A simple 2D model of deformable vesicles tumbling in a shear under flow is introduced in order to account for the main qualitative features observed experimentally as shear rates are increased. The simplicity of the model allows for a full analytical tractability while retaining the essential physical ingredients. The model reveals that the main axes of the vesicle undergo oscillations which are coupled to the vesicle orientation in the flow. The model reproduces and sheds light on the main novel features reported in recent experiments [M. Mader et al., Eur. Phys. J. E. 19, 389 (2006)], namely that both coefficients A and B that enter the Keller-Skalak equation, dψ/dt = A+Bcos(2 ψ) (ψ is the vesicle orientation angle in the shear flow), und...
International audienceDespite the recent upsurge of theoretical reduced models for vesicle shape dyn...
The effect of membrane viscosity on the dynamics of vesicles in shear flow is studied. We present a ...
The dynamics of two-dimensional viscous vesicles in shear flow, with different fluid viscosities eta...
The dynamics of fluid vesicles in simple shear flow is studied using mesoscale simulations of dynami...
19 pages, 9 figuresVesicles under a shear flow exhibit a tank-treading motion of their membrane, whi...
The dynamics of vesicles under shear flow are carefully analyzed in the regime of a small vesicle ex...
International audienceIn this paper we introduce a simple mathematical analysis to reexamine vesicle...
Giant vesicles are deformable lipid membranes enclosing a fluid, with diameters of several microns. ...
The deformation of vesicles in flow is studied by a mesoscopic simulation technique, which combines ...
The dynamics of lipid vesicles enclosing a viscous polymer solution is studied in a simple shear flo...
We studied the dynamics of isolated vesicles as well as vesicle interactions in semi-dilute vesicle ...
The dynamics of giant lipid vesicles under shear flow is experimentally investigated. Consistent wit...
Giant vesicles are deformable lipid membranes enclosing a fluid, with diameters of several microns. ...
International audienceThe numerical study of 3D vesicles with a reduced volume equal to that of huma...
We develop a small--deformation theory for the dynamics of a quasi--spherical vesicle in viscous flo...
International audienceDespite the recent upsurge of theoretical reduced models for vesicle shape dyn...
The effect of membrane viscosity on the dynamics of vesicles in shear flow is studied. We present a ...
The dynamics of two-dimensional viscous vesicles in shear flow, with different fluid viscosities eta...
The dynamics of fluid vesicles in simple shear flow is studied using mesoscale simulations of dynami...
19 pages, 9 figuresVesicles under a shear flow exhibit a tank-treading motion of their membrane, whi...
The dynamics of vesicles under shear flow are carefully analyzed in the regime of a small vesicle ex...
International audienceIn this paper we introduce a simple mathematical analysis to reexamine vesicle...
Giant vesicles are deformable lipid membranes enclosing a fluid, with diameters of several microns. ...
The deformation of vesicles in flow is studied by a mesoscopic simulation technique, which combines ...
The dynamics of lipid vesicles enclosing a viscous polymer solution is studied in a simple shear flo...
We studied the dynamics of isolated vesicles as well as vesicle interactions in semi-dilute vesicle ...
The dynamics of giant lipid vesicles under shear flow is experimentally investigated. Consistent wit...
Giant vesicles are deformable lipid membranes enclosing a fluid, with diameters of several microns. ...
International audienceThe numerical study of 3D vesicles with a reduced volume equal to that of huma...
We develop a small--deformation theory for the dynamics of a quasi--spherical vesicle in viscous flo...
International audienceDespite the recent upsurge of theoretical reduced models for vesicle shape dyn...
The effect of membrane viscosity on the dynamics of vesicles in shear flow is studied. We present a ...
The dynamics of two-dimensional viscous vesicles in shear flow, with different fluid viscosities eta...