DNA amplification using Polymerase Chain Reaction (PCR) in a small volume is used in Lab-on-a-chip systems involving DNA manipulation. For few microliters of volume of liquid, it becomes difficult to measure and monitor the thermal profile accurately and reproducibly, which is an essential requirement for successful amplification. Conventional temperature sensors are either not biocompatible or too large and hence positioned away from the liquid leading to calibration errors. In this work we present a fluorescence based detection technique that is completely biocompatible and measures directly the liquid temperature. PCR is demonstrated in a 3 ILL silicon-glass microfabricated device using non-contact induction heating whose temperature ...
Microfluidics based DNA analyses devices are receiving considerable attention for medical diagnostic...
Microfluidics based DNA analyses devices are receiving considerable attention for medical diagnostic...
Microfluidic devices offer excellent heat transfer, enabling the biochemical reactions to be more ef...
DNA amplification using Polymerase Chain Reaction (PCR) in a small volume is used in Lab-on-a-chip s...
A micro-fabricated Polymerase chain reaction (PCR) device with integrated temperature cycling and fl...
In this Study, a new polymerase chain reaction (PCR) system incorporated with a fluorescence detecti...
In this paper, we present both a theoretical evaluation and the fabrication of a novel polymerase ch...
A microfluidic-based digital polymerase chain reaction (dPCR) chip requires precise temperature cont...
In this paper, we report the complete microfabrication of a polymerase chain reaction (PCR) device w...
Abstract Background In general, the image analysis of nucleic acid for detecting DNA is dependent on...
Introduction: The polymerase chain reaction (PCR) allows for highly specific and sensitive detection...
The development of microfluidics-based quantitative real-time polymerase chain reaction for molecula...
The ability to rapidly, sensitively, and accurately detect the presence of a pathogen is a vital cap...
Diagnostic tools for biomolecular detection need to fulfill specific requirements in terms of sensit...
Diagnostic tools for biomolecular detection need to fulfill specific requirements in terms of sensit...
Microfluidics based DNA analyses devices are receiving considerable attention for medical diagnostic...
Microfluidics based DNA analyses devices are receiving considerable attention for medical diagnostic...
Microfluidic devices offer excellent heat transfer, enabling the biochemical reactions to be more ef...
DNA amplification using Polymerase Chain Reaction (PCR) in a small volume is used in Lab-on-a-chip s...
A micro-fabricated Polymerase chain reaction (PCR) device with integrated temperature cycling and fl...
In this Study, a new polymerase chain reaction (PCR) system incorporated with a fluorescence detecti...
In this paper, we present both a theoretical evaluation and the fabrication of a novel polymerase ch...
A microfluidic-based digital polymerase chain reaction (dPCR) chip requires precise temperature cont...
In this paper, we report the complete microfabrication of a polymerase chain reaction (PCR) device w...
Abstract Background In general, the image analysis of nucleic acid for detecting DNA is dependent on...
Introduction: The polymerase chain reaction (PCR) allows for highly specific and sensitive detection...
The development of microfluidics-based quantitative real-time polymerase chain reaction for molecula...
The ability to rapidly, sensitively, and accurately detect the presence of a pathogen is a vital cap...
Diagnostic tools for biomolecular detection need to fulfill specific requirements in terms of sensit...
Diagnostic tools for biomolecular detection need to fulfill specific requirements in terms of sensit...
Microfluidics based DNA analyses devices are receiving considerable attention for medical diagnostic...
Microfluidics based DNA analyses devices are receiving considerable attention for medical diagnostic...
Microfluidic devices offer excellent heat transfer, enabling the biochemical reactions to be more ef...