We have fabricated Si-based micromachined DNA polymerase chain reaction (PCR) chips with different groove depths. The platinum thin-film micro heater and the temperature sensor have been integrated on the chip. The volume of the PCR chamber in the chip is about 3.6 mul and the chip size is 17 x 40 mm(2). The effects of groove geometry, including width, depth and position, on the thermal characteristics of the PCR chip have been investigated by numerical analysis and experimental measurement. From the results, the power consumption required for the PCR chip is reduced with the increase of groove depth. Compared with results for the case of no groove, the power consumption of the chip with a groove of 280 mum is reduced by 24.0%, 23.3% and 25...
A Si-based miniaturized reactor has been developed for efficient DNA amplification by polymerase cha...
[THIS THESIS CONSISTS OF TWO (2) PARTS - THIS IS PART 1]. The applications and development of polyme...
[THIS THESIS CONSISTS OF TWO (2) PARTS - THIS IS PART 1]. The applications and development of polyme...
A temperature-controlled system of PCR chips for DNA amplification which possesses the characteristi...
Abstract˖In the bioengineering and biochemical research areas, the Polymerase Chain Reaction (PCR) i...
In the bioengineering and biochemical research areas, the Polymerase Chain Reaction (PCR) is the pre...
In the bioengineering and biochemical research areas, the Polymerase Chain Reaction (PCR) is the pre...
This work deals with the development of a disposable miniaturized Polymerase Chain Reaction (PCR) mo...
[[abstract]]Polymerase chain reaction (PCR) is a molecular biological method for in vitro amplificat...
There are extensive research and scientific journals in the aspect of integration of Micro-electro-m...
The present work aims to develop, analyse and fabricate a PCR microchip to improve the DNA amplifica...
We have designed, fabricated and tested a real-time PCR chip capable of conducting one thermal cycle...
In this work, we designed and developed a rapid Thermal Cycler with thermoelectric cooling for the f...
We implement microfluidic technology to miniaturize a thermal cycling system for amplifying DNA frag...
A polymerase chain reaction (PCR) chamber microfabricated into a silicon substrate is presented. The...
A Si-based miniaturized reactor has been developed for efficient DNA amplification by polymerase cha...
[THIS THESIS CONSISTS OF TWO (2) PARTS - THIS IS PART 1]. The applications and development of polyme...
[THIS THESIS CONSISTS OF TWO (2) PARTS - THIS IS PART 1]. The applications and development of polyme...
A temperature-controlled system of PCR chips for DNA amplification which possesses the characteristi...
Abstract˖In the bioengineering and biochemical research areas, the Polymerase Chain Reaction (PCR) i...
In the bioengineering and biochemical research areas, the Polymerase Chain Reaction (PCR) is the pre...
In the bioengineering and biochemical research areas, the Polymerase Chain Reaction (PCR) is the pre...
This work deals with the development of a disposable miniaturized Polymerase Chain Reaction (PCR) mo...
[[abstract]]Polymerase chain reaction (PCR) is a molecular biological method for in vitro amplificat...
There are extensive research and scientific journals in the aspect of integration of Micro-electro-m...
The present work aims to develop, analyse and fabricate a PCR microchip to improve the DNA amplifica...
We have designed, fabricated and tested a real-time PCR chip capable of conducting one thermal cycle...
In this work, we designed and developed a rapid Thermal Cycler with thermoelectric cooling for the f...
We implement microfluidic technology to miniaturize a thermal cycling system for amplifying DNA frag...
A polymerase chain reaction (PCR) chamber microfabricated into a silicon substrate is presented. The...
A Si-based miniaturized reactor has been developed for efficient DNA amplification by polymerase cha...
[THIS THESIS CONSISTS OF TWO (2) PARTS - THIS IS PART 1]. The applications and development of polyme...
[THIS THESIS CONSISTS OF TWO (2) PARTS - THIS IS PART 1]. The applications and development of polyme...