Literature DB >> 11435250

Recruitment and derecruitment during acute respiratory failure: an experimental study.

P Pelosi1, M Goldner, A McKibben, A Adams, G Eccher, P Caironi, S Losappio, L Gattinoni, J J Marini.   

Abstract

We aimed to elucidate the relationships between pleural (Ppl), esophageal (Pes), and superimposed gravitational pressures in acute lung injury, and to understand the mechanisms of recruitment and derecruitment. In six dogs with oleic acid respiratory failure, we measured Pes and Ppl in the uppermost, middle, and most dependent lung regions. Each dog was studied at positive end-expiratory pressure (PEEP) of 5 and 15 cm H2O and three levels of tidal volume (VT; low, medium, and high). For each PEEP-VT combination, we obtained a computed tomographic (CT) scan at end-inspiration and end-expiration. The variations of Ppl and Pes pressures were correlated (r = 0.86 +/- 0.07, p < 0.0001), as was the vertical gradient of transpulmonary (PL) and superimposed pressure (r = 0.92, p < 0.0001). Recruitment proceeded continuously along the entire volume-pressure curve. Estimated threshold opening pressures were normally distributed (mode = 20 to 25 cm H2O). The amount of end-expiratory collapse at the same PEEP and PL was significantly lower when ventilation was performed at high VT. End-inspiratory and end-expiratory collapse were highly correlated (r = 0.86, p < 0.0001), suggesting that as more tissue is recruited at end-inspiration, more remains recruited at end-expiration. When superimposed pressure exceeded applied airway pressure (Paw), collapse significantly increased.

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Year:  2001        PMID: 11435250     DOI: 10.1164/ajrccm.164.1.2007010

Source DB:  PubMed          Journal:  Am J Respir Crit Care Med        ISSN: 1073-449X            Impact factor:   21.405


  127 in total

1.  Ventilator-induced lung injury, cytokines, PEEP, and mortality: implications for practice and for clinical trials.

Authors:  Arthur S Slutsky; Yumiko Imai
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2.  Dynamic elastic pressure-volume loops in healthy pigs recorded with inspiratory and expiratory sinusoidal flow modulation. Relationship to static pressure-volume loops.

Authors:  Ulrika Bitzén; Björn Drefeldt; Lisbet Niklason; Björn Jonson
Journal:  Intensive Care Med       Date:  2004-02-13       Impact factor: 17.440

3.  Transpulmonary pressure as a surrogate of plateau pressure for lung protective strategy: not perfect but more physiologic.

Authors:  Jean-Christophe M Richard; John J Marini
Journal:  Intensive Care Med       Date:  2012-02-10       Impact factor: 17.440

4.  Regional tidal ventilation and compliance during a stepwise vital capacity manoeuvre.

Authors:  Peter A Dargaville; Peter C Rimensberger; Inéz Frerichs
Journal:  Intensive Care Med       Date:  2010-08-06       Impact factor: 17.440

5.  Assisted ventilation modes reduce the expression of lung inflammatory and fibrogenic mediators in a model of mild acute lung injury.

Authors:  Felipe Saddy; Gisele P Oliveira; Cristiane S N B Garcia; Liliane M Nardelli; Andreia F Rzezinski; Debora S Ornellas; Marcelo M Morales; Vera L Capelozzi; Paolo Pelosi; Patricia R M Rocco
Journal:  Intensive Care Med       Date:  2010-03-24       Impact factor: 17.440

Review 6.  New and conventional strategies for lung recruitment in acute respiratory distress syndrome.

Authors:  Paolo Pelosi; Marcelo Gama de Abreu; Patricia R M Rocco
Journal:  Crit Care       Date:  2010-03-09       Impact factor: 9.097

7.  Reliability of transpulmonary pressure-time curve profile to identify tidal recruitment/hyperinflation in experimental unilateral pleural effusion.

Authors:  P Formenti; M Umbrello; J Graf; A B Adams; D J Dries; J J Marini
Journal:  J Clin Monit Comput       Date:  2016-07-20       Impact factor: 2.502

8.  Maintaining end-expiratory transpulmonary pressure prevents worsening of ventilator-induced lung injury caused by chest wall constriction in surfactant-depleted rats.

Authors:  Stephen H Loring; Matteo Pecchiari; Patrizia Della Valle; Ario Monaco; Guendalina Gentile; Edgardo D'Angelo
Journal:  Crit Care Med       Date:  2010-12       Impact factor: 7.598

9.  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

10.  The role of time and pressure on alveolar recruitment.

Authors:  Scott P Albert; Joseph DiRocco; Gilman B Allen; Jason H T Bates; Ryan Lafollette; Brian D Kubiak; John Fischer; Sean Maroney; Gary F Nieman
Journal:  J Appl Physiol (1985)       Date:  2008-12-12
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