Microvascular networks feature a complex topology with multiple bifurcating vessels. Nonuniform partitioning (phase separation) of red blood cells (RBCs) occurs at diverging bifurcations, leading to a heterogeneous RBC distribution that ultimately affects the oxygen delivery to living tissues. Our understanding of the mechanisms governing RBC heterogeneity is still limited, especially in large networks where the RBC dynamics can be nonintuitive. In this study, our quantitative data for phase separation were obtained in a complex in vitro network with symmetric bifurcations and 176 microchannels. Our experiments showed that the hematocrit is heterogeneously distributed and confirmed the classical result that the branch with a higher blood fr...
International audiencePartitioning of red blood cells (RBCs) at the level of bifurcations in the mic...
Bifurcating networks are commonly found in nature. One example is the microvascular system, composed...
Partitioning of red blood cells (RBCs) at the level of bifurcations in the microcirculatory system a...
Microvascular networks feature a complex topology with multiple bifurcating vessels. Nonuniform part...
In this study we provided quantitative data on red blood cell (RBC) partitioning in 21 divergent bif...
The physics of blood flow in small vessel networks is dominated by the interactions between Red Bloo...
Despite the development of microfluidics, experimental challenges are considerable for achieving a q...
Since the very first observations of microvascular networks in small animals by Jean-Marie Poiseuill...
It has been known for more than 50 years that the distribution of red blood cells (RBCs) in microves...
The non-uniform partitioning or phase separation of red blood cells (RBCs) at a diverging bifurcatio...
The non-uniform partitioning or phase separation of red blood cells (RBCs) at a diverging bifurcatio...
The non-uniform partitioning or phase separation of red blood cells (RBCs) at a diverging bifurcatio...
The aim of this work was to investigate the phaseseparation effect in vitro for channels ,20 mm and ...
The non-uniform portioning or phase separation of red blood cells (RBCs) at a diverging bifurcation ...
Bifurcations and branches in the microcirculation dramatically affect blood flow as they determine t...
International audiencePartitioning of red blood cells (RBCs) at the level of bifurcations in the mic...
Bifurcating networks are commonly found in nature. One example is the microvascular system, composed...
Partitioning of red blood cells (RBCs) at the level of bifurcations in the microcirculatory system a...
Microvascular networks feature a complex topology with multiple bifurcating vessels. Nonuniform part...
In this study we provided quantitative data on red blood cell (RBC) partitioning in 21 divergent bif...
The physics of blood flow in small vessel networks is dominated by the interactions between Red Bloo...
Despite the development of microfluidics, experimental challenges are considerable for achieving a q...
Since the very first observations of microvascular networks in small animals by Jean-Marie Poiseuill...
It has been known for more than 50 years that the distribution of red blood cells (RBCs) in microves...
The non-uniform partitioning or phase separation of red blood cells (RBCs) at a diverging bifurcatio...
The non-uniform partitioning or phase separation of red blood cells (RBCs) at a diverging bifurcatio...
The non-uniform partitioning or phase separation of red blood cells (RBCs) at a diverging bifurcatio...
The aim of this work was to investigate the phaseseparation effect in vitro for channels ,20 mm and ...
The non-uniform portioning or phase separation of red blood cells (RBCs) at a diverging bifurcation ...
Bifurcations and branches in the microcirculation dramatically affect blood flow as they determine t...
International audiencePartitioning of red blood cells (RBCs) at the level of bifurcations in the mic...
Bifurcating networks are commonly found in nature. One example is the microvascular system, composed...
Partitioning of red blood cells (RBCs) at the level of bifurcations in the microcirculatory system a...