Trapping of microparticles finds wide applications in numerous fields. Microfluidic chips based on a dielectrophoresis (DEP) technique hold several advantages for trapping microparticles, such as fast result processing, a small amount of sample required, high spatial resolution, and high accuracy of target selection. There is an unmet need to develop DEP microfluidic chips on different substrates for different applications in a low cost, facile, and rapid way. This study develops a new facile method based on a screen-printing technique for fabrication of electrodes of DEP chips on three types of substrates (i.e. polymethyl-methacrylate (PMMA), poly(ethylene terephthalate) and A4 paper). The fabricated PMMA-based DEP microfluidic chip was se...
We present a feasible dielectrophoresis (DEP) approach for rapid patterning of microparticles on a r...
Dielectrophoresis is an electric field-based technique for moving neutral particles through a fluid....
We present a design and fabrication of an integrated micro-fabricated dielectrophoretic (DEP) cell t...
Particle manipulation based on dielectrophoresis (DEP) can be a versatile and useful tool in lab-on-...
Technological needs of the recent times require the improvement in micro-scale devices that manipula...
Electromanipulation of microparticles utilizing microelectrodes has demonstrated considerable promis...
DEP is an established technique for particle manipulation. Although first demonstrated in the 1950s,...
This thesis presents the development of a parallel plate lab-on-a-chip (LOC) device for manipulating...
Dielectrophoresis (DEP) has been successfully applied and demonstrated to provide novel and non-inva...
The development of lab-on-a-chip (LOC) devices over the past decade has attracted growing interest. ...
In recent years, microfluidic dielectrophoresis (DEP) devices, as one of the most promising tools fo...
Single-cell measurement has been achieved using a microfluidic dielectrophoresis (DEP) chip designed...
Cancer is a leading cause of death that adversely affects all ages and genders globally. Tremendous ...
Cancer is a leading cause of death that adversely affects all ages and genders around the world. The...
Microfluidic devices have advanced cell studies by providing a dynamic fluidic environment on the sc...
We present a feasible dielectrophoresis (DEP) approach for rapid patterning of microparticles on a r...
Dielectrophoresis is an electric field-based technique for moving neutral particles through a fluid....
We present a design and fabrication of an integrated micro-fabricated dielectrophoretic (DEP) cell t...
Particle manipulation based on dielectrophoresis (DEP) can be a versatile and useful tool in lab-on-...
Technological needs of the recent times require the improvement in micro-scale devices that manipula...
Electromanipulation of microparticles utilizing microelectrodes has demonstrated considerable promis...
DEP is an established technique for particle manipulation. Although first demonstrated in the 1950s,...
This thesis presents the development of a parallel plate lab-on-a-chip (LOC) device for manipulating...
Dielectrophoresis (DEP) has been successfully applied and demonstrated to provide novel and non-inva...
The development of lab-on-a-chip (LOC) devices over the past decade has attracted growing interest. ...
In recent years, microfluidic dielectrophoresis (DEP) devices, as one of the most promising tools fo...
Single-cell measurement has been achieved using a microfluidic dielectrophoresis (DEP) chip designed...
Cancer is a leading cause of death that adversely affects all ages and genders globally. Tremendous ...
Cancer is a leading cause of death that adversely affects all ages and genders around the world. The...
Microfluidic devices have advanced cell studies by providing a dynamic fluidic environment on the sc...
We present a feasible dielectrophoresis (DEP) approach for rapid patterning of microparticles on a r...
Dielectrophoresis is an electric field-based technique for moving neutral particles through a fluid....
We present a design and fabrication of an integrated micro-fabricated dielectrophoretic (DEP) cell t...