AbstractWe develop an analytical theory to explain the experimentally observed morphological transitions of quasispherical giant vesicles induced by alternating electric fields. The model treats the inner and suspending media as lossy dielectrics, and the membrane as an impermeable flexible incompressible–fluid sheet. The vesicle shape is obtained by balancing electric, hydrodynamic, bending, and tension stresses exerted on the membrane. Our approach, which is based on force balance, also allows us to describe the time evolution of the vesicle deformation, in contrast to earlier works based on energy minimization, which are able to predict only stationary shapes. Our theoretical predictions for vesicle deformation are consistent with experi...
International audienceGiant unilamellar vesicles subjected to pulsed direct-current (pulsed-DC) fiel...
The electrodeformation of giant vesicles is studied as a function of their radii and the frequency o...
This review is dedicated to electric field effects on giant unilamellar vesicles, a cell-size membra...
A transient analysis for vesicle deformation under direct-current electric fields is developed. The ...
AbstractWe investigate the coupling between the mechanics of fluid membranes and transmembrane elect...
AbstractConsidering the effects of osmotic pressure, elastic bending, Maxwell pressure, surface tens...
When exposed to a DC electric pulse, giant vesicles made of bilayer membranes adopt peculiar drum-li...
We suggest that non-uniform electric fields that are commonly used to study vesicle dielectrophoresi...
The deformation of a lipid vesicle in an external electric field is analysed assuming constant membr...
Using a recently established liquid crystal model for vesicles, we present a theoretical method to a...
Using a recently established liquid crystal model for vesicles, we present a theoretical method to a...
Compound vesicles are relevant as simplified models for biological cells as well as in technological...
AbstractWhen subjected to alternating electric fields in the frequency range 102–108 Hz, giant lipid...
submitted to Soft MatterGiant unilamellar vesicles (GUVs) under pulsed direct current (pulsed-DC) fi...
Neumann E, Kakorin S, Tönsing K. Membrane electroporation and electromechanical deformation of vesic...
International audienceGiant unilamellar vesicles subjected to pulsed direct-current (pulsed-DC) fiel...
The electrodeformation of giant vesicles is studied as a function of their radii and the frequency o...
This review is dedicated to electric field effects on giant unilamellar vesicles, a cell-size membra...
A transient analysis for vesicle deformation under direct-current electric fields is developed. The ...
AbstractWe investigate the coupling between the mechanics of fluid membranes and transmembrane elect...
AbstractConsidering the effects of osmotic pressure, elastic bending, Maxwell pressure, surface tens...
When exposed to a DC electric pulse, giant vesicles made of bilayer membranes adopt peculiar drum-li...
We suggest that non-uniform electric fields that are commonly used to study vesicle dielectrophoresi...
The deformation of a lipid vesicle in an external electric field is analysed assuming constant membr...
Using a recently established liquid crystal model for vesicles, we present a theoretical method to a...
Using a recently established liquid crystal model for vesicles, we present a theoretical method to a...
Compound vesicles are relevant as simplified models for biological cells as well as in technological...
AbstractWhen subjected to alternating electric fields in the frequency range 102–108 Hz, giant lipid...
submitted to Soft MatterGiant unilamellar vesicles (GUVs) under pulsed direct current (pulsed-DC) fi...
Neumann E, Kakorin S, Tönsing K. Membrane electroporation and electromechanical deformation of vesic...
International audienceGiant unilamellar vesicles subjected to pulsed direct-current (pulsed-DC) fiel...
The electrodeformation of giant vesicles is studied as a function of their radii and the frequency o...
This review is dedicated to electric field effects on giant unilamellar vesicles, a cell-size membra...