ABSTRACT Biological membranes are capacitors that can be charged by applying a field across the membrane. The charges on the capacitor exert a force on the membrane that leads to electrostriction, i.e. a thinning of the membrane. Since the force is quadratic in voltage, negative and positive voltage have an identical influence on the physics of symmetric membranes. However, this is not the case for a membrane with an asymmetry leading to a permanent electric polarization. Positive and negative voltages of identical magnitude lead to different properties. Such an asymmetry can originate from a lipid composition that is different on the two monolayers of the membrane, or from membrane curvature. The latter effect is called ’flexoelectricity’....
In recent years, a vast body of information has been accummulated on the electrical properties of b...
Lipid bilayers behave as 2D dielectric materials that undergo polarization and deformation in the pr...
AbstractThe theory and experiments on model and biomembrane flexoelectricity are reviewed. Biologica...
Cell membrane structure is proposed as a lipid matrix with embedded proteins, and thus, their emergi...
Biological membranes are quasi-two-dimensional bilayer structures consisting of a nonideal mixture o...
There is mounting evidence that lipid bilayers display conductive properties. However, when interpre...
Our understanding of the electrical properties of cell membranes is derived from experiments where t...
Our understanding of the electrical properties of cell membranes is derived from experiments where t...
AbstractBiomembranes are thin capacitors with the unique feature of displaying phase transitions in ...
AbstractBiomembranes are thin capacitors with the unique feature of displaying phase transitions in ...
AbstractThe theory and experiments on model and biomembrane flexoelectricity are reviewed. Biologica...
Electrocompression has been measured in lipid bilayers made by apposition of two monolayers. The cap...
ABSTRACT Biomembranes are thin capacitors with the unique feature of displaying phase transitions in...
Biological membranes are essential components of the living systems, and processes occurring with th...
Biological membranes undergo noticeable thermal fluctuations at physiological temperatures. When two...
In recent years, a vast body of information has been accummulated on the electrical properties of b...
Lipid bilayers behave as 2D dielectric materials that undergo polarization and deformation in the pr...
AbstractThe theory and experiments on model and biomembrane flexoelectricity are reviewed. Biologica...
Cell membrane structure is proposed as a lipid matrix with embedded proteins, and thus, their emergi...
Biological membranes are quasi-two-dimensional bilayer structures consisting of a nonideal mixture o...
There is mounting evidence that lipid bilayers display conductive properties. However, when interpre...
Our understanding of the electrical properties of cell membranes is derived from experiments where t...
Our understanding of the electrical properties of cell membranes is derived from experiments where t...
AbstractBiomembranes are thin capacitors with the unique feature of displaying phase transitions in ...
AbstractBiomembranes are thin capacitors with the unique feature of displaying phase transitions in ...
AbstractThe theory and experiments on model and biomembrane flexoelectricity are reviewed. Biologica...
Electrocompression has been measured in lipid bilayers made by apposition of two monolayers. The cap...
ABSTRACT Biomembranes are thin capacitors with the unique feature of displaying phase transitions in...
Biological membranes are essential components of the living systems, and processes occurring with th...
Biological membranes undergo noticeable thermal fluctuations at physiological temperatures. When two...
In recent years, a vast body of information has been accummulated on the electrical properties of b...
Lipid bilayers behave as 2D dielectric materials that undergo polarization and deformation in the pr...
AbstractThe theory and experiments on model and biomembrane flexoelectricity are reviewed. Biologica...