The bending rigidity kappa of bilayer membranes was studied with coarse grained soft repulsive potentials using dissipative particle dynamics (DPD) simulations. Using a modified Andersen barostat to maintain the bilayers in a tensionless state, the bending rigidity was obtained from a Fourier analysis of the height fluctuations. From simulations carried out over a wide range of membrane thickness, the continuum scaling relation kappa proportional to d(2) was captured for both the L-alpha and L-beta phases. For membranes with 4 to 6 tail beads, the bending rigidity in the L-beta phase was found to be 10-15 times higher than that observed for the L-alpha phase. From the quadratic scalings obtained, a six fold increase in the area stretch modu...
We describe a method to determine membrane bending rigidity from capacitance measurements on large a...
The ease with which a cell membrane can bend and deform is important for a wide range of biological ...
The ease with which a cell membrane can bend and deform is important for a wide range of biological ...
The bending rigidity kappa of bilayer membranes was studied with coarse grained soft repulsive poten...
The tensile force along a cylindrical lipid bilayer tube is proportional to the membrane’s bending ...
The bilayer bending modulus (Kc) is one of the most important physical constants characterizing lipi...
The bilayer bending modulus (Kc) is one of the most important physical constants characterizing lipi...
We present a computational study of bending models for the curvature elasticity of lipid bilayer mem...
We present a new scheme to estimate the elastic properties of biological membranes in computer simul...
AbstractA lipid bilayer is modeled using a mesoscopic model designed to bridge atomistic bilayer sim...
ABSTRACT: We establish a computational approach to extract the bending modulus, KC, for lipid membra...
Two formulations of the intrinsic bending elasticity of lipid bilayers are compared which are based ...
We have measured the bending rigidites kc of egg lecithin (EYPC), dimyristoylphosphatidyl-ethanolami...
We have measured the bending rigidites kc of egg lecithin (EYPC), dimyristoylphosphatidyl-ethanolami...
Studies of three different, but interlinked, aspects of membrane properties are presented here. Firs...
We describe a method to determine membrane bending rigidity from capacitance measurements on large a...
The ease with which a cell membrane can bend and deform is important for a wide range of biological ...
The ease with which a cell membrane can bend and deform is important for a wide range of biological ...
The bending rigidity kappa of bilayer membranes was studied with coarse grained soft repulsive poten...
The tensile force along a cylindrical lipid bilayer tube is proportional to the membrane’s bending ...
The bilayer bending modulus (Kc) is one of the most important physical constants characterizing lipi...
The bilayer bending modulus (Kc) is one of the most important physical constants characterizing lipi...
We present a computational study of bending models for the curvature elasticity of lipid bilayer mem...
We present a new scheme to estimate the elastic properties of biological membranes in computer simul...
AbstractA lipid bilayer is modeled using a mesoscopic model designed to bridge atomistic bilayer sim...
ABSTRACT: We establish a computational approach to extract the bending modulus, KC, for lipid membra...
Two formulations of the intrinsic bending elasticity of lipid bilayers are compared which are based ...
We have measured the bending rigidites kc of egg lecithin (EYPC), dimyristoylphosphatidyl-ethanolami...
We have measured the bending rigidites kc of egg lecithin (EYPC), dimyristoylphosphatidyl-ethanolami...
Studies of three different, but interlinked, aspects of membrane properties are presented here. Firs...
We describe a method to determine membrane bending rigidity from capacitance measurements on large a...
The ease with which a cell membrane can bend and deform is important for a wide range of biological ...
The ease with which a cell membrane can bend and deform is important for a wide range of biological ...