Summary We present a two phase model for microcirculation that describes the interaction of plasma with red blood cells. The model takes into account of typical effects characterizing the microcirculation, such as the Fahraeus-Lindqvist effect and plasma skimming. Besides these features, the model describes the interaction of capillaries with the surrounding tissue. More precisely, the model accounts for the interaction of capillary transmural flow with the surrounding interstitial pressure. Furthermore, the capillaries are represented as one-dimensional channels with arbitrary, possibly curved configuration. The latter two features rely on the unique ability of the model to account for variations of flow rate and pressure along the axis of...
A few detailed studies have been performed in complex in vitro microvascular networks composed by bi...
Microvascular transport is strongly influenced by the nonuniform partitioning of red blood cells at ...
A mathematical model of the structure of the blood vessels system which provides blood microcirculat...
Summary We present a two phase model for microcirculation that describes the interaction of plasma w...
International audienceThe modeling of blood flows confined in micro-channels or micro-capillary beds...
The aim of this work is to develop a computational model of the interplay between microcirculation a...
The aim of this work is to develop a computational model able to capture the interplay between micro...
The article deals with the interaction of fluid flow in the «blood capillary - tissue - lymphatic ca...
A novel, coarse-grained, single-framework ‘Eulerian’ model for blood flow in the microvascular circu...
A transient, spatially distributed mathematical model is developed describing the exchange of materi...
A mathematical model has been developed which describes the fluid exchange from a capillary network ...
Fluid homeostasis is required for life. Processes involved in fluid balance are strongly related to ...
The modeling of blood flows confined in micro-channels or micro-capillary beds depends on the interact...
The multi-cellular hydrodynamic interactions play a critical role in the phenomenology of blood flow...
Blood is modeled as a suspension of red blood cells using the dissipative particle dynamics method. ...
A few detailed studies have been performed in complex in vitro microvascular networks composed by bi...
Microvascular transport is strongly influenced by the nonuniform partitioning of red blood cells at ...
A mathematical model of the structure of the blood vessels system which provides blood microcirculat...
Summary We present a two phase model for microcirculation that describes the interaction of plasma w...
International audienceThe modeling of blood flows confined in micro-channels or micro-capillary beds...
The aim of this work is to develop a computational model of the interplay between microcirculation a...
The aim of this work is to develop a computational model able to capture the interplay between micro...
The article deals with the interaction of fluid flow in the «blood capillary - tissue - lymphatic ca...
A novel, coarse-grained, single-framework ‘Eulerian’ model for blood flow in the microvascular circu...
A transient, spatially distributed mathematical model is developed describing the exchange of materi...
A mathematical model has been developed which describes the fluid exchange from a capillary network ...
Fluid homeostasis is required for life. Processes involved in fluid balance are strongly related to ...
The modeling of blood flows confined in micro-channels or micro-capillary beds depends on the interact...
The multi-cellular hydrodynamic interactions play a critical role in the phenomenology of blood flow...
Blood is modeled as a suspension of red blood cells using the dissipative particle dynamics method. ...
A few detailed studies have been performed in complex in vitro microvascular networks composed by bi...
Microvascular transport is strongly influenced by the nonuniform partitioning of red blood cells at ...
A mathematical model of the structure of the blood vessels system which provides blood microcirculat...