A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled transport of individual microparticles. By exciting the electrodes in sequence, a moving dielectrophoretic force is created that can drag a particle across the electrodes in a straight line. The electrode shapes are designed to counter any lateral drift of the trapped particle during transport. This facilitates single particle transport by creating a narrow two-dimensional corridor for the moving dielectrophoretic force to operate on. The design and analysis processes are discussed in detail. Numerical simulations are performed to calculate the electromagnetic field distribution and the generated dielectrophoretic force near the electrodes. The...
Abstract only availableThe ability to maneuver and position cells on a micro scale on microchips is ...
Dielectrophoresis, the induced motion of polarisable particles in non-homogenous electric field, has...
The manipulation of individual micrometer-sized objects has been the focus of significant research e...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
This paper presents a novel dielectrophoresis-based microfluidic device incorporating round hurdles ...
Abstract only availableThe ability to maneuver and position cells on a micro scale on microchips is ...
Dielectrophoresis, the induced motion of polarisable particles in non-homogenous electric field, has...
The manipulation of individual micrometer-sized objects has been the focus of significant research e...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
A dielectrophoretic device employing a planar array of microelectrodes is designed for controlled tr...
This paper presents a novel dielectrophoresis-based microfluidic device incorporating round hurdles ...
Abstract only availableThe ability to maneuver and position cells on a micro scale on microchips is ...
Dielectrophoresis, the induced motion of polarisable particles in non-homogenous electric field, has...
The manipulation of individual micrometer-sized objects has been the focus of significant research e...