As sketched in Fig. 1, a current molecular dynamics computer simulation of a lipid bilayer fails to capture significant features of the macroscopic system, including long wavelength undulations. Such fluctuations are intrinsically connected to the value of the macroscopic (or thermodynamic) surface tension (cf. Eqs. 1 and 9; for a related treatment, see Brochard et al., 1975, 1976). Consequently, the surface tension that might be evaluated in an MD simulation should not be expected to equal the surface tension obtained from macroscopic measurements. Put another way, the largest of the three simulations presented here contained over 16,000 atoms and required substantial computer time to complete, but modeled a system of only 36 lipids per si...
AbstractSurface tensions evaluated from molecular dynamics simulations of fully hydrated dipalmitoyl...
Molecular dynamics simulations of 500 ps were performed on a system consisting of a bilayer of 64 mo...
Lipid monolayers provide our lungs and eyes their functionality and serve as proxy systems in biomem...
To understand the effect of the finite size of simulation cells on the equilibrium properties of bil...
To understand the effect of the finite size of simulation cells on the equilibrium properties of bil...
To understand the effect of the finite size of simulation cells on the equilibrium properties of bil...
To understand the effect of the finite size of simulation cells on the equilibrium properties of bil...
To understand the effect of the finite size of simulation cells on the equilibrium properties of bil...
In this paper we report on the molecular dynamics simulation of a fluid phase hydrated dimyristoylph...
To understand the effect of the finite size of simulation cells on the equilibrium properties of bil...
To understand the effect of the finite size of simulation cells on the equilibrium properties of bil...
To understand the effect of the finite size of simulation cells on the equilibrium properties of bil...
In this paper we report on the molecular dynamics simulation of a fluid phase hydrated dimyristoylph...
AbstractA lipid bilayer is modeled using a mesoscopic model designed to bridge atomistic bilayer sim...
In the absence of external stress, the surface tension of a lipid membrane vanishes at equilibrium, ...
AbstractSurface tensions evaluated from molecular dynamics simulations of fully hydrated dipalmitoyl...
Molecular dynamics simulations of 500 ps were performed on a system consisting of a bilayer of 64 mo...
Lipid monolayers provide our lungs and eyes their functionality and serve as proxy systems in biomem...
To understand the effect of the finite size of simulation cells on the equilibrium properties of bil...
To understand the effect of the finite size of simulation cells on the equilibrium properties of bil...
To understand the effect of the finite size of simulation cells on the equilibrium properties of bil...
To understand the effect of the finite size of simulation cells on the equilibrium properties of bil...
To understand the effect of the finite size of simulation cells on the equilibrium properties of bil...
In this paper we report on the molecular dynamics simulation of a fluid phase hydrated dimyristoylph...
To understand the effect of the finite size of simulation cells on the equilibrium properties of bil...
To understand the effect of the finite size of simulation cells on the equilibrium properties of bil...
To understand the effect of the finite size of simulation cells on the equilibrium properties of bil...
In this paper we report on the molecular dynamics simulation of a fluid phase hydrated dimyristoylph...
AbstractA lipid bilayer is modeled using a mesoscopic model designed to bridge atomistic bilayer sim...
In the absence of external stress, the surface tension of a lipid membrane vanishes at equilibrium, ...
AbstractSurface tensions evaluated from molecular dynamics simulations of fully hydrated dipalmitoyl...
Molecular dynamics simulations of 500 ps were performed on a system consisting of a bilayer of 64 mo...
Lipid monolayers provide our lungs and eyes their functionality and serve as proxy systems in biomem...