4 pagesInternational audienceWe show that the motion of individual red blood cells in an oscillating moderate shear flow is described by a nonlinear system of three coupled oscillators. Our experiments reveal that the cell tank treads and tumbles either in a stable way with synchronized cell inclination, membrane rotation and hydrodynamic oscillations, or in an irregular way, very sensitively to initial conditions. By adapting our model described previously, we determine the theoretical diagram for the red cell motion in a sinusoidal flow close to physiological shear stresses and flow variation frequencies and reveal large domains of chaotic motions. Finally, fitting our observations allows a characterization of cell viscosity and membrane ...
International audienceIn this work, we compared the dynamics of motion in a linear shear flow of ind...
An exhaustive description of the dynamics under shear flow of a large number of red blood cells in a...
International audienceAn exhaustive description of the dynamics under shear flow of a large number o...
4 pagesInternational audienceWe show that the motion of individual red blood cells in an oscillating...
International audienceWe reveal that under moderate shear stress (_ 0:1 Pa) red blood cells present ...
We reveal that under moderate shear stress (of the order of 0.1 Pa) red blood cells present an oscil...
International audienceWe reveal that under moderate shear stress (_ 0:1 Pa) red blood cells present ...
The flow of red blood cells within cylindrical vessels is complex and irregular, so long as the vess...
Three-dimensional numerical simulations using an immersed boundary/front-tracking method are utilize...
The dynamics of red blood cells (RBCs) in simple shear flow was studied using a theoretical approach...
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...
In blood microvessels, the finite size of the red blood cell relative to the vessel diameter gives r...
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...
An exhaustive description of the dynamics under shear flow of a large number of red blood cells in a...
International audienceAn exhaustive description of the dynamics under shear flow of a large number o...
4 pagesInternational audienceWe show that the motion of individual red blood cells in an oscillating...
International audienceWe reveal that under moderate shear stress (_ 0:1 Pa) red blood cells present ...
We reveal that under moderate shear stress (of the order of 0.1 Pa) red blood cells present an oscil...
International audienceWe reveal that under moderate shear stress (_ 0:1 Pa) red blood cells present ...
The flow of red blood cells within cylindrical vessels is complex and irregular, so long as the vess...
Three-dimensional numerical simulations using an immersed boundary/front-tracking method are utilize...
The dynamics of red blood cells (RBCs) in simple shear flow was studied using a theoretical approach...
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...
In blood microvessels, the finite size of the red blood cell relative to the vessel diameter gives r...
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...
An exhaustive description of the dynamics under shear flow of a large number of red blood cells in a...
International audienceAn exhaustive description of the dynamics under shear flow of a large number o...