Background And Objectives: Noninvasive positive pressure ventilation (NPPV) has been routinely used to assist the weaning of the mechanical ventilation. One of the applications most common is in patients who had acute respiratory failure after extubation, even the scientific evidences for this indication still controversy. The aims of this study were to evaluate the index of patients that evolve for respiratory failure after extubation and evaluated the effectiveness of NPPV to avoid the need for reintubation and to promote increase in success index of weaning.
Methods: We conducted a transversal and prospective study. It was applied to NPPV in the patients who presented respiratory failure after extubation, independent of its etiology. NPPV was applied in to pressure support ventilation, with Vte for 6 to 8 mL/kg, PEEP and FiO2 adjusted to reach SaO2 > 95%. The NPPV was accomplished of a continuous mould even interrupt the signs of respiratory failure presented initially. The success of weaning and the NPPV was defined when the clinical events were reverted by a period greater than 48 hours in spontaneous breathing, avoid thus reintubation.
Results: We included 103 patients. Noted that 32% (33) evolved with signals of respiratory failure after extubation and were submitted to NPPV. The time of NPPV was on mean 8 ± 5 hours, PSV of 12 ± 2 cmH2O, PEEP of 7 ± 2 cmH2O, FiO2 of 40% ± 20%, Vte of 462 ± 100 mL, RR of 26 ± 5 rpm. Among patients who accomplished NPPV (33), 76% (25) attended with success and them afterwards let the ICU. Of the patients assigned to NPPV, 24% (8) did not tolerate the procedure and were reintubated.
Conclusions: We conclude that NPPV is safe and effective in averting the need for reintubation in patients with respiratory failure after extubation.
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Seizure
January 2025
University of Adelaide, Adelaide SA 5005, Australia; Flinders University, Bedford Park SA 5042, Australia; Lyell McEwin Hospital, Elizabeth Vale SA 5112, Australia; Department of Neurology and the Center for Genomic Medicine, Massachusetts General Hospital and Harvard Medical School, Boston MA 02138, USA.
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PLoS One
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Asthma and Air Quality Branch, Division of Environmental Health Science and Practice, National Center for Environmental Health, Centers for Disease Control and Prevention, Atlanta, Georgia, United States of America.
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Department of Biostatistics and Medical Informatics, Faculty of Medicine, Kocaeli University, Kocaeli, Turkey.
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Department of Clinical Neurosciences, John Van Geest Centre for Brain Repair, University of Cambridge, Robinson Way, Cambridge, CB2 0PY, UK.
Ataxia-Telangiectasia (A-T) is a very rare multisystem disease of DNA repair, associated with progressive disabling neurological symptoms, respiratory failure, immunodeficiency and cancer predisposition, leading to premature death. There are no curative treatments available for A-T but clinical trials have begun. A major limiting factor in effectively evaluating therapies for A-T is the lack of suitable outcome measures and biomarkers.
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NTTR-NCVC Bio Digital Twin Center, National Cerebral and Cardiovascular Center, Suita, Osaka, Japan.
Positive end-expiratory pressure (PEEP) improves respiratory conditions. However, the complex interaction between PEEP and hemodynamics in heart failure patients makes it challenging to determine appropriate PEEP settings. In this study, we developed a framework for the impact of PEEP on hemodynamics considering cardiac function, by integrating the impact of PEEP in the generalized circulatory equilibrium framework, and validated the framework by assessing its ability to accurately predict PEEP-induced hemodynamics.
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