We investigate the dependence of single-particle diffusion coefficients on the size and shape of the simulation box in molecular dynamics simulations of fluids and lipid membranes. We find that the diffusion coefficients of lipids and a carbon nanotube embedded in a lipid membrane diverge with the logarithm of the box width. For a neat Lennard-Jones fluid in flat rectangular boxes, diffusion becomes anisotropic, diverging logarithmically in all three directions with increasing box width. In elongated boxes, the diffusion coefficients normal to the long axis diverge linearly with the height-to-width ratio. For both lipid membranes and neat fluids, this behavior is predicted quantitatively by hydrodynamic theory. Mean-square displacements in ...
Molecular dynamics (MD) simulations of dipalmitoylphosphatidylcholine (DPPC) bilayers composed of 72...
The diffusion and mobility in biomembranes are crucial for various cell functions; however, the mech...
Lipid and protein lateral mobility is essential for biological function. Our theoretical understandi...
We investigate the dependence of single-particle diffusion coefficients on the size and shape of the...
By performing molecular dynamics simulations with up to 132 million coarse-grained particles in half...
We investigate system-size effects on the rotational diffusion of membrane proteins and other membra...
We investigate system-size effects on the rotational diffusion of membrane proteins and other membra...
De nombreuses études récentes, expérimentales et in-silico, montrent que la diffusion latérale des m...
<p>Diffusion coefficients were calculated individually for each of the four <i>10HA</i> simulations,...
There is no comprehensive model for the dynamics of cellular membranes. Even mechanisms of basic dyn...
The Saffman-Delbrück hydrodynamic model for lipid-bilayer membranes is modified to account for the p...
Currently, there is no comprehensive model for the dynamics of cellular membranes. The understanding...
AbstractExperimentally determined diffusion constants are often used to elucidate the size and oligo...
The dynamics of constituents and the surface response of cellular membranes-also in connection to th...
AbstractThe dynamics of constituents and the surface response of cellular membranes—also in connecti...
Molecular dynamics (MD) simulations of dipalmitoylphosphatidylcholine (DPPC) bilayers composed of 72...
The diffusion and mobility in biomembranes are crucial for various cell functions; however, the mech...
Lipid and protein lateral mobility is essential for biological function. Our theoretical understandi...
We investigate the dependence of single-particle diffusion coefficients on the size and shape of the...
By performing molecular dynamics simulations with up to 132 million coarse-grained particles in half...
We investigate system-size effects on the rotational diffusion of membrane proteins and other membra...
We investigate system-size effects on the rotational diffusion of membrane proteins and other membra...
De nombreuses études récentes, expérimentales et in-silico, montrent que la diffusion latérale des m...
<p>Diffusion coefficients were calculated individually for each of the four <i>10HA</i> simulations,...
There is no comprehensive model for the dynamics of cellular membranes. Even mechanisms of basic dyn...
The Saffman-Delbrück hydrodynamic model for lipid-bilayer membranes is modified to account for the p...
Currently, there is no comprehensive model for the dynamics of cellular membranes. The understanding...
AbstractExperimentally determined diffusion constants are often used to elucidate the size and oligo...
The dynamics of constituents and the surface response of cellular membranes-also in connection to th...
AbstractThe dynamics of constituents and the surface response of cellular membranes—also in connecti...
Molecular dynamics (MD) simulations of dipalmitoylphosphatidylcholine (DPPC) bilayers composed of 72...
The diffusion and mobility in biomembranes are crucial for various cell functions; however, the mech...
Lipid and protein lateral mobility is essential for biological function. Our theoretical understandi...