Mechanical ventilation of the healthy lungs: lessons learned from recent trials.
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Summary
In patients with healthy lungs, data indicate that low tidal volume but not higher PEEP is beneficial, thereby, ventilation strategies differ from those in ARDS patients.
- Type
- review
- Published
- 2020-12-10
- Cited by
- 8
- References
- 40
- Access
- Open access
- OpenAlex
- https://openalex.org/W3112317331
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:229173922
Keywords
ARDS, Medicine, Tidal volume, Mechanical ventilation, Ventilation (architecture)
References
- Association between use of lung-protective ventilation with lower tidal volumes and clinical outcomes among patients without acute respiratory distress syndrome: a meta-analysis.
- High versus low positive end-expiratory pressure during general anaesthesia for open abdominal surgery (PROVHILO trial): a multicentre randomised controlled trial
- Protective versus Conventional Ventilation for Surgery: A Systematic Review and Individual Patient Data Meta-analysis
- Positive-end expiratory pressure reduces incidence of ventilator-associated pneumonia in nonhypoxemic patients*
- Association between tidal volume size, duration of ventilation, and sedation needs in patients without acute respiratory distress syndrome: an individual patient data meta-analysis
- Early positive end-expiratory pressure in the adult respiratory distress syndrome.
- Protective Mechanical Ventilation during General Anesthesia for Open Abdominal Surgery Improves Postoperative Pulmonary Function
- Ventilation with lower tidal volumes as compared with conventional tidal volumes for patients without acute lung injury: a preventive randomized controlled trial
- Are low tidal volumes safe?
- A trial of intraoperative low-tidal-volume ventilation in abdominal surgery.
- Association between driving pressure and development of postoperative pulmonary complications in patients undergoing mechanical ventilation for general anaesthesia: a meta-analysis of individual patient data.
- [Effect of high positive end-expiratory pressure for mechanical ventilation in the treatment of neurological pulmonary edema].
- [Effect of lung protection mechanical ventilation on respiratory function in the elderly undergoing spinal fusion].
- Mechanical Ventilation to Minimize Progression of Lung Injury in Acute Respiratory Failure.
- Effect of Conservative vs Conventional Oxygen Therapy on Mortality Among Patients in an Intensive Care Unit: The Oxygen-ICU Randomized Clinical Trial.
- Epidemiological characteristics, practice of ventilation, and clinical outcome in patients at risk of acute respiratory distress syndrome in intensive care units from 16 countries (PRoVENT): an international, multicentre, prospective study.
- Associations between positive end-expiratory pressure and outcome of patients without ARDS at onset of ventilation: a systematic review and meta-analysis of randomized controlled trials
- Hemodynamic effects of short-term hyperoxia after coronary artery bypass grafting
- High intraoperative inspiratory oxygen fraction and risk of major respiratory complications
- Epidemiology, practice of ventilation and outcome for patients at increased risk of postoperative pulmonary complications
Cited by
- Heart-Protective Mechanical Ventilation in Postoperative Cardiosurgical Patients
- Etomidate attenuates hyperoxia-induced acute lung injury in mice by modulating the Nrf2/HO-1 signaling pathway
- Individualized Mechanical power-based ventilation strategy for acute respiratory failure formalized by finite mixture modeling and dynamic treatment regimen
- Perioperative screening and management in elective complex hepatobiliary surgery
- Advanced Oxygen Therapy for the Small Animal Patient - High-Flow Oxygen Therapy and Mechanical Ventilation.
- Releasing high positive end-expiratory pressure to a low level generates a pronounced increase in particle flow from the airways
- The Role of Cuproptosis in Hyperoxia-Induced Lung Injury and Its Potential for Treatment
- Different particle flow from exhaled air after gradual increase of PEEP during mechanical ventilation
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