Cell contact formation, which is the process by which cells are brought into close proximity is an important biotechnological process in cell and molecular biology. Such manipulation is achieved by various means, among which dielectrophoresis (DEP) is widely used due to its simplicity. Here, we show the advantages in the judicious choice of the DEP microelectrode configuration in terms of limiting undesirable effects of dielectric heating on the cells, which could lead to their inactivation or death, as well as the possibility for cell clustering, which is particularly advantageous over the linear cell chain arrangement typically achieved to date with DEP. This study comprises of experimental work as well as mathematical modeling using COMS...
Dielectrophoresis is a versatile tool for the sorting, immobilization, and characterization of cells...
Dielectrophoresis, the induced motion of polarisable particles in non-homogenous electric field, has...
Biological cell manipulation and analysis is one of the most investigated applications of microfluid...
Cell contact formation, which is the process by which cells are brought into close proximity is an i...
Abstract Dielectrophoresis (DEP) has become a promising technique to separate and identify cells and...
We present a microfluidic platform allowing dielectrophoresis-assisted formation of cell aggregates ...
An approach that combines not only the cell manipulation capabilities of dielectrophoresis (DEP), bu...
Particle manipulation based on dielectrophoresis (DEP) can be a versatile and useful tool in lab-on-...
Cell-based approaches in medicine, biotechnology, and pharmaceutical research offer unique prospects...
Abstract only availableThe ability to maneuver and position cells on a micro scale on microchips is ...
Electromanipulation of microparticles utilizing microelectrodes has demonstrated considerable promis...
The purpose of this project is to develop versatile microfluidic systems, which take advantage of di...
Microfluidic devices have advanced cell studies by providing a dynamic fluidic environment on the sc...
Dielectrophoresis, the induced motion of polarisable particles in a nonuniform electric field, has b...
Cell manipulation and separation has numerous biological and medical applications, e.g., identificat...
Dielectrophoresis is a versatile tool for the sorting, immobilization, and characterization of cells...
Dielectrophoresis, the induced motion of polarisable particles in non-homogenous electric field, has...
Biological cell manipulation and analysis is one of the most investigated applications of microfluid...
Cell contact formation, which is the process by which cells are brought into close proximity is an i...
Abstract Dielectrophoresis (DEP) has become a promising technique to separate and identify cells and...
We present a microfluidic platform allowing dielectrophoresis-assisted formation of cell aggregates ...
An approach that combines not only the cell manipulation capabilities of dielectrophoresis (DEP), bu...
Particle manipulation based on dielectrophoresis (DEP) can be a versatile and useful tool in lab-on-...
Cell-based approaches in medicine, biotechnology, and pharmaceutical research offer unique prospects...
Abstract only availableThe ability to maneuver and position cells on a micro scale on microchips is ...
Electromanipulation of microparticles utilizing microelectrodes has demonstrated considerable promis...
The purpose of this project is to develop versatile microfluidic systems, which take advantage of di...
Microfluidic devices have advanced cell studies by providing a dynamic fluidic environment on the sc...
Dielectrophoresis, the induced motion of polarisable particles in a nonuniform electric field, has b...
Cell manipulation and separation has numerous biological and medical applications, e.g., identificat...
Dielectrophoresis is a versatile tool for the sorting, immobilization, and characterization of cells...
Dielectrophoresis, the induced motion of polarisable particles in non-homogenous electric field, has...
Biological cell manipulation and analysis is one of the most investigated applications of microfluid...