A variety of substrates have been used for fabrication of microchips for DNA extraction, PCR amplification, and DNA fragment separation, including the more conventional glass and silicon as well as alternative polymer-based materials. Polyester represents one such polymer, and the laser-printing of toner onto polyester films has been shown to be effective for generating polyester-toner (PeT) microfluidic devices with channel depths on the order of tens of micrometers. Here, we describe a novel and simple process that allows for the production of multilayer, high aspect-ratio PeT microdevices with substantially larger channel depths. This innovative process utilizes a CO(2) laser to create the microchannel in polyester sheets containing a un...
This presentation reports an integrated DNA extraction and amplification device based on electro-osm...
A microchip solid-phase extraction method for purification of DNA from biological samples, such as b...
Performing medical diagnosis in microfluidic devices could scale down laboratory functions and reduc...
A variety of substrates have been used for fabrication of microchips for DNA extraction, PCR amplifi...
Microchip electrophoresis has become a powerful tool for DNA separation, offering all of the advanta...
There are many potential applications for the use of microfluidic biochips in molecular diagnostics....
In this study, we demonstrate a simple and facile method to enable DNA purification and amplificatio...
In the last decade, the microfluidic community has witnessed an evolution in fabrication methodologi...
Integrated DNA extraction and amplification have been carried out in a microfluidic device using ele...
Recently, polymeric materials have been explored as more versatile alternatives for the fabrication ...
The ability to rapidly, sensitively, and accurately detect the presence of a pathogen is a vital cap...
We present a novel process flow enabling prototyping of microfluidic cartridges made out of polymer ...
We describe the development of an electrophoresis microchip fabricated by a direct-printing process,...
In this manuscript, we discuss the use of photoactivated polycarbonate (PC) for purification of dye-...
The employment of single-use, disposable medical equipment has increased the amount of medical waste...
This presentation reports an integrated DNA extraction and amplification device based on electro-osm...
A microchip solid-phase extraction method for purification of DNA from biological samples, such as b...
Performing medical diagnosis in microfluidic devices could scale down laboratory functions and reduc...
A variety of substrates have been used for fabrication of microchips for DNA extraction, PCR amplifi...
Microchip electrophoresis has become a powerful tool for DNA separation, offering all of the advanta...
There are many potential applications for the use of microfluidic biochips in molecular diagnostics....
In this study, we demonstrate a simple and facile method to enable DNA purification and amplificatio...
In the last decade, the microfluidic community has witnessed an evolution in fabrication methodologi...
Integrated DNA extraction and amplification have been carried out in a microfluidic device using ele...
Recently, polymeric materials have been explored as more versatile alternatives for the fabrication ...
The ability to rapidly, sensitively, and accurately detect the presence of a pathogen is a vital cap...
We present a novel process flow enabling prototyping of microfluidic cartridges made out of polymer ...
We describe the development of an electrophoresis microchip fabricated by a direct-printing process,...
In this manuscript, we discuss the use of photoactivated polycarbonate (PC) for purification of dye-...
The employment of single-use, disposable medical equipment has increased the amount of medical waste...
This presentation reports an integrated DNA extraction and amplification device based on electro-osm...
A microchip solid-phase extraction method for purification of DNA from biological samples, such as b...
Performing medical diagnosis in microfluidic devices could scale down laboratory functions and reduc...