Hematologic disorders arising from infectious diseases, hereditary factors and environmental influences can lead to, and can be influenced by, significant changes in the shape, mechanical and physical properties of red blood cells (RBCs), and the biorheology of blood flow. Hence, modeling of hematologic disorders should take into account the multiphase nature of blood flow, especially in arterioles and capillaries. We present here an overview of a general computational framework based on dissipative particle dynamics (DPD) which has broad applicability in cell biophysics with implications for diagnostics, therapeutics and drug efficacy assessments for a wide variety of human diseases. This computational approach, validated by independent ex...
Red blood cells (RBCs) infected by a Plasmodium parasite in malaria may lose their membrane deformab...
International audienceWe review recent experimental, theoretical, and computational studies of red b...
Author manuscript; available in PMC 2012 March 1.We investigate the biophysical characteristics of h...
Hematologic disorders arising from infectious diseases, hereditary factors and environmental influen...
Hematologic disorders arising from infectious diseases, hereditary factors and environmental influ-e...
Hematologic disorders arising from infectious diseases, hereditary factors and environmental influen...
Abstract Parasitic infectious diseases and other hereditary hematologic disorders are often associat...
We compare the predictive capability of two mathematical models for red blood cells (RBCs) focusing ...
Many diseases are a result of, or are associated with, abnormal blood flow. Usually, these abnormali...
AbstractSickle erythrocytes exhibit abnormal morphology and membrane mechanics under deoxygenated co...
Understanding the dynamics of red blood cell (RBC) motion under in silico conditions is central to t...
Red blood cells (RBCs) infected by a Plasmodium parasite in malaria may lose their membrane deformab...
The viscosity of blood has long been used as an indicator in the understanding and treatment of dise...
Blood is a dense suspension of soft non-Brownian cells of unique importance. Physiological blood flo...
Whole blood is a complex suspension of cells, where the emergent rheology and transport phenomena ar...
Red blood cells (RBCs) infected by a Plasmodium parasite in malaria may lose their membrane deformab...
International audienceWe review recent experimental, theoretical, and computational studies of red b...
Author manuscript; available in PMC 2012 March 1.We investigate the biophysical characteristics of h...
Hematologic disorders arising from infectious diseases, hereditary factors and environmental influen...
Hematologic disorders arising from infectious diseases, hereditary factors and environmental influ-e...
Hematologic disorders arising from infectious diseases, hereditary factors and environmental influen...
Abstract Parasitic infectious diseases and other hereditary hematologic disorders are often associat...
We compare the predictive capability of two mathematical models for red blood cells (RBCs) focusing ...
Many diseases are a result of, or are associated with, abnormal blood flow. Usually, these abnormali...
AbstractSickle erythrocytes exhibit abnormal morphology and membrane mechanics under deoxygenated co...
Understanding the dynamics of red blood cell (RBC) motion under in silico conditions is central to t...
Red blood cells (RBCs) infected by a Plasmodium parasite in malaria may lose their membrane deformab...
The viscosity of blood has long been used as an indicator in the understanding and treatment of dise...
Blood is a dense suspension of soft non-Brownian cells of unique importance. Physiological blood flo...
Whole blood is a complex suspension of cells, where the emergent rheology and transport phenomena ar...
Red blood cells (RBCs) infected by a Plasmodium parasite in malaria may lose their membrane deformab...
International audienceWe review recent experimental, theoretical, and computational studies of red b...
Author manuscript; available in PMC 2012 March 1.We investigate the biophysical characteristics of h...