학술논문

Bioinformatics and Computational Biology Systems design applied to Nanobiotechnology
Document Type
Conference
Source
2016 IEEE 36th Central American and Panama Convention (CONCAPAN XXXVI) Central American and Panama Convention (CONCAPAN XXXVI), 2016 IEEE 36th. :1-4 Nov, 2016
Subject
Bioengineering
Communication, Networking and Broadcast Technologies
Components, Circuits, Devices and Systems
Computing and Processing
Engineering Profession
General Topics for Engineers
Power, Energy and Industry Applications
Robotics and Control Systems
Signal Processing and Analysis
Transportation
Bioinformatics
Mathematical model
DNA
Nanobiotechnology
Computational modeling
Nanobiotecnology
Molecular medicine
Systems
Computational Biology
Software
Language
Abstract
The advance of Molecular Nanobiotechnology grows at a fast pace and a quantity of data and biological information emerges vertiginously at a smaller scale each time. This multilateral effect, necessarily appeals to the rational design of new bioinformatics and bio computing systems, along with the structured and non-structured systematization (NoSQL) at the organization, management, processing and storage of atomic-molecular originated data, applied in new forms of scientific consumption, research and technology such as Big Data and Cloud communities through mobile device consulting (Apps) and Computational Biology System. Also, on the molecular nanobiotechnology applied within the medical molecular context, it is necessary to provide a clear work oriented link inside the functionality of the platform's genomic devices and integrated infrastructures as a service (SaaS, Paas, IaaS). Therefore, Bioinformatics can help and find techniques, methods and combined computing algorithms, with the object to resolve several problems and emerging actions in a hybrid integration of scientific fields. Therefore, the technological revolution and evolution on the Omics Science has had considerable advances at a parallel front through Ultra-Sequencing techniques (NGS) and high speed provisions of complete genome readings in short time and with low cost, deepening the metabolic inter-relations and unstable biological circuits in several primary attention diseases in an easier way, including the example development on this research support and through DNA nanotechnology (molecular estructure of insuline), with the object to provide immediate traslational bioinformatics services to diagnose and provide prognosis of solutions for several primary attention requirements on molecular medicine.