A nonlinear dynamic morphometric model of breathing mechanics during artificial ventilation is described. On the basis of the Weibel symmetrical representation of the tracheobronchial tree, the model accurately accounts for the geometrical and mechanical characteristics of the conductive zone and packs the respiratory zone into a viscoelastic Voigt body. The model also accounts for the main mechanisms limiting expiratory flow (wave speed limitation and viscous flow limitation), in order to reproduce satisfactorily, under dynamic conditions, the expiratory flow limitation phenomenon occurring in normal subjects when the difference between alveolar pressure and tracheal pressure (driving pressure) is high. Several expirations characterized by...
A mathematical model of external respiration integrating component models of airway/lung mechanics, ...
The selection of optimal positive end-expiratory pressure (PEEP) levels during mechanical ventilatio...
Respiratory mechanics, using flow interruption, was previously studied during the complete breath in...
A nonlinear dynamic morphometric model of breathing mechanics during artificial ventilation is descr...
A nonlinear dynamic morphometric model of breathing mechanics during artificial ventilation is desc...
A non linear dynamic morphometric model of breathing mechanics during artificial ventilation is desc...
none4A non linear dynamic morphometric model of the human lung, based on Weibel’s symmetrical model,...
Although normal lungs may be represented satisfactorily by symmetrical architecture, pathological co...
none3Although normal lungs may be represented satisfactorily by symmetrical architecture, pathologic...
A nonlinear model of breathing mechanics, in which the tracheobronchial airways are considered in th...
In this study we propose, and implement in the time domain, an anatomically consistent model of the ...
none3Expiratory flow limitation (EFL) is frequent in mechanically ventilated patients with obstructi...
none4Abstract—It is of particular importance to detect and quantify obstructive pathological condit...
Obtaining reliable CFD predictions of the bronchial flow that reflects the actual flow within a livi...
The elastic pressure-volume (Pel-V) curve of the respiratory system can be used as a guide for impro...
A mathematical model of external respiration integrating component models of airway/lung mechanics, ...
The selection of optimal positive end-expiratory pressure (PEEP) levels during mechanical ventilatio...
Respiratory mechanics, using flow interruption, was previously studied during the complete breath in...
A nonlinear dynamic morphometric model of breathing mechanics during artificial ventilation is descr...
A nonlinear dynamic morphometric model of breathing mechanics during artificial ventilation is desc...
A non linear dynamic morphometric model of breathing mechanics during artificial ventilation is desc...
none4A non linear dynamic morphometric model of the human lung, based on Weibel’s symmetrical model,...
Although normal lungs may be represented satisfactorily by symmetrical architecture, pathological co...
none3Although normal lungs may be represented satisfactorily by symmetrical architecture, pathologic...
A nonlinear model of breathing mechanics, in which the tracheobronchial airways are considered in th...
In this study we propose, and implement in the time domain, an anatomically consistent model of the ...
none3Expiratory flow limitation (EFL) is frequent in mechanically ventilated patients with obstructi...
none4Abstract—It is of particular importance to detect and quantify obstructive pathological condit...
Obtaining reliable CFD predictions of the bronchial flow that reflects the actual flow within a livi...
The elastic pressure-volume (Pel-V) curve of the respiratory system can be used as a guide for impro...
A mathematical model of external respiration integrating component models of airway/lung mechanics, ...
The selection of optimal positive end-expiratory pressure (PEEP) levels during mechanical ventilatio...
Respiratory mechanics, using flow interruption, was previously studied during the complete breath in...