Microfluidic devices have advanced cell studies by providing a dynamic fluidic environment on the scale of the cell for studying, manipulating, sorting and counting cells. However, manipulating the cell within the fluidic domain remains a challenge and requires complicated fabrication protocols for forming valves and electrodes, or demands specialty equipment like optical tweezers. Here, we demonstrate that conventional printed circuit boards (PCB) can be used for the non-contact manipulation of cells by employing dielectrophoresis (DEP) for bead and cell manipulation in laminar flow fields for bioactuation, and for cell and bead separation in multichannel microfluidic devices. First, we present the protocol for assembling the DEP electrode...
Dielectrophoresis is a robust approach for manipulating bioparticles in microfluidic devices. In rec...
This study introduces a new generation of dielectrophoretic-based microfluidic device for the precis...
Dielectrophoresis is a versatile tool for the sorting, immobilization, and characterization of cells...
Particle manipulation based on dielectrophoresis (DEP) can be a versatile and useful tool in lab-on-...
In recent years, microfluidic dielectrophoresis (DEP) devices, as one of the most promising tools fo...
The development of lab-on-a-chip (LOC) devices over the past decade has attracted growing interest. ...
Electromanipulation of microparticles utilizing microelectrodes has demonstrated considerable promis...
Dielectrophoresis (DEP) has been successfully applied and demonstrated to provide novel and non-inva...
Microfluidic devices for dielectrophoretic cell separation are typically designed and constructed us...
We have fabricated a microfluidic device based on a novel geometrical arrangement of lateral metal e...
Cell manipulation and separation are critical in biomedical diagnosis. Typical techniques such as fl...
An approach that combines not only the cell manipulation capabilities of dielectrophoresis (DEP), bu...
Cell manipulation and separation has numerous biological and medical applications, e.g., identificat...
Abstract only availableThe ability to maneuver and position cells on a micro scale on microchips is ...
In this study, we proposed a high-throughput separation strategy of the binary colloid mixture by di...
Dielectrophoresis is a robust approach for manipulating bioparticles in microfluidic devices. In rec...
This study introduces a new generation of dielectrophoretic-based microfluidic device for the precis...
Dielectrophoresis is a versatile tool for the sorting, immobilization, and characterization of cells...
Particle manipulation based on dielectrophoresis (DEP) can be a versatile and useful tool in lab-on-...
In recent years, microfluidic dielectrophoresis (DEP) devices, as one of the most promising tools fo...
The development of lab-on-a-chip (LOC) devices over the past decade has attracted growing interest. ...
Electromanipulation of microparticles utilizing microelectrodes has demonstrated considerable promis...
Dielectrophoresis (DEP) has been successfully applied and demonstrated to provide novel and non-inva...
Microfluidic devices for dielectrophoretic cell separation are typically designed and constructed us...
We have fabricated a microfluidic device based on a novel geometrical arrangement of lateral metal e...
Cell manipulation and separation are critical in biomedical diagnosis. Typical techniques such as fl...
An approach that combines not only the cell manipulation capabilities of dielectrophoresis (DEP), bu...
Cell manipulation and separation has numerous biological and medical applications, e.g., identificat...
Abstract only availableThe ability to maneuver and position cells on a micro scale on microchips is ...
In this study, we proposed a high-throughput separation strategy of the binary colloid mixture by di...
Dielectrophoresis is a robust approach for manipulating bioparticles in microfluidic devices. In rec...
This study introduces a new generation of dielectrophoretic-based microfluidic device for the precis...
Dielectrophoresis is a versatile tool for the sorting, immobilization, and characterization of cells...