We derive a biomembrane model consisting of a fluid enclosed by a lipid membrane. The membrane is characterized by its Canham-Helfrich energy (Willmore energy with area constraint) and acts as a boundary force on the Navier-Stokes system modeling an incompressible fluid. We give a concise description of the model and of the associated numerical scheme. We provide numerical simulations with emphasis on the comparisons between different types of flow: the geometric model which does not take into account the bulk fluid and the biomembrane model for two different regimes of parameters
Biological membranes are fundamental components of living organisms that play an undeniable role in ...
We study the effect of membrane viscosity in the dynamics of liquid membranes{possibly with free or ...
In this paper we review some recent results concerning the variational deduction of a Canham-Helfric...
We derive a biomembrane model consisting of a fluid enclosed by a lipid membrane. The memb...
We present a parametric finite element approximation of a fluidic membrane, whose evolution is gover...
The goal of this project is to explore the mechanics of lipid fluid membranes as found in biological...
Vesicles and many biological membranes are made of two monolayers of lipid molecules and form closed...
Biological membranes are important structural units in the cell. Composed of a lipid bilayer with em...
We develop and investigate numerically a thermodynamically consistent model of two-dimensional multi...
We consider the numerical approximation of lipid biomembranes, including red blood cells, described ...
The equations governing lipid membrane dynamics in planar, spherical, and cylindrical geometries are...
We discuss a continuum-based model describing the deformations of lipid membranes subjected to intra...
A simplified particle-based computer model for hydrated phospholipid bilayers has been developed and...
A numerical scheme is presented for modeling dynamics of incompressible elastic lipid membranes imbe...
Biological membranes are continuously brought out of equilibrium, as they shape organelles, package ...
Biological membranes are fundamental components of living organisms that play an undeniable role in ...
We study the effect of membrane viscosity in the dynamics of liquid membranes{possibly with free or ...
In this paper we review some recent results concerning the variational deduction of a Canham-Helfric...
We derive a biomembrane model consisting of a fluid enclosed by a lipid membrane. The memb...
We present a parametric finite element approximation of a fluidic membrane, whose evolution is gover...
The goal of this project is to explore the mechanics of lipid fluid membranes as found in biological...
Vesicles and many biological membranes are made of two monolayers of lipid molecules and form closed...
Biological membranes are important structural units in the cell. Composed of a lipid bilayer with em...
We develop and investigate numerically a thermodynamically consistent model of two-dimensional multi...
We consider the numerical approximation of lipid biomembranes, including red blood cells, described ...
The equations governing lipid membrane dynamics in planar, spherical, and cylindrical geometries are...
We discuss a continuum-based model describing the deformations of lipid membranes subjected to intra...
A simplified particle-based computer model for hydrated phospholipid bilayers has been developed and...
A numerical scheme is presented for modeling dynamics of incompressible elastic lipid membranes imbe...
Biological membranes are continuously brought out of equilibrium, as they shape organelles, package ...
Biological membranes are fundamental components of living organisms that play an undeniable role in ...
We study the effect of membrane viscosity in the dynamics of liquid membranes{possibly with free or ...
In this paper we review some recent results concerning the variational deduction of a Canham-Helfric...