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Predictors of Mortality in Preterm Infants with Respiratory Distress Syndrome: A Retrospective Analysis
Lovro Vrakela1, Branka Polić1,2, Dina Mrčela2
1School of Medicine, University of Split, Soltanska 2, 21000 Split, Croatia.
Insights
Preterm infants with respiratory distress syndrome (RDS) have a high mortality rate, especially those born extremely early. Key survival predictors include gestational age, birth weight, and Apgar scores, with combined ventilation showing better outcomes.
Area of Science:
- Neonatology
- Pediatric Critical Care
- Respiratory Medicine
Background:
- Respiratory distress syndrome (RDS) is a common and serious condition in preterm infants.
- Effective management of RDS in the neonatal period is crucial for improving survival rates.
- Identifying predictors of mortality is essential for targeted interventions.
Purpose of the Study:
- To evaluate clinical outcomes in preterm infants with RDS.
- To identify predictors of mortality in this vulnerable population.
- To assess the impact of different ventilation strategies on outcomes.
Main Methods:
- Retrospective study of 86 preterm infants with RDS treated in a tertiary Pediatric Intensive Care Unit (PICU).
- Data collection included demographics, perinatal history, diagnoses, ventilation, surfactant, inotropes, antibiotics, and cranial ultrasound.
- Multivariable logistic regression was used to identify mortality predictors.
Main Results:
- Overall mortality was 18.6%, highest in extremely preterm infants (<28 weeks) and those with very low birth weight (<1000 g).
- Gestational age, birth weight, and Apgar scores were significant predictors of survival.
- Combined invasive and non-invasive ventilation was associated with lower mortality, while resuscitation and inotropic support indicated higher mortality.
Conclusions:
- Gestational age, birth weight, and early postnatal condition are critical determinants of survival in preterm infants with RDS.
- Optimized respiratory support, including non-invasive and combined ventilation, may improve outcomes.
- Early stabilization and prompt management of critical events are vital for reducing mortality.
Abstract:
Aims: The aim of this study was to evaluate clinical outcomes and identify predictors of mortality in preterm infants with respiratory distress syndrome (RDS) treated in a tertiary Pediatric Intensive Care Unit (PICU). Methods: This retrospective study included 86 preterm infants diagnosed with RDS and treated between January 2015 and December 2024. Clinical data were extracted from medical records and included demographic and anthropometric parameters, perinatal history, associated neonatal diagnoses, ventilation type and duration, surfactant administration, use of inotropes and antibiotics, cranial ultrasound findings, and PICU length of stay. Results: Mortality was 18.6%, with the highest rates observed in extremely preterm infants (<28 weeks) and those with extremely low birth weight (<1000 g). Several clinical variables were significantly associated with survival: gestational age, birth weight, birth length, and Apgar scores at 1 and 10 min (all p ≤ 0.005). In multivariable logistic regression, each additional week of gestation (OR 0.72, 95% CI 0.59-0.87), higher birth weight (OR 0.998, 95% CI 0.997-0.999), and higher Apgar scores (OR 0.69 at 1 min; OR 0.60 at 10 min) were significantly associated with survival. Ventilation was required in 97.7% of infants, and outcomes differed significantly by ventilation modality (p = 0.021), with the lowest mortality observed in those treated with combined invasive and non-invasive ventilation. Resuscitation (p < 0.001) and inotropic support (p < 0.001) were strongly associated with death. Length of PICU stay and duration of ventilation were significantly shorter in non-survivors (p < 0.05). Surfactant therapy was used in 79.1% of infants but was not significantly associated with survival. Conclusions: Gestational age, birth weight, and early postnatal condition were the strongest predictors of survival in preterm infants with RDS. Non-invasive and combined ventilation were associated with better outcomes, whereas the need for resuscitation and inotropes indicated markedly higher mortality. These results highlight the importance of early stabilization and optimized respiratory support in improving outcomes.
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