View clinical trials related to Respiratory Distress Syndrome.
Filter by:The primary aim of this study is to quantify and compare changes in lung volumes (as measured by functional residual capacity) in premature infants stable on continuous positive airway pressure (CPAP), and then randomized to two additional weeks of CPAP and room air versus room air alone. We hypothesize that infants randomized to additional CPAP will demonstrate an increased functional residual capacity (at the end of the two week study period and prior to discharge) compared to those randomized to room air.
In this study, newborn babies with respiratory distress syndrome (RDS), receiving oxygen via nasal continuous airway pressure (CPAP) modalities, and needing surfactant treatment will be randomized to standard delivery of surfactant via and endotracheal tube airway (inserted after pre-medication for pain with a short-acting narcotic), or to surfactant delivery via laryngeal mask airway (LMA). The intent is to remove the airways and return babies to non-invasive CPAP support, after surfactant is given. The primary outcome measure is the rate of failure of initial surfactant therapy. Standardized failure criteria are reached: a) early, if the baby is unable to be placed back on non-invasive CPAP (i.e., needs tracheal intubation and mechanical ventilation) or, b) late, if the baby requires ventilation, retreatment with surfactant within 8 hours or more than 2 doses of surfactant. The objective of this protocol is to reduce the need for endotracheal intubation and mechanical ventilation in preterm neonates with RDS needing rescue surfactant therapy by instilling surfactant though an LMA, while achieving comparable efficacy of surfactant treatment. The hypothesis is that surfactant treatment through an LMA will decrease the proportion of babies with RDS who require mechanical ventilation or subsequent intubation, when compared to standard surfactant treatment following endotracheal intubation with sedation.
Mechanical ventilation used to support the sick newborn infant is associated with many complications including the development of chronic lung disease. Limiting prolonged invasive ventilation remains an important strategy to decrease lung injury and prevent chronic lung disease. Currently, there is no objective measure available to predict readiness for removal of the endotracheal tube ("extubation") and discontinuing mechanical ventilation in this fragile population. The investigators propose to predict extubation success by evaluating the electrical activity of the diaphragm (Edi), which provides important information about the "drive" to breathing coming from the brain and the function of the diaphragm, two essential factors determining extubation readiness and success.
To compare the 2 methods of weaning of nasal continuous positive airway pressure (CPAP) in premature babies born between 26 and 32 weeks
Lung recruitability is essential for optimal Positive end-expiratory pressure (PEEP) selection in ARDS patients. It is defined as the potential for the non aerated or poorly aerated lung mass to become aerated due to the increase in airway pressure. PEEP contributes to lung recruitment mostly by maintaining some amount of the end-inspiratory recruitment at the end of expiration. PEEP also stabilizes patency of the small airways and minimizes the repeated opening and closing of them during the breathing cycle, which is implicated in a further lung inflammation. The gold-standard method for assessing lung recruitability is lung CT scan. For economic and feasibility this technique cannot be used in routine. Therefore, techniques that can be used at the bedside to measure lung recruitability are very well known. The measurement of recruited lung volume (Vrec) by using pressure-volume curve generated by the ventilator is another reference method to approach lung recruitment. It can be done at the bedside. Chest-X-Ray (CXR) is an interesting option as done in routine in this setting. Furthermore, it allows quantifying aeration thanks numerical image processing and a regional approach. In a preliminary one-center study we found a significant negative correlation between the amount of Vrec and the reduction in lung density measured by digital CXR between 5 and 15 cm H2O PEEP. In present study we would like to extend this previous result on a larger number of patients in a multicenter investigation.
The primary objective of this study is to evaluate the safety and tolerability of aerosolized surfactant, specifically lucinactant for inhalation, administered in escalating inhaled doses to preterm neonates 29 to 34 weeks gestational age who are receiving nasal continuous positive airway pressure (nCPAP) for respiratory distress syndrome (RDS), compared to neonates receiving nCPAP alone.
Current pharmacological options to treat an hemodynamically significant PDA (HsPDA) in preterm infants are limited to non-selective cyclo-oxygenase (COX) inhibitors, indomethacin or ibuprofen. Recently paracetamol exposure has been reported to successful closure of PDA. Aim of this randomized double-blind controlled study is to compare the efficacy and the safety of standard PDA treatment ibuprofen versus paracetamol-experimental treatment . We hypothesize that paracetamol is more effective than ibuprofen in closing PDA, perhaps ameliorating the safety profile of the pharmacological treatment.
The nasal CPAP (continuous positive airway pressure), is a technique of noninvasive ventilation commonly used in neonatal intensive care units, and has recently been used in association with nasal intermittent mandatory ventilation (NIPPV - intermittent Nasal Positive Pressure Ventilation), which consists of the application of respiratory positive pressure cycles during the application of nasal CPAP, resulting in high pharyngeal pressures. The NIPPV has advantages over traditional CPAP, including the prevention of atelectasis, improved respiratory mechanics and decreased work of breathing in premature infants. A refinement of this technique is the use of positive pressure breaths associated with nasal CPAP synchronously in relation to the newborn's inspiratory effort (SNIPPV - Synchronized Nasal Positive Pressure Ventilation). Synchronization allows that the cycles of inspiratory positive pressure provided by the ventilator coincide with the inspiratory effort, increasing the system efficacy. The Neurally Adjusted Ventilatory Assist (NAVA) is a mode of partial ventilatory support based on the use of electrical activity of the diaphragm (Edi) to control the mechanical ventilator. The ventilatory assistance starts according to respiratory needs of the patient, its use in very low birth weight infants showed an improvement in patient-ventilator interaction, even in the presence of leak around the endotracheal tube. This prospective randomized, clinical trial aims to evaluate, in preterm infants with gestational age lower than 34 weeks with respiratory failure treated with noninvasive ventilatory support, the impact of SNIPPV with neural adjustment (NAVA) on success ventilation and the need for endotracheal intubation when compared to treatment with traditional CPAP.
Infants showing high local pulmonary inflammation diagnosted by respiratory distress syndrome usually need the second or more pulmonary surfactant and is easier to developing to Brochopulmonary. Cursurf is used worldwide in infants with respiratory distress syndrome, Budesonide is a glucocorticoid with a high local anti-inflammatory effect.Our hypothesis is Cursurf combined with Budesonide could reduced the need of Cursurf and incidence of Brochopulmonary dysplasia.
There are various methods to generate the pressure needed for Nasal CPAP. Some neonatal intensive care units (NICU) use an underwater bubbling system and others use a ventilator to generate the pressure. There is no right or wrong way to generate the pressure and both methods are approved and accepted. The aim of this study is to compare the two systems of Nasal CPAP by placing the baby on each for a defined time period and reviewing the infant's vital signs. The investigators expect that the pressure generated by bubble CPAP will be better and lead to improved vital signs.