The temperature dependence of the voltage-dependent excitability inducing material channel has been studied in thin lipid membranes containing only channel. It is shown that the conductance of the open configuration has a temperature dependence that is just that expected from the temperature dependence of the bathing electrolyte. The conductance of the closed channel decreases increasing temperature. © 1974
AbstractIn this article we compare electrical conductance events from single channel recordings of t...
The temperature and voltage dependence of gating and conductance of sarcoplasmic reticulum K+ channe...
AbstractWe show that the activity of an ion channel is correlated with the phase state of the lipid ...
ABSTRACT The interpretation electrical phenomena in biomembranes is usually based on the assumption ...
AbstractThe temperature dependence of single-channel conductance and open probability for outer memb...
Kinetic characteristics of the excitability inducing material channel on oxidized cholesterol and br...
Current-voltage characteristics and the conductivity temperature dependence of sphingomyelin bilayer...
Current-voltage characteristics and the conductivity temperature dependence of sphingomyelin bilayer...
ABSTRACT Synthetic lipid membranes in the absence of proteins can display quantized conduction event...
Here, a homemade device allowed preparing horizontal lipid bilayer membranes (hBLMs) for recording e...
AbstractThe effect of temperature change(s) on the dynamics of giant unilamellar vesicles containing...
AbstractThe present paper was aimed at evaluating the effect of cholesterol (CHO) on the voltage-ind...
Motivation. The nonlinearity in the I-V characteristics of lipid bilayer membrane in symmetric bathi...
Temperature was used as a biophysical tool to investigate the energy changes associated with conform...
Our understanding of the electrical properties of cell membranes is derived from experiments where t...
AbstractIn this article we compare electrical conductance events from single channel recordings of t...
The temperature and voltage dependence of gating and conductance of sarcoplasmic reticulum K+ channe...
AbstractWe show that the activity of an ion channel is correlated with the phase state of the lipid ...
ABSTRACT The interpretation electrical phenomena in biomembranes is usually based on the assumption ...
AbstractThe temperature dependence of single-channel conductance and open probability for outer memb...
Kinetic characteristics of the excitability inducing material channel on oxidized cholesterol and br...
Current-voltage characteristics and the conductivity temperature dependence of sphingomyelin bilayer...
Current-voltage characteristics and the conductivity temperature dependence of sphingomyelin bilayer...
ABSTRACT Synthetic lipid membranes in the absence of proteins can display quantized conduction event...
Here, a homemade device allowed preparing horizontal lipid bilayer membranes (hBLMs) for recording e...
AbstractThe effect of temperature change(s) on the dynamics of giant unilamellar vesicles containing...
AbstractThe present paper was aimed at evaluating the effect of cholesterol (CHO) on the voltage-ind...
Motivation. The nonlinearity in the I-V characteristics of lipid bilayer membrane in symmetric bathi...
Temperature was used as a biophysical tool to investigate the energy changes associated with conform...
Our understanding of the electrical properties of cell membranes is derived from experiments where t...
AbstractIn this article we compare electrical conductance events from single channel recordings of t...
The temperature and voltage dependence of gating and conductance of sarcoplasmic reticulum K+ channe...
AbstractWe show that the activity of an ion channel is correlated with the phase state of the lipid ...