Recent experimental and imaging studies suggest that the influence of gravity on the measured distribution of blood flow in the lung is largely through deformation of the parenchymal tissue. To study the contribution of hydrostatic effects to regional perfusion in the presence of tissue deformation, we have developed an anatomically structured computational model of the pulmonary circulation (arteries, capillaries, veins), coupled to a continuum model of tissue deformation, and including scale-appropriate fluid dynamics for blood flow in each vessel type. The model demonstrates that both structural and the multiple effects of gravity on the pulmonary circulation make a distinct contribution to the distribution of blood. It shows that postur...
We examine the influence of vessel distensibility on the fraction of the total network flow passing ...
A novel model of perfusion distribution in the lung and a novel model of ventilation distribution a...
lary blood vessels in the pulmonary alveoli are so short and SO closely knit that a new term-“sheet ...
The functional significance of differences in pulmonary vascular branching and diameter asymmetry be...
Heterogeneity in pulmonary microvascular blood flow (perfusion) provides an early indicator of lung ...
A novel multiscale mathematical and computational model of the pulmonary circulation is presented an...
Gas exchange between inhaled alveolar air and pulmonary capillary blood occurs in the lung. The rela...
A hemodynamic model of the pulmonary circulation was developed to integrate extant geometric, biomec...
Pulmonary hypertension has multiple etiologies and so can be difficult to diagnose, prognose, and tr...
Current textbooks in anaesthesia describe how gravity affects the regional distribution of ventilati...
Isolated post-capillary pulmonary hypertension (Ipc-PH) occurs due to left heart failure, which cont...
The effect of gravity is considered on biomechanical modeling of human lung deformation for radiothe...
Increased or decreased pulmonary blood flow (PBF) and an increased pulmonary vascular resistance (PV...
A biomechanical model of human lung is developed and used to investigate the effect of gravity on lu...
In this paper we reexamine the sheet-flow model proposed by Fung and Sobin (1969) for blood flow in ...
We examine the influence of vessel distensibility on the fraction of the total network flow passing ...
A novel model of perfusion distribution in the lung and a novel model of ventilation distribution a...
lary blood vessels in the pulmonary alveoli are so short and SO closely knit that a new term-“sheet ...
The functional significance of differences in pulmonary vascular branching and diameter asymmetry be...
Heterogeneity in pulmonary microvascular blood flow (perfusion) provides an early indicator of lung ...
A novel multiscale mathematical and computational model of the pulmonary circulation is presented an...
Gas exchange between inhaled alveolar air and pulmonary capillary blood occurs in the lung. The rela...
A hemodynamic model of the pulmonary circulation was developed to integrate extant geometric, biomec...
Pulmonary hypertension has multiple etiologies and so can be difficult to diagnose, prognose, and tr...
Current textbooks in anaesthesia describe how gravity affects the regional distribution of ventilati...
Isolated post-capillary pulmonary hypertension (Ipc-PH) occurs due to left heart failure, which cont...
The effect of gravity is considered on biomechanical modeling of human lung deformation for radiothe...
Increased or decreased pulmonary blood flow (PBF) and an increased pulmonary vascular resistance (PV...
A biomechanical model of human lung is developed and used to investigate the effect of gravity on lu...
In this paper we reexamine the sheet-flow model proposed by Fung and Sobin (1969) for blood flow in ...
We examine the influence of vessel distensibility on the fraction of the total network flow passing ...
A novel model of perfusion distribution in the lung and a novel model of ventilation distribution a...
lary blood vessels in the pulmonary alveoli are so short and SO closely knit that a new term-“sheet ...