Background Real-time bedside information on regional ventilation and perfusion during mechanical ventilation (MV) may help to elucidate the physiological and pathophysiological effects of MV settings in healthy and injured lungs. We aimed to study the effects of positive end-expiratory pressure (PEEP) and tidal volume (V-T) on the distributions of regional ventilation and perfusion by electrical impedance tomography (EIT) in healthy and injured lungs. Methods One-hit acute lung injury model was established in 6 piglets by repeated lung lavages (injured group). Four ventilated piglets served as the control group. A randomized sequence of any possible combination of three V-T (7, 10, and 15 ml/kg) and four levels of PEEP (5, 8, 10, and 12 cmH...
Objective: A large tidal volume (VT) and lung collapse and re-expansion may cause ventilator-induced...
Measurement of regional lung volume changes during a quasi-static pressure-volume (PV) manoeuvre usi...
Background A recent method determines regional gas flow of the lung by electrical impedance tomog...
Background: Real-time bedside information on regional ventilation and perfusion during mechanical ve...
INTRODUCTION: Lung-protective ventilation aims at using low tidal volumes (VT) at optimum positive e...
<div><p>Introduction</p><p>Lung-protective ventilation aims at using low tidal volumes (V<sub>T</sub...
Introduction: Lung-protective ventilation aims at using low tidal volumes (VT) at optimum positive e...
), and end-expiratory lung volume (EELV) in an animal model of acute lung injury (ALI) and patients ...
Abstract Lung protective ventilation in acute lung injury (ALI) focuses on using low tidal volumes a...
Background The physiological response and the potentially beneficial effects of positive end-expirat...
Background The physiological response and the potentially beneficial effects of positive end-expirat...
Abstract Mechanical ventilation can initiate ventilator-associated lung injury (VALI) and contribute...
BACKGROUND: A recent method determines regional gas flow of the lung by electrical impedance tomogra...
Rationale: Individualized positive end-expiratory pressure (PEEP) titration might be beneficial in p...
Background Changes in the shape of the capnogram may reflect changes in lung physiology. We studied ...
Objective: A large tidal volume (VT) and lung collapse and re-expansion may cause ventilator-induced...
Measurement of regional lung volume changes during a quasi-static pressure-volume (PV) manoeuvre usi...
Background A recent method determines regional gas flow of the lung by electrical impedance tomog...
Background: Real-time bedside information on regional ventilation and perfusion during mechanical ve...
INTRODUCTION: Lung-protective ventilation aims at using low tidal volumes (VT) at optimum positive e...
<div><p>Introduction</p><p>Lung-protective ventilation aims at using low tidal volumes (V<sub>T</sub...
Introduction: Lung-protective ventilation aims at using low tidal volumes (VT) at optimum positive e...
), and end-expiratory lung volume (EELV) in an animal model of acute lung injury (ALI) and patients ...
Abstract Lung protective ventilation in acute lung injury (ALI) focuses on using low tidal volumes a...
Background The physiological response and the potentially beneficial effects of positive end-expirat...
Background The physiological response and the potentially beneficial effects of positive end-expirat...
Abstract Mechanical ventilation can initiate ventilator-associated lung injury (VALI) and contribute...
BACKGROUND: A recent method determines regional gas flow of the lung by electrical impedance tomogra...
Rationale: Individualized positive end-expiratory pressure (PEEP) titration might be beneficial in p...
Background Changes in the shape of the capnogram may reflect changes in lung physiology. We studied ...
Objective: A large tidal volume (VT) and lung collapse and re-expansion may cause ventilator-induced...
Measurement of regional lung volume changes during a quasi-static pressure-volume (PV) manoeuvre usi...
Background A recent method determines regional gas flow of the lung by electrical impedance tomog...