We develop equilibrium fluctuation formulae for the isothermal elastic moduli of discrete biomembrane models at different scales. We account for the coupling of large stretching and bending strains of triangulated network models endowed with harmonic and dihedral angle potentials, on the basis of the discrete-continuum approach presented in Schmidt and Fraternali (J Mech Phys Solids 60:172–180, 2012). We test the proposed equilibrium fluctuation formulae with reference to a coarse-grained molecular dynamics model of the red blood cell (RBC) membrane (Marcelli et al. in Biophys J 89:2473–2480, 2005; Hale et al. in SoftMatter 5:3603–3606, 2009), employing a local maximum-entropy regularization of the fluctuating configurations (Fraternali e...
The force-extension behavior of single modular biomacromolecules is known to exhibit a characteristi...
Lipid membranes and fiber networks in biological systems perform important mechanical functions at t...
Many biological, natural and synthetic materials possess a networked or micro-truss-like microstruct...
We develop equilibrium fluctuation formulae for the isothermal elastic moduli of discrete biomembran...
Lipid membranes and fiber networks in biological systems perform important mechanical functions at t...
Special issue: Mechanics of biological membranesInternational audienceThe asymptotic homogenization ...
We present a new scheme to estimate the elastic properties of biological membranes in computer simul...
We propose a new experimental technique for red blood cell thermal fluctuation analysis, which make...
To dynamically reshape the membrane, cells rely on a variety of intracellular mechanisms, ranging fr...
AbstractWe describe a model of the mechanical properties of the cell plasma membrane using a finite-...
The membranes of human red blood cells (RBCs) are a composite of a fluid lipid bilayer and a triangu...
A finite element network model has been developed to predict the macroscopic elastic shear modulus a...
We describe a model of the mechanical properties of the cell plasma membrane using a finite-temperat...
We present a meshfree method for the curvature estimation of membrane networks based on the Local Ma...
We establish a computational approach to extract the bending modulus, <i>K</i><sub><i>C</i></sub>, f...
The force-extension behavior of single modular biomacromolecules is known to exhibit a characteristi...
Lipid membranes and fiber networks in biological systems perform important mechanical functions at t...
Many biological, natural and synthetic materials possess a networked or micro-truss-like microstruct...
We develop equilibrium fluctuation formulae for the isothermal elastic moduli of discrete biomembran...
Lipid membranes and fiber networks in biological systems perform important mechanical functions at t...
Special issue: Mechanics of biological membranesInternational audienceThe asymptotic homogenization ...
We present a new scheme to estimate the elastic properties of biological membranes in computer simul...
We propose a new experimental technique for red blood cell thermal fluctuation analysis, which make...
To dynamically reshape the membrane, cells rely on a variety of intracellular mechanisms, ranging fr...
AbstractWe describe a model of the mechanical properties of the cell plasma membrane using a finite-...
The membranes of human red blood cells (RBCs) are a composite of a fluid lipid bilayer and a triangu...
A finite element network model has been developed to predict the macroscopic elastic shear modulus a...
We describe a model of the mechanical properties of the cell plasma membrane using a finite-temperat...
We present a meshfree method for the curvature estimation of membrane networks based on the Local Ma...
We establish a computational approach to extract the bending modulus, <i>K</i><sub><i>C</i></sub>, f...
The force-extension behavior of single modular biomacromolecules is known to exhibit a characteristi...
Lipid membranes and fiber networks in biological systems perform important mechanical functions at t...
Many biological, natural and synthetic materials possess a networked or micro-truss-like microstruct...