AbstractA sufficiently large force acting on a single point of the fluid membrane of a flaccid phospholipid vesicle is known to cause the formation of a narrow bilayer tube (tether). We analyze this phenomenon by means of general mathematical methods allowing us to determine the shapes of strongly deformed vesicles including their stability. Starting from a free vesicle with an axisymmetric, prolate equilibrium shape, we consider an axial load that pulls (or pushes) the poles of the vesicle apart. Arranging the resulting shapes of strained vesicles in dependence of the axial deformation and of the area difference of monolayers, phase diagrams of stable shapes are presented comprising prolate shapes with or without equatorial mirror symmetry...
AbstractTether formation is a powerful method to study the mechanical properties of soft lipid bilay...
Biomimetic and biological membranes consist of lipid-protein bilayers in their fluid state. Because ...
AbstractBiomimetic membranes are fluid and can undergo two different elastic deformations, bending a...
AbstractA sufficiently large force acting on a single point of the fluid membrane of a flaccid phosp...
The curvature elastic modulus (bending stiffness) of stearoyloleoyl phosphatidylcholine (SOPC) bilay...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
We consider the axisymmetric deformation of an initially spherical, porous vesicle with incompressib...
AbstractTether formation is a powerful method to study the mechanical properties of soft lipid bilay...
Biomimetic and biological membranes consist of lipid-protein bilayers in their fluid state. Because ...
AbstractBiomimetic membranes are fluid and can undergo two different elastic deformations, bending a...
AbstractA sufficiently large force acting on a single point of the fluid membrane of a flaccid phosp...
The curvature elastic modulus (bending stiffness) of stearoyloleoyl phosphatidylcholine (SOPC) bilay...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
International audienceOsmotic deflation of giant vesicles in the rippled gel phase P 0 gives rise to...
We consider the axisymmetric deformation of an initially spherical, porous vesicle with incompressib...
AbstractTether formation is a powerful method to study the mechanical properties of soft lipid bilay...
Biomimetic and biological membranes consist of lipid-protein bilayers in their fluid state. Because ...
AbstractBiomimetic membranes are fluid and can undergo two different elastic deformations, bending a...