We discuss the electrostatic contribution to the elastic moduli of a cell or artificial membrane placed in an electrolyte and driven by a DC electric field. The field drives ion currents across the membrane, through specific channels, pumps or natural pores. In steady state, charges accumulate in the Debye layers close to the membrane, modifying the membrane elastic moduli. We first study a model of a membrane of zero thickness, later generalizing this treatment to allow for a finite thickness and finite dielectric constant. Our results clarify and extend the results presented by D. Lacoste, M. Cosentino Lagomarsino, and J.F. Joanny (EPL 77, 18006 (2007)), by providing a physical explanation for a destabilizing term proportional to k...
Analysis of the angular distribution of extensil mechanical stress, sigma e, generated in cytoplasmi...
AbstractIt was recently demonstrated that significant local deformations of biological membranes tak...
AbstractWe investigate the coupling between the mechanics of fluid membranes and transmembrane elect...
We discuss the electrostatic contribution to the elastic moduli of a cell or artificial membrane pla...
AbstractMany cellular and intracellular processes critically depend on membrane shape, but the shape...
We develop a model for a driven cell or artificial membrane in an electrolyte. The system is kept f...
The stability of shape fluctuations of a flat charged membrane immersed in a fluid is analyzed using...
The relation between extracellular electric fields and changes in membrane potential that such field...
The nature of mechanical and electrical forces on biological membranes in relation to mechanical equ...
AbstractLiving cells maintain a huge transmembrane electric field across their membranes. This elect...
The behavior of a conductive membrane in a static (dc) electric field is investigated theoretically....
Background Cellular biomechanics can be manipulated by strong electric fields, manifested by the fie...
When a current is passed through a membrane system, differences in transport numbers between the mem...
A model is constructed to describe the arbitrary deformation of a drop or vesicle that contains and ...
The venerable theory of electrokinetic phenomena rests on the hypothesis of a dilute solution of poi...
Analysis of the angular distribution of extensil mechanical stress, sigma e, generated in cytoplasmi...
AbstractIt was recently demonstrated that significant local deformations of biological membranes tak...
AbstractWe investigate the coupling between the mechanics of fluid membranes and transmembrane elect...
We discuss the electrostatic contribution to the elastic moduli of a cell or artificial membrane pla...
AbstractMany cellular and intracellular processes critically depend on membrane shape, but the shape...
We develop a model for a driven cell or artificial membrane in an electrolyte. The system is kept f...
The stability of shape fluctuations of a flat charged membrane immersed in a fluid is analyzed using...
The relation between extracellular electric fields and changes in membrane potential that such field...
The nature of mechanical and electrical forces on biological membranes in relation to mechanical equ...
AbstractLiving cells maintain a huge transmembrane electric field across their membranes. This elect...
The behavior of a conductive membrane in a static (dc) electric field is investigated theoretically....
Background Cellular biomechanics can be manipulated by strong electric fields, manifested by the fie...
When a current is passed through a membrane system, differences in transport numbers between the mem...
A model is constructed to describe the arbitrary deformation of a drop or vesicle that contains and ...
The venerable theory of electrokinetic phenomena rests on the hypothesis of a dilute solution of poi...
Analysis of the angular distribution of extensil mechanical stress, sigma e, generated in cytoplasmi...
AbstractIt was recently demonstrated that significant local deformations of biological membranes tak...
AbstractWe investigate the coupling between the mechanics of fluid membranes and transmembrane elect...