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bio molecular computing

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bio molecular computing Powered By Docstoc
					CONTENTS
 Introduction
 Review of biotechnologies for genomics and the
    biomolecular computing field
   A biomolecular database system
   Applying our biomolecular database system to execute
    genomic processing.
   Applications
   Conclusion
Introduction
 Motivation
 Overview of the Biomolecular Database System
 Processing Queries in the Biomolecular Database System
REVIEW OF BIOTECHNOLOGIES FOR GENOMICS AND
THE BIOMOLECULAR COMPUTING FIELD
 Conventional Biotechnologies for Genomics
 Relevant Biomolecular Computing Techniques
A BIOMOLECULAR DATABASE SYSTEM
 Biological Inputs
 Preprocessing the DNA
 Creation of the Tagged Biomolecular Database
 DNA Word Design for the Information Tags
 Additional Tagging Methods for the DNA Strands
 Associative Search in Biomolecular Databases
 Logical Query Processing in Biomolecular Databases
 Management of Errors
 Computer Simulations
 APPLYING OUR BIOMOLECULAR DATABASE
SYSTEM TO EXECUTE GENOMIC PROCESSING.
 Rapid identification of all individuals possessing a
  specific known genotype.
 Large-scale gene expression profiling using Biomolecular
  Databases.
 Streamlining identification of susceptibility genes.
 Further Applications.
APPLICATIONS

 Rapid identification of subpopulations possessing a
    specific known genotype,
   Large- scale gene expression profiling using
    Biomolecular Databases, and
   Sreamlining identification of susceptibility genes
   Medical applications
   Biological warfare
   Intelligence
CONCLUSION
 Comparison with biomolecular computing methods for
  SAT problems.
 The key advantages of biomolecular databases appear to
  be
 Scalability of biomolecular databases systems.
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posted:8/23/2012
language:English
pages:9