We consider the numerical approximation of lipid biomembranes, including red blood cells, described through the Canham-Helfrich model, according to which the shape minimizes the bending energy under area and volume constraints. Energy minimization is performed via L2- gradient flow of the Canham-Helfrich energy using two Lagrange multipliers to weakly enforce the constraints. This yields a highly nonlinear, high order, time dependent geometric Partial Differential Equation (PDE). We represent the biomembranes as single-patch NURBS closed surfaces. We discretize the geometric PDEs in space with NURBS-based Isogeometric Analysis and in time with Backward Differentiation Formulas. We tackle the nonlinearity in our formulation through a semi-im...
Vesicles formed by lipid bilayers (biomembranes) show a variety of interesting shapes that can be ex...
In this thesis, we consider the numerical approximation of high order geometric Partial Differential...
The membrane's dynamics is very important for cells. A membrane in 2-dimensional space can be s...
We consider the numerical approximation of lipid biomembranes at equilibrium described by the Canham...
We present a parametric finite element approximation of a fluidic membrane, whose evolution is gover...
An isogeometric finite element method for incompressible fluid film equations is presented. The meth...
We derive a biomembrane model consisting of a fluid enclosed by a lipid membrane. The memb...
Biomembranes consisting of multiple lipids may involve phase separation phenomena leading to coexist...
An important open question in biophysics is to understand how mechanical forces shape membrane-bound...
Abstract:- In this paper we study a methodology for the numerical simulation of stable structures of...
We address the geometric Cauchy problem for surfaces associated to the membrane shape equation descr...
Biomembranes and vesicles consisting of multiple phases can attain a multitude of shapes, undergoing...
A continuum mechanical model based on the Helfrich Hamiltonian is devised to investigate the couplin...
Biomembranes play a central role in various phenomena like locomotion of cells, cell-cell interactio...
We present a computational study of bending models for the curvature elasticity of lipid bilayer mem...
Vesicles formed by lipid bilayers (biomembranes) show a variety of interesting shapes that can be ex...
In this thesis, we consider the numerical approximation of high order geometric Partial Differential...
The membrane's dynamics is very important for cells. A membrane in 2-dimensional space can be s...
We consider the numerical approximation of lipid biomembranes at equilibrium described by the Canham...
We present a parametric finite element approximation of a fluidic membrane, whose evolution is gover...
An isogeometric finite element method for incompressible fluid film equations is presented. The meth...
We derive a biomembrane model consisting of a fluid enclosed by a lipid membrane. The memb...
Biomembranes consisting of multiple lipids may involve phase separation phenomena leading to coexist...
An important open question in biophysics is to understand how mechanical forces shape membrane-bound...
Abstract:- In this paper we study a methodology for the numerical simulation of stable structures of...
We address the geometric Cauchy problem for surfaces associated to the membrane shape equation descr...
Biomembranes and vesicles consisting of multiple phases can attain a multitude of shapes, undergoing...
A continuum mechanical model based on the Helfrich Hamiltonian is devised to investigate the couplin...
Biomembranes play a central role in various phenomena like locomotion of cells, cell-cell interactio...
We present a computational study of bending models for the curvature elasticity of lipid bilayer mem...
Vesicles formed by lipid bilayers (biomembranes) show a variety of interesting shapes that can be ex...
In this thesis, we consider the numerical approximation of high order geometric Partial Differential...
The membrane's dynamics is very important for cells. A membrane in 2-dimensional space can be s...