Partitioning of red blood cells (RBCs) at the level of bifurcations in the microcirculatory system affects many physiological functions yet it remains poorly understood. We address this problem by using T-shaped microfluidic bifurcations as a model. Our computer simulations and in vitro experiments reveal that the hematocrit (φ0) partition depends strongly on RBC deformability, as long as φ00, we get the inverse scenario, and the hematocrit in the lower flow rate child branch is even higher than in the parent vessel. We explain this result by an intricate up-stream RBC organization and we highlight the extreme dependence of RBC transport on geometrical and cell mechanical properties. These parameters can lead to unexpected behaviors with co...
Microvascular networks feature a complex topology with multiple bifurcating vessels. Nonuniform part...
Bifurcations and branches in the microcirculation dramatically affect blood flow as they determine t...
AbstractThis paper studies red blood cell (RBC) partitioning and blood flux redistribution in microv...
Partitioning of red blood cells (RBCs) at the level of bifurcations in the microcirculatory system a...
Partitioning of red blood cells (RBCs) at the level of bifurcations in the microcirculatory system a...
Partitioning of red blood cells (RBCs) at the level of bifurcations in the microcirculatory system a...
Partitioning of red blood cells (RBCs) at the level of bifurcations in the microcirculatory system a...
International audiencePartitioning of red blood cells (RBCs) at the level of bifurcations in the mic...
\u3cp\u3ePartitioning of red blood cells (RBCs) at the level of bifurcations in the microcirculatory...
International audiencePartitioning of red blood cells (RBCs) at the level of bifurcations in the mic...
Partitioning of red blood cells (RBCs) at the level of bifurcations in the microcirculatory system a...
AbstractThis paper studies red blood cell (RBC) partitioning and blood flux redistribution in microv...
Microvascular networks feature a complex topology with multiple bifurcating vessels. Nonuniform part...
Bifurcations and branches in the microcirculation dramatically affect blood flow as they determine t...
The physics of blood flow in small vessel networks is dominated by the interactions between Red Bloo...
Microvascular networks feature a complex topology with multiple bifurcating vessels. Nonuniform part...
Bifurcations and branches in the microcirculation dramatically affect blood flow as they determine t...
AbstractThis paper studies red blood cell (RBC) partitioning and blood flux redistribution in microv...
Partitioning of red blood cells (RBCs) at the level of bifurcations in the microcirculatory system a...
Partitioning of red blood cells (RBCs) at the level of bifurcations in the microcirculatory system a...
Partitioning of red blood cells (RBCs) at the level of bifurcations in the microcirculatory system a...
Partitioning of red blood cells (RBCs) at the level of bifurcations in the microcirculatory system a...
International audiencePartitioning of red blood cells (RBCs) at the level of bifurcations in the mic...
\u3cp\u3ePartitioning of red blood cells (RBCs) at the level of bifurcations in the microcirculatory...
International audiencePartitioning of red blood cells (RBCs) at the level of bifurcations in the mic...
Partitioning of red blood cells (RBCs) at the level of bifurcations in the microcirculatory system a...
AbstractThis paper studies red blood cell (RBC) partitioning and blood flux redistribution in microv...
Microvascular networks feature a complex topology with multiple bifurcating vessels. Nonuniform part...
Bifurcations and branches in the microcirculation dramatically affect blood flow as they determine t...
The physics of blood flow in small vessel networks is dominated by the interactions between Red Bloo...
Microvascular networks feature a complex topology with multiple bifurcating vessels. Nonuniform part...
Bifurcations and branches in the microcirculation dramatically affect blood flow as they determine t...
AbstractThis paper studies red blood cell (RBC) partitioning and blood flux redistribution in microv...