By means of glutaraldehyde fixation, human erythrocytes are "frozen" while suspended in turbulent shear flow. As the shearing is increased in steps from 100 to 2,500 dyn/cm2, the deformed cells evolve gradually toward a smooth ellipsoidal shape. At stresses above 2,500 dyn/cm2, approximately, fragmentation of the cells occurs with a concomitant increase in free hemoglobin content of the suspending medium. The photographic evidence suggests that the cells rupture in tension in the bulk flow
Red blood cells (RBCs) in various flows exhibit a rich dynamics due their deformability and govern r...
An exhaustive description of the dynamics under shear flow of a large number of red blood cells in a...
International audienceNormal blood consists of highly deformable particles (red blood cells, RBC, or...
International audienceIn this work, we compared the dynamics of motion in a linear shear flow of ind...
The deformation of an erythrocyte has been observed microscopically in the shear flow to detect the ...
Classically, it is known that red blood cell (RBC) deformability is determined by the geometric and ...
Red blood cell (RBC) shape change under static and dynamic shear stress has been a source of interes...
Red blood cells (RBC) are exposed to various levels of shear stress (SS) during their flow in the ci...
Red blood cell (RBC) shape change under static and dynamic shear stress has been a source of interes...
Aggregation of highly deformable red blood cells (RBCs) significantly affects the blood flow in the ...
The red blood cell is susceptible to damage by foreign surface interaction and hydrodynamic shear st...
Erythrocyte deformability characteristics were assessed by passing red cell suspensions through Nucl...
To study the effect of aging on deformability of an erythrocyte, rheological measurement has been pe...
Studies on the haemodynamics of human circulation are clinically and scientifically important. In or...
The use of intra-operative blood salvage, dialysis, and artificial organs are associated with the ap...
Red blood cells (RBCs) in various flows exhibit a rich dynamics due their deformability and govern r...
An exhaustive description of the dynamics under shear flow of a large number of red blood cells in a...
International audienceNormal blood consists of highly deformable particles (red blood cells, RBC, or...
International audienceIn this work, we compared the dynamics of motion in a linear shear flow of ind...
The deformation of an erythrocyte has been observed microscopically in the shear flow to detect the ...
Classically, it is known that red blood cell (RBC) deformability is determined by the geometric and ...
Red blood cell (RBC) shape change under static and dynamic shear stress has been a source of interes...
Red blood cells (RBC) are exposed to various levels of shear stress (SS) during their flow in the ci...
Red blood cell (RBC) shape change under static and dynamic shear stress has been a source of interes...
Aggregation of highly deformable red blood cells (RBCs) significantly affects the blood flow in the ...
The red blood cell is susceptible to damage by foreign surface interaction and hydrodynamic shear st...
Erythrocyte deformability characteristics were assessed by passing red cell suspensions through Nucl...
To study the effect of aging on deformability of an erythrocyte, rheological measurement has been pe...
Studies on the haemodynamics of human circulation are clinically and scientifically important. In or...
The use of intra-operative blood salvage, dialysis, and artificial organs are associated with the ap...
Red blood cells (RBCs) in various flows exhibit a rich dynamics due their deformability and govern r...
An exhaustive description of the dynamics under shear flow of a large number of red blood cells in a...
International audienceNormal blood consists of highly deformable particles (red blood cells, RBC, or...