The continuum and single jump treatments of ion transport through black lipid membranes predict experimentally distinguishable results, even when the same mechanistic assumptions are made and the same potential-distance profile is used. On the basis of steady-state current-voltage curves for nonactin-mediated transport of potassium ions, we find that the continuum model describes the data accurately, whereas the single jump model fails to do so, for all cases investigated in which capacitance measurements indicate that the membrane thickness varies little with applied potential
A high amplitude voltage step technique has been used to meausre the surface density of dipicrylamin...
The cell membrane protects the delicate internal machinery of the cell and hosts a complex transport...
AbstractWe have employed atomic-scale molecular dynamics simulations to address ion leakage through ...
The continuum and single jump treatments of ion transport through black lipid membranes predict expe...
The mechanisms by which inorganic ions cross biological membranes are still effectively unknown. How...
Tetraphenylborate-induced current transients were studied in lipid bilayers formed from bacterial ph...
The current-voltage relationship of ion leak (i.e., ion transport involving neither special channels...
AbstractThe current-voltage relationships of model bilayer membranes have been measured in various p...
We have studied the conductance properties of unmodified monoglyceride membranes as a function of mo...
The shape of the energy barrier inside thin, insulating membranes can be an important factor in dete...
In this paper the ion transport across a thin lipid membrane is treated using a generalized form of ...
AbstractVoltage-clamp experiments were performed on lipid bilayer membranes to study the voltage dep...
In this and the following papers a theoretical analysis of the current-voltage characteristic of lip...
We have shown that the absorption of tetraphenylborate into black lipid membranes formed from either...
The kinetic analysis of charge pulse experiments at planar lipid membranes in the presence of macroc...
A high amplitude voltage step technique has been used to meausre the surface density of dipicrylamin...
The cell membrane protects the delicate internal machinery of the cell and hosts a complex transport...
AbstractWe have employed atomic-scale molecular dynamics simulations to address ion leakage through ...
The continuum and single jump treatments of ion transport through black lipid membranes predict expe...
The mechanisms by which inorganic ions cross biological membranes are still effectively unknown. How...
Tetraphenylborate-induced current transients were studied in lipid bilayers formed from bacterial ph...
The current-voltage relationship of ion leak (i.e., ion transport involving neither special channels...
AbstractThe current-voltage relationships of model bilayer membranes have been measured in various p...
We have studied the conductance properties of unmodified monoglyceride membranes as a function of mo...
The shape of the energy barrier inside thin, insulating membranes can be an important factor in dete...
In this paper the ion transport across a thin lipid membrane is treated using a generalized form of ...
AbstractVoltage-clamp experiments were performed on lipid bilayer membranes to study the voltage dep...
In this and the following papers a theoretical analysis of the current-voltage characteristic of lip...
We have shown that the absorption of tetraphenylborate into black lipid membranes formed from either...
The kinetic analysis of charge pulse experiments at planar lipid membranes in the presence of macroc...
A high amplitude voltage step technique has been used to meausre the surface density of dipicrylamin...
The cell membrane protects the delicate internal machinery of the cell and hosts a complex transport...
AbstractWe have employed atomic-scale molecular dynamics simulations to address ion leakage through ...