AbstractA stochastic model for migration dynamics of solute molecules from the bulk aqueous phase to the intravesicular water pool is developed with a goal to interpret recent passive permeability measurements of bilayer membranes. Previously neglected fluctuations of the number of solubilized species in the inner water pool of a vesicle are naturally incorporated into the model. For a homogeneous one-phase bilayer, the model predicts exponential long-time asymptotics of the migration dynamics with a rate constant given by a sum of the frequencies of exit and entry of a solute molecule from/into the intravesicular water pool into/from the bulk aqueous phase. The long-time constant is directly related to the membrane permeability
The conductive lipid pores occurring in planar bilayer membranes are known to manifest themselves ex...
The molecular details of the passive water flux across the hydrophobic membrane interior are still a...
Permeability is a key property in various fields such as membrane technology for chemical separation...
AbstractA stochastic model for migration dynamics of solute molecules from the bulk aqueous phase to...
The spontaneous diffusion of solutes through lipid bilayers is still a challenge for theoretical pre...
We modeled the relaxation dynamics of (lipid) vesicles upon osmotic upshift, taking into account vol...
The atomic-scale diffusion of water in the presence of several lipid bilayers mimicking biomembranes...
Abstract. We investigate the dynamics of a single component fluid bilayer, which exchanges material ...
To obtain insight in the process of water permeation through a lipid membrane, we performed molecula...
We investigate the dynamics of critical fluctuations in binary fluid membranes using a two-dimension...
The time correlation function of the fluctuations in shape of large ( ≽ 10 μm) quasi-spherical hydra...
This thesis concerns the interplay between the lipid phase behaviour, domain formation and the perme...
Predicting the rate at which substances permeate membrane barriers in vivo is crucial for drug devel...
The capability of lipid bilayers to exhibit fluid-phase behavior is a fascinating property, which en...
We investigate the dynamics of a single component fluid bilayer, which exchanges material with the s...
The conductive lipid pores occurring in planar bilayer membranes are known to manifest themselves ex...
The molecular details of the passive water flux across the hydrophobic membrane interior are still a...
Permeability is a key property in various fields such as membrane technology for chemical separation...
AbstractA stochastic model for migration dynamics of solute molecules from the bulk aqueous phase to...
The spontaneous diffusion of solutes through lipid bilayers is still a challenge for theoretical pre...
We modeled the relaxation dynamics of (lipid) vesicles upon osmotic upshift, taking into account vol...
The atomic-scale diffusion of water in the presence of several lipid bilayers mimicking biomembranes...
Abstract. We investigate the dynamics of a single component fluid bilayer, which exchanges material ...
To obtain insight in the process of water permeation through a lipid membrane, we performed molecula...
We investigate the dynamics of critical fluctuations in binary fluid membranes using a two-dimension...
The time correlation function of the fluctuations in shape of large ( ≽ 10 μm) quasi-spherical hydra...
This thesis concerns the interplay between the lipid phase behaviour, domain formation and the perme...
Predicting the rate at which substances permeate membrane barriers in vivo is crucial for drug devel...
The capability of lipid bilayers to exhibit fluid-phase behavior is a fascinating property, which en...
We investigate the dynamics of a single component fluid bilayer, which exchanges material with the s...
The conductive lipid pores occurring in planar bilayer membranes are known to manifest themselves ex...
The molecular details of the passive water flux across the hydrophobic membrane interior are still a...
Permeability is a key property in various fields such as membrane technology for chemical separation...