Understanding the dynamics of red blood cell (RBC) motion under in silico conditions is central to the development of cost-effective diagnostic tools. Specifically, unraveling the relationship between the rheological properties and the nature of shape change in the RBC (healthy or infected) can be extremely useful. In case of malarial infection, RBC progressively loses its deformability and tends to occlude the microvessel. In the present study, detailed mesoscopic simulations are performed to investigate the deformation dynamics of an RBC in flow through a constricted channel. Specifically, the manifestation of viscous forces (through flow rates) on the passage and blockage characteristics of a healthy red blood cell (hRBC) vis-a-vis an in...
Red blood cells (RBCs) infected by a Plasmodium parasite in malaria may lose their membrane deformab...
Red blood cells in shear flow show a variety of different shapes due to the complex interplay betwee...
In this work, we report on a systematic fluidodynamic investigation of red blood cell (RBC) suspensi...
Understanding the dynamics of red blood cell (RBC) motion under in silico conditions is central to t...
The motion of cells in flow has been studied in vivo, in viro, and in silico. Different models have...
The malaria-infected red blood cells experience a significant decrease in cell deformability and inc...
The motion of red blood cells (RBCs) in microcirculation plays an important role in blood flow resis...
The pathogenicity of Plasmodium falciparum (Pf) malaria results from the stiffening of red blood cel...
The deformability of a red blood cell (RBC) is one of the most important biological parameters affec...
The pathogenicity of Plasmodium falciparum (Pf) malaria results from the stiffening of red blood cel...
Abstract Motion and distribution of red blood cells in blood microvessels depend on vessel diameter,...
The complex rheology of red blood cell (RBC) in microcirculation has been a topic of interest for ma...
Author manuscript; available in PMC 2012 March 1.We investigate the biophysical characteristics of h...
In blood microvessels, the finite size of the red blood cell relative to the vessel diameter gives r...
PolyU Library Call No.: [THS] LG51 .H577P ME 2016 Xiaoxxii, 139 pages :color illustrationsIndividual...
Red blood cells (RBCs) infected by a Plasmodium parasite in malaria may lose their membrane deformab...
Red blood cells in shear flow show a variety of different shapes due to the complex interplay betwee...
In this work, we report on a systematic fluidodynamic investigation of red blood cell (RBC) suspensi...
Understanding the dynamics of red blood cell (RBC) motion under in silico conditions is central to t...
The motion of cells in flow has been studied in vivo, in viro, and in silico. Different models have...
The malaria-infected red blood cells experience a significant decrease in cell deformability and inc...
The motion of red blood cells (RBCs) in microcirculation plays an important role in blood flow resis...
The pathogenicity of Plasmodium falciparum (Pf) malaria results from the stiffening of red blood cel...
The deformability of a red blood cell (RBC) is one of the most important biological parameters affec...
The pathogenicity of Plasmodium falciparum (Pf) malaria results from the stiffening of red blood cel...
Abstract Motion and distribution of red blood cells in blood microvessels depend on vessel diameter,...
The complex rheology of red blood cell (RBC) in microcirculation has been a topic of interest for ma...
Author manuscript; available in PMC 2012 March 1.We investigate the biophysical characteristics of h...
In blood microvessels, the finite size of the red blood cell relative to the vessel diameter gives r...
PolyU Library Call No.: [THS] LG51 .H577P ME 2016 Xiaoxxii, 139 pages :color illustrationsIndividual...
Red blood cells (RBCs) infected by a Plasmodium parasite in malaria may lose their membrane deformab...
Red blood cells in shear flow show a variety of different shapes due to the complex interplay betwee...
In this work, we report on a systematic fluidodynamic investigation of red blood cell (RBC) suspensi...