We examine the influence of vessel distensibility on the fraction of the total network flow passing through each vessel of a model vascular network. An exact computational methodology is developed yielding an analytic proof. For a class of structurally heterogeneous asymmetric vascular networks, if all the individual vessels share a common distensibility relation when the total network flow is changed, this methodology proves that each vessel will continue to receive the same fraction of the total network flow. This constant flow partitioning occurs despite a redistribution of pressures, which may result in a decrease in the diameter of one and an increase in the diameter of the other of two vessels having a common diameter at a common pres...
The structure-function relationship in vascular systems has been studied in an attempt to understand...
Microvessels \u2013 blood vessels with diameter less than 200\u3bcm \u2013 form large intricate netw...
To address the issue of computational efficiency related to the modelling of blood flow in complex n...
In a class of model vascular trees having distensible blood vessels, we prove that flow partitioning...
This paper examines the behavior of microvascular networks subjected to the coupled action of extern...
modeling of physiological processes in vasculatures requires an ac-curate representation of network ...
<div><p>We relate vascular network structure to hemodynamics after vessel obstructions. We consider ...
We relate vascular network structure to hemodynamics after vessel obstructions. We consider tree-lik...
We relate vascular network structure to hemodynamics after vessel obstructions. We consider tree-lik...
A novel multiscale mathematical and computational model of the pulmonary circulation is presented an...
Modern models that derive allometric relationships between metabolic rate and body mass are based on...
Cardiovascular networks span the body by branching across many generations of vessels. The resulting...
The effects of vascular rarefaction (the loss of small arteries) on the circulation of blood are stu...
International audienceCerebral micro-vascular networks control the blood pressure distribution when ...
A dense network of blood vessels distributes blood to different regions of the brain. To meet the te...
The structure-function relationship in vascular systems has been studied in an attempt to understand...
Microvessels \u2013 blood vessels with diameter less than 200\u3bcm \u2013 form large intricate netw...
To address the issue of computational efficiency related to the modelling of blood flow in complex n...
In a class of model vascular trees having distensible blood vessels, we prove that flow partitioning...
This paper examines the behavior of microvascular networks subjected to the coupled action of extern...
modeling of physiological processes in vasculatures requires an ac-curate representation of network ...
<div><p>We relate vascular network structure to hemodynamics after vessel obstructions. We consider ...
We relate vascular network structure to hemodynamics after vessel obstructions. We consider tree-lik...
We relate vascular network structure to hemodynamics after vessel obstructions. We consider tree-lik...
A novel multiscale mathematical and computational model of the pulmonary circulation is presented an...
Modern models that derive allometric relationships between metabolic rate and body mass are based on...
Cardiovascular networks span the body by branching across many generations of vessels. The resulting...
The effects of vascular rarefaction (the loss of small arteries) on the circulation of blood are stu...
International audienceCerebral micro-vascular networks control the blood pressure distribution when ...
A dense network of blood vessels distributes blood to different regions of the brain. To meet the te...
The structure-function relationship in vascular systems has been studied in an attempt to understand...
Microvessels \u2013 blood vessels with diameter less than 200\u3bcm \u2013 form large intricate netw...
To address the issue of computational efficiency related to the modelling of blood flow in complex n...