International audienceWe show the existence of a flow at the surface of strongly adhering giant lipid vesicles submitted to an external shear flow. The surface flow is divided into two symmetric quadrants and presents two stagnation points (SP) on each side of the vesicle meridian plane. The position of these stagnation points depends strongly on the adhesion strength, characterized by the ratio of the contact zone diameter to the vesicle diameter. Contrary to the case of non-adhesive vesicles, streamlines do not lie in the shear plane. By avoiding the motionless contact zone, streamlines result in three-dimensional paths, strongly asymmetric away from the SP. Additional shearing dissipation may occur on the membrane surface as we observed ...
We studied the sequence of phenomena which occur when a solid microsphere is brought in contact with...
The dynamics of vesicles under shear flow are carefully analyzed in the regime of a small vesicle ex...
International audienceRed blood cells under shear flow present a specific swinging motion superimpos...
International audienceWe show the existence of a flow at the surface of strongly adhering giant lipi...
AbstractWe report a detailed study of the behavior (shapes, experienced forces, velocities) of giant...
International audienceThe dynamics of giant lipid vesicles under shear flow is experimentally invest...
Giant vesicles are deformable lipid membranes enclosing a fluid, with diameters of several microns. ...
We study the role of the interplay of specific and universal forces for the adhesion of giant vesicl...
Recent experiments have shown that when a near-hemispherical lipid vesicle attached to a solid surfa...
International audienceWe describe the dynamics of interaction of giant vesicles with properly design...
Giant vesicles are deformable lipid membranes enclosing a fluid, with diameters of several microns. ...
In this study we investigate the effect of shear force on lipid membranes induced by external fluid ...
The dynamics of lipid vesicles enclosing a viscous polymer solution is studied in a simple shear flo...
We studied the sequence of phenomena which occur when a solid microsphere is brought in contact with...
The dynamics of vesicles under shear flow are carefully analyzed in the regime of a small vesicle ex...
International audienceRed blood cells under shear flow present a specific swinging motion superimpos...
International audienceWe show the existence of a flow at the surface of strongly adhering giant lipi...
AbstractWe report a detailed study of the behavior (shapes, experienced forces, velocities) of giant...
International audienceThe dynamics of giant lipid vesicles under shear flow is experimentally invest...
Giant vesicles are deformable lipid membranes enclosing a fluid, with diameters of several microns. ...
We study the role of the interplay of specific and universal forces for the adhesion of giant vesicl...
Recent experiments have shown that when a near-hemispherical lipid vesicle attached to a solid surfa...
International audienceWe describe the dynamics of interaction of giant vesicles with properly design...
Giant vesicles are deformable lipid membranes enclosing a fluid, with diameters of several microns. ...
In this study we investigate the effect of shear force on lipid membranes induced by external fluid ...
The dynamics of lipid vesicles enclosing a viscous polymer solution is studied in a simple shear flo...
We studied the sequence of phenomena which occur when a solid microsphere is brought in contact with...
The dynamics of vesicles under shear flow are carefully analyzed in the regime of a small vesicle ex...
International audienceRed blood cells under shear flow present a specific swinging motion superimpos...