Renormalization of the membrane tension and elastic area expansion modulus by thermally induced bending fluctuations is treated in terms of the formalism of Brochard, De Gennes, and Pfeuty (J. de Phys. (France). 37:1099–1104, 1976). The dependence of the renormalized tension on the bare membrane tension parallels the dependence on the fractional area extension of giant vesicles found experimentally by Evans and Rawicz (Physiol. Rev. Lett. 64:2094–2097, 1990), and suggests conditions for molecular dynamics simulations with membrane patches of limited size that might best represent the properties of macroscopic vesicles
Lipid membranes and fiber networks in biological systems perform important mechanical functions at t...
As sketched in Fig. 1, a current molecular dynamics computer simulation of a lipid bilayer fails to ...
Lipid membranes and fiber networks in biological systems perform important mechanical functions at t...
Thermal fluctuations of giant lipid vesicles have been investigated both theoretically and experimen...
Thermal fluctuations of giant lipid vesicles have been investigated both theoretically and experimen...
The following article appeared in Journal of Chemical Physic 139.9 (2013): 094902 and may be found a...
We identify a class of composite membranes: fluid bilayers coupled to anelastic meshwork, that are s...
The time correlation function of the shape fluctuations of large (greater than 10 micron), cylindric...
The time correlation function of the fluctuations in shape of large ( ≽ 10 μm) quasi-spherical hydra...
The time correlation function of the fluctuations in shape of large ( ≽ 10 μm) quasi-spherical hydra...
Micromechanical experiments on large lecithin bilayer vesicles as a function of temperature have dem...
We present a new scheme to estimate the elastic properties of biological membranes in computer simul...
Lipid membranes constitute very particular materials: on the one hand, they break very easily under ...
AbstractMembranes' response to lateral tension, and eventual rupture, remains poorly understood. In ...
A theory and computational method are provided for the calculation of lipid membranes elastic parame...
Lipid membranes and fiber networks in biological systems perform important mechanical functions at t...
As sketched in Fig. 1, a current molecular dynamics computer simulation of a lipid bilayer fails to ...
Lipid membranes and fiber networks in biological systems perform important mechanical functions at t...
Thermal fluctuations of giant lipid vesicles have been investigated both theoretically and experimen...
Thermal fluctuations of giant lipid vesicles have been investigated both theoretically and experimen...
The following article appeared in Journal of Chemical Physic 139.9 (2013): 094902 and may be found a...
We identify a class of composite membranes: fluid bilayers coupled to anelastic meshwork, that are s...
The time correlation function of the shape fluctuations of large (greater than 10 micron), cylindric...
The time correlation function of the fluctuations in shape of large ( ≽ 10 μm) quasi-spherical hydra...
The time correlation function of the fluctuations in shape of large ( ≽ 10 μm) quasi-spherical hydra...
Micromechanical experiments on large lecithin bilayer vesicles as a function of temperature have dem...
We present a new scheme to estimate the elastic properties of biological membranes in computer simul...
Lipid membranes constitute very particular materials: on the one hand, they break very easily under ...
AbstractMembranes' response to lateral tension, and eventual rupture, remains poorly understood. In ...
A theory and computational method are provided for the calculation of lipid membranes elastic parame...
Lipid membranes and fiber networks in biological systems perform important mechanical functions at t...
As sketched in Fig. 1, a current molecular dynamics computer simulation of a lipid bilayer fails to ...
Lipid membranes and fiber networks in biological systems perform important mechanical functions at t...