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Agnese Angeli

Publications and source records attributed to Agnese Angeli.

2 recordsLinked to original sources

Nasal bilevel vs. continuous positive airway pressure in preterm infants.

Our aim was to compare the effects of nasal bilevel positive airway pressure (N-BiPAP) and nasal continuous positive airway pressure (N-CPAP) on gas exchange in preterm babies. Twenty preterm infants (mean gestational age, 26.3 weeks; mean weight at study, 1,033 g) were evaluated. Patients received two repeated cycles of N-CPAP alternated with N-BiPAP, for a total of four alternated phases, each phase lasting 1 hr. Transcutaneous PO2 (TcPO2), transcutaneous PCO2 (tcPCO2), pulsoximetry, and respiratory rate were recorded every 15 min. Arterial blood gases and acid-base balance were measured at the beginning of the first study period on baseline CPAP and at the end of the last study period on bilevel positive airway pressure. During the two N-BiPAP phases, a statistically significant (P < 0.001) increase of peripheral oxygen saturation and tcPO2, and a significant (P < 0.001) reduction of tcPCO2 and respiratory rate, were noted as compared to the two N-CPAP periods. In addition, a significant improvement of PO2 (P < 0.003) and a reduction of PCO2 were noted at the end of the test (P < 0.02). In conclusion, N-BiPAP, as compared to N-CPAP, improved gas exchange in preterm infants.

Blood Gas Analysis↗

High-frequency partial liquid ventilation in two infants.

Two infants on high-frequency oscillatory ventilation for chronic lung disease and severe respiratory failure, received a bolus of warmed and oxygenated perfluorodecalin up to residual functional capacity, followed by a continuous infusion of 6 ml/kg/hour. Our aim was to improve gas exchange without increasing ventilatory-induced lung injury. Heart rate, oxygen saturation, blood pressure, and TcPO(2)/TcPCO(2) were continuously monitored during treatment. Arterial blood gas was evaluated every 3 hours. Both patients showed improvement of gas exchange with a 13.6 and 12.5% reduction of oxygenation index, respectively. High-frequency partial liquid ventilation is an experimental ventilation technique that could be considered as rescue treatment, to improve oxygenation in subjects with critical respiratory failure. This method could probably produce less damage, than other ventilation modes, to severely injured lungs.

Female↗