Blood viscosity decreases with shear stress, a property essential for an efficient perfusion of the vascular tree. Shear thinning is intimately related to the dynamics and mutual interactions of RBCs, the major component of blood. Because of the lack of knowledge about the behavior of RBCs under physiological conditions, the link between RBC dynamics and blood rheology remains unsettled. We performed experiments and simulations in microcirculatory flow conditions of viscosity, shear rates, and volume fractions, and our study reveals rich RBC dynamics that govern shear thinning. In contrast to the current paradigm, which assumes that RBCs align steadily around the flow direction while their membranes and cytoplasm circulate, we show that RBC...
International audienceThe problem of understanding the movement of red blood cells (RBCs) is at the ...
Classically, it is known that red blood cell (RBC) deformability is determined by the geometric and ...
Classically, it is known that red blood cell (RBC) deformability is determined by the geometric and ...
Blood viscosity decreases with shear stress, a property essential for an efficient perfusion of the ...
International audienceIn this work, we compared the dynamics of motion in a linear shear flow of ind...
International audienceIn this work, we compared the dynamics of motion in a linear shear flow of ind...
International audienceIn this work, we compared the dynamics of motion in a linear shear flow of ind...
International audienceIn this work, we compared the dynamics of motion in a linear shear flow of ind...
International audienceIn this work, we compared the dynamics of motion in a linear shear flow of ind...
Red blood cells (RBCs) in various flows exhibit a rich dynamics due their deformability and govern r...
Red blood cell (RBC) deformability is important for tissue perfusion and a key determinant of blood ...
International audienceWe reveal that under moderate shear stress (_ 0:1 Pa) red blood cells present ...
The dynamics and deformation of red blood cells (RBCs) in microcirculation affect the flow resistanc...
International audienceWe reveal that under moderate shear stress (_ 0:1 Pa) red blood cells present ...
Most work on the dynamic response of red blood cells (RBCs) to hydrodynamic stress has focused on li...
International audienceThe problem of understanding the movement of red blood cells (RBCs) is at the ...
Classically, it is known that red blood cell (RBC) deformability is determined by the geometric and ...
Classically, it is known that red blood cell (RBC) deformability is determined by the geometric and ...
Blood viscosity decreases with shear stress, a property essential for an efficient perfusion of the ...
International audienceIn this work, we compared the dynamics of motion in a linear shear flow of ind...
International audienceIn this work, we compared the dynamics of motion in a linear shear flow of ind...
International audienceIn this work, we compared the dynamics of motion in a linear shear flow of ind...
International audienceIn this work, we compared the dynamics of motion in a linear shear flow of ind...
International audienceIn this work, we compared the dynamics of motion in a linear shear flow of ind...
Red blood cells (RBCs) in various flows exhibit a rich dynamics due their deformability and govern r...
Red blood cell (RBC) deformability is important for tissue perfusion and a key determinant of blood ...
International audienceWe reveal that under moderate shear stress (_ 0:1 Pa) red blood cells present ...
The dynamics and deformation of red blood cells (RBCs) in microcirculation affect the flow resistanc...
International audienceWe reveal that under moderate shear stress (_ 0:1 Pa) red blood cells present ...
Most work on the dynamic response of red blood cells (RBCs) to hydrodynamic stress has focused on li...
International audienceThe problem of understanding the movement of red blood cells (RBCs) is at the ...
Classically, it is known that red blood cell (RBC) deformability is determined by the geometric and ...
Classically, it is known that red blood cell (RBC) deformability is determined by the geometric and ...