<div><p>Although bulk changes in red blood cell concentration between vessels have been well characterised, local distributions are generally overlooked. Red blood cells aggregate, deform and migrate within vessels, forming heterogeneous distributions which have considerable effect on local haemodynamics. The present study reports data on the local distribution of human red blood cells in a sequentially bifurcating microchannel, representing the branching geometry of the microvasculature. Imaging methodologies with simple extrapolations are used to infer three dimensional, time-averaged velocity and haematocrit distributions under a range of flow conditions. Strong correlation between the bluntness of the velocity and haematocrit profiles i...
Red blood cell (RBC) aggregation is a multifaceted phenomenon, and whether it is generally beneficia...
We investigated the behaviour of red blood cells (RBCs) in a micro-channel with stenosis by using a ...
Microvascular transport is strongly influenced by the nonuniform partitioning of red blood cells at ...
Although bulk changes in red blood cell concentration between vessels have been well characterised, ...
Although bulk changes in red blood cell concentration between vessels have been well characterised, ...
Microscale blood flow is characterised by heterogeneous distributions of hematocrit, viscosity and v...
Red blood cell aggregation plays a key role in microcirculatory flows, however, little is known abou...
Microvascular flows are often considered to be free of red blood cell aggregates, however, recent st...
Red blood cell aggregation plays a key role in microcirculatory flows, however, little is known abou...
Microvascular flows are often considered to be free of red blood cell aggregates, however, recent st...
Red blood cell aggregation plays a key role in microcirculatory flows, however, little is known abou...
The red blood cell (RBC) aggregation phenomenon is majorly responsible for the non-Newtonian nature ...
Microvascular blood flow resistance has a strong impact on cardiovascular function and tissue perfus...
The effect of erythrocyte aggregation on blood viscosity and microcirculatory flow is a poorly under...
Advances in microfluidic applications have made it possible to design microsystems in which various ...
Red blood cell (RBC) aggregation is a multifaceted phenomenon, and whether it is generally beneficia...
We investigated the behaviour of red blood cells (RBCs) in a micro-channel with stenosis by using a ...
Microvascular transport is strongly influenced by the nonuniform partitioning of red blood cells at ...
Although bulk changes in red blood cell concentration between vessels have been well characterised, ...
Although bulk changes in red blood cell concentration between vessels have been well characterised, ...
Microscale blood flow is characterised by heterogeneous distributions of hematocrit, viscosity and v...
Red blood cell aggregation plays a key role in microcirculatory flows, however, little is known abou...
Microvascular flows are often considered to be free of red blood cell aggregates, however, recent st...
Red blood cell aggregation plays a key role in microcirculatory flows, however, little is known abou...
Microvascular flows are often considered to be free of red blood cell aggregates, however, recent st...
Red blood cell aggregation plays a key role in microcirculatory flows, however, little is known abou...
The red blood cell (RBC) aggregation phenomenon is majorly responsible for the non-Newtonian nature ...
Microvascular blood flow resistance has a strong impact on cardiovascular function and tissue perfus...
The effect of erythrocyte aggregation on blood viscosity and microcirculatory flow is a poorly under...
Advances in microfluidic applications have made it possible to design microsystems in which various ...
Red blood cell (RBC) aggregation is a multifaceted phenomenon, and whether it is generally beneficia...
We investigated the behaviour of red blood cells (RBCs) in a micro-channel with stenosis by using a ...
Microvascular transport is strongly influenced by the nonuniform partitioning of red blood cells at ...