Tomographic Study of the Inflection Points of the Pressure–Volume Curve in Acute Lung Injury
- 15 November 2004
- journal article
- research article
- Published by American Thoracic Society in American Journal of Respiratory and Critical Care Medicine
- Vol. 170 (10), 1066-1072
- https://doi.org/10.1164/rccm.200312-1644oc
Abstract
The inflection points of the pressure-volume curve have been used for setting mechanical ventilation in patients with acute lung injury. However, the lung status at these points has never been specifically addressed. In 12 patients with early lung injury we traced both limbs of the pressure-volume curve by means of a stepwise change in airway pressure, and a computed tomography (CT) scan slice was obtained for every pressure level. Although aeration (increase in normally aerated lung) and recruitment (decrease in nonaerated lung) were parallel and continuous along the pressure axis during inflation, loss of aeration and derecruitment were only significant at pressures below the point of maximum curvature on the deflation limb of the pressure-volume curve. This point was related to a higher amount of normally aerated tissue and a lower amount of nonaerated tissue when compared with the lower inflection point on both limbs of the curve. Aeration at the inflection points was similar in lung injury from pulmonary or extrapulmonary origin. There were no significant changes in hyperinflated lung tissue. These results support the use of the deflation limb of the pressure-volume curve for positive end-expiratory pressure setting in patients with acute lung injury.Keywords
This publication has 46 references indexed in Scilit:
- Setting Mean Airway Pressure during High-frequency Oscillatory Ventilation According to the Static Pressure–Volume Curve in Surfactant-deficient Lung InjuryAnesthesiology, 2003
- Application of continuous positive airway pressure to trace static pressure-volume curves of the respiratory systemCritical Care Medicine, 2003
- Morphometric Effects of the Recruitment Maneuver on Saline-lavaged Canine LungsAnesthesiology, 2003
- Acute respiratory distress syndrome: Lessons from computed tomography of the whole lungCritical Care Medicine, 2003
- Lung-protective ventilation strategies in acute lung injuryCritical Care Medicine, 2003
- Optimal Mean Airway Pressure during High-frequency OscillationAnesthesiology, 2001
- Ventilation with Lower Tidal Volumes as Compared with Traditional Tidal Volumes for Acute Lung Injury and the Acute Respiratory Distress SyndromeNew England Journal of Medicine, 2000
- Lung recruitment during small tidal volume ventilation allows minimal positive end-expiratory pressure without augmenting lung injuryCritical Care Medicine, 1999
- Effect of a Protective-Ventilation Strategy on Mortality in the Acute Respiratory Distress SyndromeNew England Journal of Medicine, 1998
- Volume/pressure curve of total respiratory system in paralysed patients: artefacts and correction factorsIntensive Care Medicine, 1987