP appears to reduce the requirement for intubation in infants with viral bronchiolitis.
Purpose:
To describe the change in ventilatory practice in a tertiary paediatric intensive care unit (PICU) in the 5-year period after the introduction of high-flow nasal prong (HFNP) therapy in infants <24 months of age. Additionally, to identify the patient subgroups on HFNP requiring escalation of therapy to either other non-invasive or invasive ventilation, and to identify any adverse events associated with HFNP therapy.
Methods:
The study was a retrospective chart review of infants <24 months of age admitted to our PICU for HFNP therapy. Data was also extracted from both the local database and the Australian New Zealand paediatric intensive care (ANZPIC) registry for all infants admitted with bronchiolitis.
Results:
Between January 2005 and December 2009, a total of 298 infants <24 months of age received HFNP therapy. Overall, 36 infants (12%) required escalation to invasive ventilation. In the subgroup with a primary diagnosis of viral bronchiolitis (n = 167, 56%), only 6 (4%) required escalation to invasive ventilation. The rate of intubation in infants with viral bronchiolitis reduced from 37% to 7% over the observation period corresponding with an increase in the use of HFNP therapy. No adverse events were identified with the use of HFNP therapy.
Conclusion:
HFNP therapy has dramatically changed ventilatory practice in infants <24 months of age in our institution, and appears to reduce the need for intubation in infants with viral bronchiolitis.
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