A phase-field model that takes into account the bending energy of fluid vesicles is presented. The Canham-Helfrich model is derived in the sharp-interface limit. A dynamic equation for the phase-field has been solved numerically to find stationary shapes of vesicles with different topologies and the dynamic evolution towards them. The results are in agreement with those found by minimization of the Canham-Helfrich free energy. This fact shows that our phase-field model could be applied to more complex problems of instabilities
International audienceWe consider a stochastic perturbation of the phase field alpha-Navier-Stokes m...
The topic of present treatise is a systematic theory of visicle conformations including mean shapes,...
Biomembranes and vesicles consisting of multiple phases can attain a multitude of shapes, undergoing...
A phase-field model that takes into account the bending energy of fluid vesicles is presented. The C...
A phase field model for dealing with shape instabilities in fluid membrane vesicles is presented. T...
Ryham, X. Wang and J. Zhang) on the phase field modeling and simulations of the vesicle membrane def...
This dissertation studies two phase field energy functionals used in the modeling of vesicle shape: ...
Phase-field models have been extensively used to study interfacial phenomena, from solidification to...
Vesicles formed by lipid bilayers (biomembranes) show a variety of interesting shapes that can be ex...
The dynamics of thin, membrane-like structures are ubiquitous in nature. They play especially import...
In this paper, we study numerical approximations of a recently proposed phase field model for the ve...
Shapes and shape transformations of vesicles are considered theoretically within the spontaneous cur...
Cell membranes are crucial to the life of cells and vesicles are important model systems for cell me...
We study the time evolution of the shape of a vesicle membrane under time-dependent spontaneous curv...
Abstract. Phase field approach has becoming a popular tool in modeling interface motion, microstrutu...
International audienceWe consider a stochastic perturbation of the phase field alpha-Navier-Stokes m...
The topic of present treatise is a systematic theory of visicle conformations including mean shapes,...
Biomembranes and vesicles consisting of multiple phases can attain a multitude of shapes, undergoing...
A phase-field model that takes into account the bending energy of fluid vesicles is presented. The C...
A phase field model for dealing with shape instabilities in fluid membrane vesicles is presented. T...
Ryham, X. Wang and J. Zhang) on the phase field modeling and simulations of the vesicle membrane def...
This dissertation studies two phase field energy functionals used in the modeling of vesicle shape: ...
Phase-field models have been extensively used to study interfacial phenomena, from solidification to...
Vesicles formed by lipid bilayers (biomembranes) show a variety of interesting shapes that can be ex...
The dynamics of thin, membrane-like structures are ubiquitous in nature. They play especially import...
In this paper, we study numerical approximations of a recently proposed phase field model for the ve...
Shapes and shape transformations of vesicles are considered theoretically within the spontaneous cur...
Cell membranes are crucial to the life of cells and vesicles are important model systems for cell me...
We study the time evolution of the shape of a vesicle membrane under time-dependent spontaneous curv...
Abstract. Phase field approach has becoming a popular tool in modeling interface motion, microstrutu...
International audienceWe consider a stochastic perturbation of the phase field alpha-Navier-Stokes m...
The topic of present treatise is a systematic theory of visicle conformations including mean shapes,...
Biomembranes and vesicles consisting of multiple phases can attain a multitude of shapes, undergoing...