Advanced Biosensor Modelling with Dna Application: Accurate Modeling of Dna Hybridization - Mohammad Taghi Ahmadi - Libros - LAP LAMBERT Academic Publishing - 9783659590238 - 23 de septiembre de 2014
En caso de que portada y título no coincidan, el título será el correcto

Advanced Biosensor Modelling with Dna Application: Accurate Modeling of Dna Hybridization

Precio
€ 46,99

Pedido desde almacén remoto

Entrega prevista 12 - 20 de ene. de 2026
Los regalos de Navidad se podrán canjear hasta el 31 de enero
Añadir a tu lista de deseos de iMusic

Nowadays,detection of a single-base polymorphism is thought to be the key for diagnosis of about 400 genetic diseases and,realization of personalized medicine in order to develop therapeutics. The other hand,the integration of new emerging nanomaterials(graphene)with sensors and devices have revealed an enormous potential for the future application of highly sensitive and selective DNA biosensors. All these approaches open up the routes for genetic researchers to understand the progression and early screening of diseases,or forensic analysis by tailoring the electrical properties of graphene,which make the controlled design of these sensors essential. In this research study, numerical model of the graphene-based liquid-gated sensors with DNA sensing application is developed to help in understanding the sensing mechanism of these sensors which is the matter of dispute these days. The results are compared with the experimental work and an acceptable agreement is observed. We found that numerical modeling needs optimization to be closer to the realistic results. So, particle swarm optimization technique is used to achieve a more accurate and reliable model for DNA hybridization detection.

Medios de comunicación Libros     Paperback Book   (Libro con tapa blanda y lomo encolado)
Publicado 23 de septiembre de 2014
ISBN13 9783659590238
Editores LAP LAMBERT Academic Publishing
Páginas 88
Dimensiones 150 × 220 × 10 mm   ·   149 g
Lengua Alemán  

Mas por Mohammad Taghi Ahmadi

Mostrar todo