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Published on: May 4, 2020
Rescue high frequency jet ventilation versus conventional ventilation for severe pulmonary dysfunction in preterm
Insights
High frequency jet ventilation (HFJV) did not significantly reduce overall mortality in preterm infants compared to conventional ventilation (CV). However, HFJV showed potential for lower mortality when used as a rescue treatment before crossover, with no increased adverse effects.
Area of Science:
- Neonatal Medicine
- Pediatric Respiratory Medicine
- Critical Care
Background:
- Chronic pulmonary disease is a leading cause of mortality and morbidity in very low birth weight infants.
- Lung injury from mechanical ventilation and oxygen toxicity are key factors in chronic pulmonary disease pathogenesis.
- High frequency jet ventilation (HFJV) may mitigate lung injury in animal and adult studies.
Purpose of the Study:
- To evaluate if HFJV reduces mortality and morbidity in preterm infants with severe pulmonary dysfunction compared to conventional ventilation (CV).
- To assess for an increase in adverse effects with HFJV use.
Main Methods:
- Systematic review of randomized and quasi-randomized controlled trials.
- Searched MEDLINE, Cochrane CENTRAL, and EMBASE databases (up to August 2005).
- Included preterm infants (<35 weeks gestation or <2000g) with respiratory distress, comparing rescue HFJV to CV.
Main Results:
- One trial (144 infants) met inclusion criteria; crossover was permitted.
- No significant difference in overall mortality between HFJV and CV groups (RR 1.07).
- Secondary analysis indicated lower mortality with rescue HFJV before crossover (RR 0.66), with no increased adverse effects (CLD, IVH, air leaks, etc.).
Conclusions:
- Overall mortality was not significantly different between rescue HFJV and CV.
- Rescue HFJV showed a trend towards lower mortality before crossover.
- The single included study had limitations (small size, crossover design, pre-surfactant era), necessitating further research in high-risk populations with long-term outcome assessment.
Background:
Chronic pulmonary disease is a major cause of mortality and morbidity in very low birth weight infants despite increased use of antenatal steroids and surfactant therapy. Ventilator injury and oxygen toxicity are thought to be important factors in the pathogenesis of chronic pulmonary disease. There is evidence in animal studies and adult human studies that high frequency jet ventilation may reduce the severity of lung injury associated with mechanical ventilation.
Objectives:
In preterm infants with severe pulmonary dysfunction, does the use of high frequency jet ventilation (HFJV) compared to conventional ventilation (CV) reduce mortality and morbidity without an increase in adverse effects?
Search Strategy:
We searched MEDLINE (1966 - August 2005), Cochrane Central Register of Controlled Trials (CENTRAL, The Cochrane Library, Issue 3, 2005), and EMBASE (1988 - August 2005). Information was also obtained from experts in the field and cross references were checked.
Selection Criteria:
Randomized and quasi-randomized controlled trials of rescue high frequency jet ventilation versus conventional ventilation in preterm infants born at less than 35 weeks of gestation or with a birth weight less than 2000 grams with respiratory distress were included in the systematic review.
Data Collection And Analysis:
The standard methods of the Cochrane Neonatal Review Group were used, including independent trial assessment and data extraction. Data were analysed using relative risk (RR) and risk difference (RD).
Main Results:
Two randomized trials were identified. One trial (Engle 1997) was excluded as the study was restricted to term and near-term infants. The included trial (Keszler 1991) randomized 166 preterm infants and reported data on 144 infants. Cross-over to the alternate treatment was permitted if the initial treatment failed. There was no statistically significant difference in the overall mortality (including survival after cross-over) between the two groups [RR 1.07, (95% CI 0.67, 1.72)]. The survival by original assignment was identical. In a secondary analysis, the study demonstrated rescue treatment with HFJV, up until the time of cross-over, was associated with lower mortality, [RR 0.66 (95% CI 0.45,0.97)]. No significant differences were found in the incidence of CLD in survivors at 28 days of age, IVH, new air leaks, airway obstruction and necrotizing tracheobronchitis.
Authors' Conclusions:
There was no significant difference in the overall mortality between rescue high frequency jet ventilation and conventional groups. In a secondary analysis, rescue treatment with HFJV, up until the time of cross-over, was associated with lower mortality. There was no significant increase in adverse effects like intraventricular hemorrhage, new air leaks, airway obstruction and necrotizing tracheobronchitis with rescue high frequency jet ventilation. The included study was done before the introduction of surfactant and widespread use of antenatal steroids. The number of infants included was small and there were high numbers of post randomization exclusions. Due to the crossover design and small numbers of infants in the included study, there is insufficient information to assess the effectiveness of rescue HFJV in preterm infants. Studies that target the most at-risk population and have appropriate power to assess some of the important outcomes are needed. These trials would also need to incorporate long term pulmonary and neurodevelopmental outcomes.
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