Background We aimed to investigate the effect of cell-cell dipole interactions in the equilibrium distributions in dielectrophoretic devices. Methods We used a three dimensional coupled Monte Carlo-Poisson method to theoretically study the final distribution of a system of uncharged polarizable particles suspended in a static liquid medium under the action of an oscillating non-uniform electric field generated by polynomial electrodes. The simulated distributions have been compared with experimental ones observed in the case of MDA-MB-231 cells in the same operating conditions. Results The real and simulated distributions are consistent. In both cases the cells distribution near the electrodes is dominated by cell-cell dipole interaction...
Ionic-based dielectrophoretic microchips have attracted significant attention due to their wide-rang...
In a non-uniform ac electric field, dipole forces cause polarizable particles to experience ponderom...
A new expression for the dielectrophoresis (DEP) force is derived from the electrical work in a char...
Background We aimed to investigate the effect of cell-cell dipole interactions in the equilibrium...
A three dimensional Coupled Monte Carlo-Poisson method has been used to evaluate the impact of parti...
This paper discusses the 3-dimensional (3D) electric field distributions on the surface and across t...
Dielectrophoresis (DEP) has been reported as a promising method for cell manipulation without physic...
Dielectrophoresis is defined as the motion of an electrically polarisable particle in a non-uniform ...
Dielectrophoresis (DEP), an electrokinetic phenomenon based on particle polarizations in nonuniform ...
Dielectrophoresis (DEP) is the motion of particles under the influence of a nonuniform electric fiel...
Aqueous solutions of charged spherical macroions with variable dielectric permittivity and their ass...
AbstractDielectric properties of suspended cells are explored by analysis of the frequency-dependent...
In two previous papers, we calculated the dielectrophoresis (DEP) force and corresponding trajectori...
Dielectric spectroscopy can be used to determine the dipole moment of colloidal particles from which...
Aqueous solutions of charged spherical macroions with variable dielectric permittivity and their ass...
Ionic-based dielectrophoretic microchips have attracted significant attention due to their wide-rang...
In a non-uniform ac electric field, dipole forces cause polarizable particles to experience ponderom...
A new expression for the dielectrophoresis (DEP) force is derived from the electrical work in a char...
Background We aimed to investigate the effect of cell-cell dipole interactions in the equilibrium...
A three dimensional Coupled Monte Carlo-Poisson method has been used to evaluate the impact of parti...
This paper discusses the 3-dimensional (3D) electric field distributions on the surface and across t...
Dielectrophoresis (DEP) has been reported as a promising method for cell manipulation without physic...
Dielectrophoresis is defined as the motion of an electrically polarisable particle in a non-uniform ...
Dielectrophoresis (DEP), an electrokinetic phenomenon based on particle polarizations in nonuniform ...
Dielectrophoresis (DEP) is the motion of particles under the influence of a nonuniform electric fiel...
Aqueous solutions of charged spherical macroions with variable dielectric permittivity and their ass...
AbstractDielectric properties of suspended cells are explored by analysis of the frequency-dependent...
In two previous papers, we calculated the dielectrophoresis (DEP) force and corresponding trajectori...
Dielectric spectroscopy can be used to determine the dipole moment of colloidal particles from which...
Aqueous solutions of charged spherical macroions with variable dielectric permittivity and their ass...
Ionic-based dielectrophoretic microchips have attracted significant attention due to their wide-rang...
In a non-uniform ac electric field, dipole forces cause polarizable particles to experience ponderom...
A new expression for the dielectrophoresis (DEP) force is derived from the electrical work in a char...