We have successfully demonstrated selective trapping, concentration, and release of various biological organisms and inert beads by insulator-based dielectrophoresis within a polymeric microfluidic device. The microfluidic channels and internal features, in this case arrays of insulating posts, were initially created through standard wet-etch techniques in glass. This glass chip was then transformed into a nickel stamp through the process of electroplating. The resultant nickel stamp was then used as the replication tool to produce the polymeric devices through injection molding. The polymeric devices were made of Zeonor® 1060R, a polyolefin copolymer resin selected for its superior chemical resistance and optical properties. These devices ...
The Dielectrophoresis force delivers an effective and appropriate way to control particles, especial...
textEvery environment of the biosphere supports a particular mix of microorganisms called a microbio...
The development of lab-on-a-chip (LOC) devices over the past decade has attracted growing interest. ...
We have successfully demonstrated selective trapping, concentration, and release of various biologic...
This report focuses on and presents the capabilities of insulator-based dielectrophoresis (iDEP) mic...
Efficient and reliable particle separators and concentrators are needed to support a wide range of a...
Efficient and robust particle separation and enrichment techniques are critical for a diverse range ...
Over the course of human history, people have been always troubled by unpredictable outbreaks of pat...
We report an insulator-based (or, electrodeless) dielectrophoresis utilizing microfabricated plastic...
Cell manipulation and separation has numerous biological and medical applications, e.g., identificat...
A low-cost fabrication method of microfluidic devices with micrometer-sized constrictions used for e...
We are developing a variety of microsystems for the separation and detection of biological samples. ...
This thesis presents the development of a parallel plate lab-on-a-chip (LOC) device for manipulating...
Technological needs of the recent times require the improvement in micro-scale devices that manipula...
Inkjet‐printing is used to fabricate dielectrophoretic electrodes able to trap polystyrene (PS) micr...
The Dielectrophoresis force delivers an effective and appropriate way to control particles, especial...
textEvery environment of the biosphere supports a particular mix of microorganisms called a microbio...
The development of lab-on-a-chip (LOC) devices over the past decade has attracted growing interest. ...
We have successfully demonstrated selective trapping, concentration, and release of various biologic...
This report focuses on and presents the capabilities of insulator-based dielectrophoresis (iDEP) mic...
Efficient and reliable particle separators and concentrators are needed to support a wide range of a...
Efficient and robust particle separation and enrichment techniques are critical for a diverse range ...
Over the course of human history, people have been always troubled by unpredictable outbreaks of pat...
We report an insulator-based (or, electrodeless) dielectrophoresis utilizing microfabricated plastic...
Cell manipulation and separation has numerous biological and medical applications, e.g., identificat...
A low-cost fabrication method of microfluidic devices with micrometer-sized constrictions used for e...
We are developing a variety of microsystems for the separation and detection of biological samples. ...
This thesis presents the development of a parallel plate lab-on-a-chip (LOC) device for manipulating...
Technological needs of the recent times require the improvement in micro-scale devices that manipula...
Inkjet‐printing is used to fabricate dielectrophoretic electrodes able to trap polystyrene (PS) micr...
The Dielectrophoresis force delivers an effective and appropriate way to control particles, especial...
textEvery environment of the biosphere supports a particular mix of microorganisms called a microbio...
The development of lab-on-a-chip (LOC) devices over the past decade has attracted growing interest. ...