AbstractWe investigate the coupling between the mechanics of fluid membranes and transmembrane electric potential using as a model system the giant vesicle (closed bilayer membrane made of lipids or polymers). In DC electric pulses, an initially quasispherical giant vesicle can become a spherocylinder. The edge between the spherical cap and the cylindrical section appears to separate porated (conducting) and intact (insulating) regions of the membrane. The location of the edge provides a quick estimate for the critical poration voltage of a membrane. A uniform AC electric field affects membrane fluctuations, increasing the effective bending rigidity and decreasing the effective membrane tension. Moreover, a very deflated vesicle can become ...
This review is dedicated to electric field effects on giant unilamellar vesicles, a cell-size membra...
Neumann E, Kakorin S, Tönsing K. Membrane electroporation and electromechanical deformation of vesic...
A transient analysis for vesicle deformation under direct-current electric fields is developed. The ...
When exposed to a DC electric pulse, giant vesicles made of bilayer membranes adopt peculiar drum-li...
When exposed to a DC electric pulse, giant vesicles made of bilayer membranes adopt peculiar drum-li...
When exposed to a DC electric pulse, giant vesicles made of bilayer membranes adopt peculiar drum-li...
When exposed to a DC electric pulse, giant vesicles made of bilayer membranes adopt peculiar drum-li...
When exposed to a DC electric pulse, giant vesicles made of bilayer membranes adopt peculiar drum-li...
AbstractWe develop an analytical theory to explain the experimentally observed morphological transit...
We describe a facile method to simultaneously measure the bending rigidity and capacitance of biomim...
The deformation of a lipid vesicle in an external electric field is analysed assuming constant membr...
AbstractConsidering the effects of osmotic pressure, elastic bending, Maxwell pressure, surface tens...
<div><p>The influence of alternating electric field (AC) in the structure and dynamics of giant unil...
The effect of ac electric fields on the elasticity of supported lipid bilayers is investigated at th...
The effect of ac electric fields on the elasticity of supported lipid bilayers is investigated at th...
This review is dedicated to electric field effects on giant unilamellar vesicles, a cell-size membra...
Neumann E, Kakorin S, Tönsing K. Membrane electroporation and electromechanical deformation of vesic...
A transient analysis for vesicle deformation under direct-current electric fields is developed. The ...
When exposed to a DC electric pulse, giant vesicles made of bilayer membranes adopt peculiar drum-li...
When exposed to a DC electric pulse, giant vesicles made of bilayer membranes adopt peculiar drum-li...
When exposed to a DC electric pulse, giant vesicles made of bilayer membranes adopt peculiar drum-li...
When exposed to a DC electric pulse, giant vesicles made of bilayer membranes adopt peculiar drum-li...
When exposed to a DC electric pulse, giant vesicles made of bilayer membranes adopt peculiar drum-li...
AbstractWe develop an analytical theory to explain the experimentally observed morphological transit...
We describe a facile method to simultaneously measure the bending rigidity and capacitance of biomim...
The deformation of a lipid vesicle in an external electric field is analysed assuming constant membr...
AbstractConsidering the effects of osmotic pressure, elastic bending, Maxwell pressure, surface tens...
<div><p>The influence of alternating electric field (AC) in the structure and dynamics of giant unil...
The effect of ac electric fields on the elasticity of supported lipid bilayers is investigated at th...
The effect of ac electric fields on the elasticity of supported lipid bilayers is investigated at th...
This review is dedicated to electric field effects on giant unilamellar vesicles, a cell-size membra...
Neumann E, Kakorin S, Tönsing K. Membrane electroporation and electromechanical deformation of vesic...
A transient analysis for vesicle deformation under direct-current electric fields is developed. The ...