Despite its significance in microfluidics, the effect of confinement on the transition from the tanktreading (steady motion) to the tumbling (unsteady motion) dynamical state of deformable microparticles has not been studied in detail. In this paper, we investigate the dynamics of a single viscous vesicle under confining shear as a general model system for red blood cells, capsules, or viscous droplets. The transition from the tank-treading to the tumbling motion can be triggered by the ratio between internal and external fluid viscosities. Here, we show that the transition can be induced solely by reducing the confinement, keeping the viscosity contrast constant. The observed dynamics results from the variation of the relative importance o...
Red blood cells (RBCs) in various flows exhibit a rich dynamics due their deformability and govern r...
Red blood cells play a major role in body metabolism by supplying oxygen from the microvasculature t...
International audienceWe reveal that under moderate shear stress (_ 0:1 Pa) red blood cells present ...
Despite its significance in microfluidics, the effect of confinement on the transition from the tank...
Despite its significance in microfluidics, the effect of confinement on the transition from the tank...
The dynamics and deformation of red blood cells (RBCs) in microcirculation affect the flow resistanc...
International audienceA vesicle is a common model used to represent red blood cell (RBC) in silico a...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
Three-dimensional numerical simulations using immersed boundary/front-tracking method are considered...
Widely regarded as an interesting model system for studying flow properties of blood, vesicles are c...
The dynamics of single red blood cells (RBCs) determine microvascular blood flow by adapting their s...
International audienceWe reveal that under moderate shear stress (_ 0:1 Pa) red blood cells present ...
Red blood cells (RBCs) in various flows exhibit a rich dynamics due their deformability and govern r...
Red blood cells play a major role in body metabolism by supplying oxygen from the microvasculature t...
International audienceWe reveal that under moderate shear stress (_ 0:1 Pa) red blood cells present ...
Despite its significance in microfluidics, the effect of confinement on the transition from the tank...
Despite its significance in microfluidics, the effect of confinement on the transition from the tank...
The dynamics and deformation of red blood cells (RBCs) in microcirculation affect the flow resistanc...
International audienceA vesicle is a common model used to represent red blood cell (RBC) in silico a...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
Three-dimensional numerical simulations using immersed boundary/front-tracking method are considered...
Widely regarded as an interesting model system for studying flow properties of blood, vesicles are c...
The dynamics of single red blood cells (RBCs) determine microvascular blood flow by adapting their s...
International audienceWe reveal that under moderate shear stress (_ 0:1 Pa) red blood cells present ...
Red blood cells (RBCs) in various flows exhibit a rich dynamics due their deformability and govern r...
Red blood cells play a major role in body metabolism by supplying oxygen from the microvasculature t...
International audienceWe reveal that under moderate shear stress (_ 0:1 Pa) red blood cells present ...