The modeling of blood flows confined in micro-channels or micro-capillary beds depends on the interactions between the cell-phase, plasma and the complex geometry of the network. In the case of capillaries or channels having a high aspect ratio (their longitudinal size is much larger than their transverse one), this modeling is much simplified from the use of a continuous description of fluid viscosity as previously proposed in the literature. Phase separation or plasma skimming effect is a supplementary mechanism responsible for the relative distribution of the red blood cell’s volume density in each branch of a given bifur- cation. Different models have already been proposed to connect this effect to the various hydrodynamics and geometrica...
Consistent with its distribution and exchange functions, the vascular system of the human brain cort...
In the last decade, numerical models have become an increasingly important tool in biological and me...
The human brain microcirculation has a multiscale architecture. At large scale, arteriolar and venul...
International audienceThe modeling of blood flows confined in micro-channels or micro-capillary beds...
The non-uniform portioning or phase separation of red blood cells (RBCs) at a diverging bifurcation ...
The non-uniform partitioning or phase separation of red blood cells (RBCs) at a diverging bifurcatio...
Microvascular networks feature a complex topology with multiple bifurcating vessels. Nonuniform part...
modeling of physiological processes in vasculatures requires an ac-curate representation of network ...
International audienceCerebral micro-vascular networks control the blood pressure distribution when ...
We propose a new model for the emergence of blood capillary networks. We assimilate the tissue and e...
The cerebral microvascular system is key to a large variety of cerebral processes, including oxygen ...
International audienceWe report new results on blood flow modeling over large volumes of cortical gr...
International audienceWe propose a hemodynamic reduced-order model bridging macroscopic and mesoscop...
A computational methodology for the direct numerical simulation of 3D cellular-scale blood flow in a...
Summary We present a two phase model for microcirculation that describes the interaction of plasma w...
Consistent with its distribution and exchange functions, the vascular system of the human brain cort...
In the last decade, numerical models have become an increasingly important tool in biological and me...
The human brain microcirculation has a multiscale architecture. At large scale, arteriolar and venul...
International audienceThe modeling of blood flows confined in micro-channels or micro-capillary beds...
The non-uniform portioning or phase separation of red blood cells (RBCs) at a diverging bifurcation ...
The non-uniform partitioning or phase separation of red blood cells (RBCs) at a diverging bifurcatio...
Microvascular networks feature a complex topology with multiple bifurcating vessels. Nonuniform part...
modeling of physiological processes in vasculatures requires an ac-curate representation of network ...
International audienceCerebral micro-vascular networks control the blood pressure distribution when ...
We propose a new model for the emergence of blood capillary networks. We assimilate the tissue and e...
The cerebral microvascular system is key to a large variety of cerebral processes, including oxygen ...
International audienceWe report new results on blood flow modeling over large volumes of cortical gr...
International audienceWe propose a hemodynamic reduced-order model bridging macroscopic and mesoscop...
A computational methodology for the direct numerical simulation of 3D cellular-scale blood flow in a...
Summary We present a two phase model for microcirculation that describes the interaction of plasma w...
Consistent with its distribution and exchange functions, the vascular system of the human brain cort...
In the last decade, numerical models have become an increasingly important tool in biological and me...
The human brain microcirculation has a multiscale architecture. At large scale, arteriolar and venul...