Literature DB >> 11356770

Mechanics of edematous lungs.

T A Wilson1, R C Anafi, R D Hubmayr.   

Abstract

Using the parenchymal marker technique, we measured pressure (P)-volume (P-V) curves of regions with volumes of approximately 1 cm3 in the dependent caudal lobes of oleic acid-injured dog lungs, during a very slow inflation from P = 0 to P = 30 cmH2O. The regional P-V curves are strongly sigmoidal. Regional volume, as a fraction of volume at total lung capacity, remains constant at 0.4-0.5 for airway P values from 0 to approximately 20 cmH2O and then increases rapidly, but continuously, to 1 at P = approximately 25 cmH2O. A model of parenchymal mechanics was modified to include the effects of elevated surface tension and fluid in the alveolar spaces. P-V curves calculated from the model are similar to the measured P-V curves. At lower lung volumes, P increases rapidly with lung volume as the air-fluid interface penetrates the mouth of the alveolus. At a value of P = approximately 20 cmH2O, the air-fluid interface is inside the alveolus and the lung is compliant, like an air-filled lung with constant surface tension. We conclude that the properties of the P-V curve of edematous lungs, particularly the knee in the P-V curve, are the result of the mechanics of parenchyma with constant surface tension and partially fluid-filled alveoli, not the result of abrupt opening of airways or atelectatic parenchyma.

Entities:  

Mesh:

Year:  2001        PMID: 11356770     DOI: 10.1152/jappl.2001.90.6.2088

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  16 in total

1.  Dynamic alveolar mechanics in four models of lung injury.

Authors:  Joseph D DiRocco; Lucio A Pavone; David E Carney; Charles J Lutz; Louis A Gatto; Steve K Landas; Gary F Nieman
Journal:  Intensive Care Med       Date:  2005-12-02       Impact factor: 17.440

Review 2.  Cellular stress failure in ventilator-injured lungs.

Authors:  Nicholas E Vlahakis; Rolf D Hubmayr
Journal:  Am J Respir Crit Care Med       Date:  2005-02-01       Impact factor: 21.405

3.  The concept of "baby lung".

Authors:  Luciano Gattinoni; Antonio Pesenti
Journal:  Intensive Care Med       Date:  2005-04-06       Impact factor: 17.440

Review 4.  The physical basis of ventilator-induced lung injury.

Authors:  Maria Plataki; Rolf D Hubmayr
Journal:  Expert Rev Respir Med       Date:  2010-06       Impact factor: 3.772

5.  Micromechanics of alveolar edema.

Authors:  Carrie E Perlman; David J Lederer; Jahar Bhattacharya
Journal:  Am J Respir Cell Mol Biol       Date:  2010-01-29       Impact factor: 6.914

6.  Junctional adhesion molecule A promotes epithelial tight junction assembly to augment lung barrier function.

Authors:  Leslie A Mitchell; Christina Ward; Mike Kwon; Patrick O Mitchell; David A Quintero; Asma Nusrat; Charles A Parkos; Michael Koval
Journal:  Am J Pathol       Date:  2014-11-28       Impact factor: 4.307

7.  Hyperoxia alters the mechanical properties of alveolar epithelial cells.

Authors:  Esra Roan; Kristina Wilhelm; Alex Bada; Patrudu S Makena; Vijay K Gorantla; Scott E Sinclair; Christopher M Waters
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2012-03-30       Impact factor: 5.464

8.  Na,K-ATPase expression is increased in the lungs of alcohol-fed rats.

Authors:  Jeffrey S Otis; Patrick O Mitchell; Corey D Kershaw; Pratibha C Joshi; David M Guidot
Journal:  Alcohol Clin Exp Res       Date:  2008-03-13       Impact factor: 3.455

9.  Effect of positive end-expiratory pressure on inflammatory response in oleic acid-induced lung injury and whole-lung lavage-induced lung injury.

Authors:  Koichi Nakazawa; Kuninori Yokoyama; Naoko Yamakawa; Koshi Makita
Journal:  J Anesth       Date:  2007-01-30       Impact factor: 2.078

10.  Neither fibrin nor plasminogen activator inhibitor-1 deficiency protects lung function in a mouse model of acute lung injury.

Authors:  Gilman B Allen; Mary E Cloutier; Yuna C Larrabee; Konstantin Tetenev; Stephen T Smiley; Jason H T Bates
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2008-12-05       Impact factor: 5.464

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