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 sup...
OBJECTIVES:: Positive pressure ventilation exposes the lung to mechanical stresses that can exacerba...
Background:Tidal recruitment/derecruitment (R/D) of collapsed regions in lung injury has been presum...
BACKGROUND: Lung protective ventilation using low end-inspiratory pressures and tidal volumes (VT) h...
In a model of acute lung injury, we showed that positive end-expiratory pressure (PEEP) and tidal vo...
Abstract In a model of acute lung injury, we showed that positive end-expiratory pressure (PEEP) an...
Abstract In a model of acute lung injury, we showed that positive end-expiratory pressure (PEEP) and...
Background:Tidal recruitment/derecruitment (R/D) of collapsed regions in lung injury has been presum...
Background: Tidal recruitment/derecruitment (R/D) of collapsed regions in lung injury has been presu...
Background: Tidal recruitment/derecruitment (R/D) of collapsed regions in lung injury has been presu...
International audienceObjectives: Positive pressure ventilation exposes the lung to mechanical stres...
International audienceObjectives: Positive pressure ventilation exposes the lung to mechanical stres...
International audienceObjectives: Positive pressure ventilation exposes the lung to mechanical stres...
International audienceObjectives: Positive pressure ventilation exposes the lung to mechanical stres...
ObjectivesPositive pressure ventilation exposes the lung to mechanical stresses that can exacerbate ...
BACKGROUND: Cyclic recruitment during mechanical ventilation contributes to ventilator associated lu...
OBJECTIVES:: Positive pressure ventilation exposes the lung to mechanical stresses that can exacerba...
Background:Tidal recruitment/derecruitment (R/D) of collapsed regions in lung injury has been presum...
BACKGROUND: Lung protective ventilation using low end-inspiratory pressures and tidal volumes (VT) h...
In a model of acute lung injury, we showed that positive end-expiratory pressure (PEEP) and tidal vo...
Abstract In a model of acute lung injury, we showed that positive end-expiratory pressure (PEEP) an...
Abstract In a model of acute lung injury, we showed that positive end-expiratory pressure (PEEP) and...
Background:Tidal recruitment/derecruitment (R/D) of collapsed regions in lung injury has been presum...
Background: Tidal recruitment/derecruitment (R/D) of collapsed regions in lung injury has been presu...
Background: Tidal recruitment/derecruitment (R/D) of collapsed regions in lung injury has been presu...
International audienceObjectives: Positive pressure ventilation exposes the lung to mechanical stres...
International audienceObjectives: Positive pressure ventilation exposes the lung to mechanical stres...
International audienceObjectives: Positive pressure ventilation exposes the lung to mechanical stres...
International audienceObjectives: Positive pressure ventilation exposes the lung to mechanical stres...
ObjectivesPositive pressure ventilation exposes the lung to mechanical stresses that can exacerbate ...
BACKGROUND: Cyclic recruitment during mechanical ventilation contributes to ventilator associated lu...
OBJECTIVES:: Positive pressure ventilation exposes the lung to mechanical stresses that can exacerba...
Background:Tidal recruitment/derecruitment (R/D) of collapsed regions in lung injury has been presum...
BACKGROUND: Lung protective ventilation using low end-inspiratory pressures and tidal volumes (VT) h...