Nasal continuous positive airway pressure following surfactant replacement for the treatment of neonatal respiratory distress syndrome.
Bai‐Horng So, Masanori Tamura, Shigehiko Kamoshita
Abstract
Bai‐Horng So, Masanori Tamura, Shigehiko Kamoshita
Abstract
To evaluate whether nasal continuous positive airway pressure (N-CPAP) could be an alternative to ventilator treatment in infants with severe respiratory distress syndrome (RDS) after surfactant treatment, we performed the trial on 15 newborn babies with birth weight > or = 1500 g. All babies were put on N-CPAP as soon as the diagnosis of RDS was established. The N-CPAP system that we used in this study consisted of no ventilator. When FiO2 > or = 0.7 was required for maintaining PaO2 > 50 mmHg, surfactant treatment was decided. After the tracheal instillation of surfactant (120 mg/kg body weight), the babies were randomly assigned into 2 groups. In the ventilator group (n = 7), the babies were connected to mechanical ventilation following surfactant instillation. In the N-CPAP group (n = 8), the babies were extubated immediately after instillation of surfactant and were connected to N-CPAP. There was a marked improvement in the ratio of arterial PO2 to alveolar PO2 (a/A PO2) immediately following surfactant treatment and the effect was sustained during the study period of 72 hours in both groups. No significant differences in a/A PO2 were noted in 2 groups. There was a significantly higher PaCO2 in the N-CPAP group than in the ventilator group. PaCO2 declined significantly in the ventilator group 8 hours after surfactant treatment. A delayed decline in PaCO2 until 48 hours after surfactant instillation in the N-CPAP group was noted.(ABSTRACT TRUNCATED AT 250 WORDS)
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To evaluate whether nasal continuous positive airway pressure (N-CPAP) could be an alternative to ventilator treatment in infants with severe respiratory distress syndrome (RDS) after surfactant treatment, we performed the trial on 15 newborn babies with birth weight > or = 1500 g. All babies were put on N-CPAP as soon as the diagnosis of RDS was established. The N-CPAP system that we used in this study consisted of no ventilator. When FiO2 > or = 0.7 was required for maintaining PaO2 > 50 mmHg, surfactant treatment was decided. After the tracheal instillation of surfactant (120 mg/kg body weight), the babies were randomly assigned into 2 groups. In the ventilator group (n = 7), the babies were connected to mechanical ventilation following surfactant instillation. In the N-CPAP group (n = 8), the babies were extubated immediately after instillation of surfactant and were connected to N-CPAP. There was a marked improvement in the ratio of arterial PO2 to alveolar PO2 (a/A PO2) immediately following surfactant treatment and the effect was sustained during the study period of 72 hours in both groups. No significant differences in a/A PO2 were noted in 2 groups. There was a significantly higher PaCO2 in the N-CPAP group than in the ventilator group. PaCO2 declined significantly in the ventilator group 8 hours after surfactant treatment. A delayed decline in PaCO2 until 48 hours after surfactant instillation in the N-CPAP group was noted.(ABSTRACT TRUNCATED AT 250 WORDS)
Key concepts: Medicine, Continuous positive airway pressure, Respiratory distress, Pulmonary surfactant, Neonatal respiratory distress syndrome, Anesthesia, Mechanical ventilation, Mean airway pressure