Effect of end-expiratory airway pressure on accumulation of extravascular lung water.
Explore this paper's citation graph
Summary
It is indicated that increasing end-expiratory airway pressure from zero to 10 cmH2O increases the accumulation of extravascular lung water when microvascular hydrostatic pressure is raised.
- Type
- article
- Published
- 1975-05-01
- Cited by
- 117
- References
- 0
- OpenAlex
- https://openalex.org/W1803705185
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:25800522
Keywords
Oncotic pressure, Lung, Hydrostatic pressure, Medicine, Positive end-expiratory pressure
References
No references recorded for this paper.
Cited by
- Least PEEP: primum non nocere.
- Physiological Aspects of Intermittent Positive Pressure Ventilation
- Bedside assessment of extravascular lung water by dilution methods: Temptations and pitfalls
- PEEP and CPAP
- Gas Exchange in the Respiratory Distress Syndromes
- The Effects of Positive End-Expiratory Pressure on Right and Left Ventricular Performance1–3
- Lung protective ventilatory strategies in acute lung injury and acute respiratory distress syndrome: from experimental findings to clinical application
- Mechanical factors determining pulmonary interstitial fluid pressure
- Adult respiratory distress syndrome--II. Management.
- Pulmonary care of the critically ill
- Positive end-expiratory pressure in acute lung injury.
- Pulmonary edema due to increased microvascular permeability to fluid and protein.
- Effects of PEEP on pulmonary mechanics and oxygen transport in the late stages of acute pulmonary failure
- Furosemide, when used in combination with positive end‐expiratory pressure, facilitates the resorption of extravascular lung water in experimental hydrostatic pulmonary oedema
- Pulmonary oedema: a review
- PEEP and pulmonary edema.
- Non-cardiac or cardiac pulmonary edema? A practical approach to clinical differentiation in critically ill patients.
- The use, abuse, and mystique of positive end-expiratory pressure.
- Alterations in Pulmonary Fluid Balance Induced by Positive End‐Expiratory Pressure
- Should mechanical ventilation be optimized to blood gases, lung mechanics, or thoracic CT scan?
Related papers
- The effect of sepsis and reduced colloid osmotic pressure on pulmonary edema.
- Colloid osmotic pressure as a prognostic indicator of pulmonary edema and mortality in the critically ill.
- Pulmonary edema during volume infusion.
- Pulmonary edema; a complication of diabetic ketoacidosis.
- Pulmonary edema in patients with sepsis.
- Pulmonary Edema Related to Changes in Colloid Osmotic and Pulmonary Artery Wedge Pressure in Patients after Acute Myocardial Infarction
- Pulmonary Edema During Volume Infusion
- Increases in plasma oncotic pressure during acute cardiogenic pulmonary edema.
- Uremic pulmonary edema.
- Fulminant noncardiogenic pulmonary edema in the critically ill