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A New Kind of Computational Biology ...
~
Pal Choudhury, Somshubhro.
A New Kind of Computational Biology = Cellular Automata Based Models for Genomics and Proteomics /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
A New Kind of Computational Biology/ by Parimal Pal Chaudhuri, Soumyabrata Ghosh, Adip Dutta, Somshubhro Pal Choudhury.
Reminder of title:
Cellular Automata Based Models for Genomics and Proteomics /
Author:
Pal Chaudhuri, Parimal.
other author:
Ghosh, Soumyabrata.
Description:
XX, 335 p. 147 illus., 99 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Computers. -
Online resource:
https://doi.org/10.1007/978-981-13-1639-5
ISBN:
9789811316395
A New Kind of Computational Biology = Cellular Automata Based Models for Genomics and Proteomics /
Pal Chaudhuri, Parimal.
A New Kind of Computational Biology
Cellular Automata Based Models for Genomics and Proteomics /[electronic resource] :by Parimal Pal Chaudhuri, Soumyabrata Ghosh, Adip Dutta, Somshubhro Pal Choudhury. - 1st ed. 2018. - XX, 335 p. 147 illus., 99 illus. in color.online resource.
Chapter 1. Introduction to Biological Strings and Cellular Automata Preliminaries -- Chapter 2. Cellular Automata Modelling for Biological Strings -- Chapter 3. Codon String of mRNA Modelled with Cellular Automata -- Chapter 4. Developing the Cellular Automata Model for a Peptide Chain of Amino Acids -- Chapter 5. In-silico Protein Structure Synthesis and its Relevance in Biological Functions -- Chapter 6. Analysis of DNA String with Cellular Automata Framework. .
This book reflects more than three decades of research on Cellular Automata (CA), and nearly a decade of work on the application of CA to model biological strings, which forms the foundation of 'A New Kind of Computational Biology' pioneered by the start-up, CARLBio. After a brief introduction on Cellular Automata (CA) theory and functional biology, it reports on the modeling of basic biological strings with CA, starting with the basic nucleotides leading to codon and anti-codon CA models. It derives a more involved CA model of DNA, RNA, the entire translation process for amino acid formation and the evolution of protein to its unique structure and function. In subsequent chapters the interaction of Proteins with other bio-molecules is also modeled. The only prior knowledge assumed necessary is an undergraduate knowledge of computer programming and biology. The book adopts a hands-on, “do-it-yourself” approach to enable readers to apply the method provided to derive the CA rules and comprehend how these are related to the physical ‘rules’ observed in biology. In a single framework, the authors have presented two branches of science – Computation and Biology. Instead of rigorous molecular dynamics modeling, which the authors describe as a Bottoms-Up model, or relying on the Top-Down new age Artificial Intelligence (AI) and Machine Language (ML) that depends on extensive availability of quality data, this book takes the best from both the Top-Down and Bottoms-up approaches and establishes how the behavior of complex molecules is represented in CA. The CA rules are derived from the basic knowledge of molecular interaction and construction observed in biological world but mapped to a few subset of known results to derive and predict results. This book is useful for students, researchers and industry practitioners who want to explore modeling and simulation of the physical world complex systems from a different perspective. It raises the inevitable the question – ‘Are life and the universe nothing but a collection of continuous systems processing information’.
ISBN: 9789811316395
Standard No.: 10.1007/978-981-13-1639-5doiSubjects--Topical Terms:
565115
Computers.
LC Class. No.: QA75.5-76.95
Dewey Class. No.: 004.0151
A New Kind of Computational Biology = Cellular Automata Based Models for Genomics and Proteomics /
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Chapter 1. Introduction to Biological Strings and Cellular Automata Preliminaries -- Chapter 2. Cellular Automata Modelling for Biological Strings -- Chapter 3. Codon String of mRNA Modelled with Cellular Automata -- Chapter 4. Developing the Cellular Automata Model for a Peptide Chain of Amino Acids -- Chapter 5. In-silico Protein Structure Synthesis and its Relevance in Biological Functions -- Chapter 6. Analysis of DNA String with Cellular Automata Framework. .
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This book reflects more than three decades of research on Cellular Automata (CA), and nearly a decade of work on the application of CA to model biological strings, which forms the foundation of 'A New Kind of Computational Biology' pioneered by the start-up, CARLBio. After a brief introduction on Cellular Automata (CA) theory and functional biology, it reports on the modeling of basic biological strings with CA, starting with the basic nucleotides leading to codon and anti-codon CA models. It derives a more involved CA model of DNA, RNA, the entire translation process for amino acid formation and the evolution of protein to its unique structure and function. In subsequent chapters the interaction of Proteins with other bio-molecules is also modeled. The only prior knowledge assumed necessary is an undergraduate knowledge of computer programming and biology. The book adopts a hands-on, “do-it-yourself” approach to enable readers to apply the method provided to derive the CA rules and comprehend how these are related to the physical ‘rules’ observed in biology. In a single framework, the authors have presented two branches of science – Computation and Biology. Instead of rigorous molecular dynamics modeling, which the authors describe as a Bottoms-Up model, or relying on the Top-Down new age Artificial Intelligence (AI) and Machine Language (ML) that depends on extensive availability of quality data, this book takes the best from both the Top-Down and Bottoms-up approaches and establishes how the behavior of complex molecules is represented in CA. The CA rules are derived from the basic knowledge of molecular interaction and construction observed in biological world but mapped to a few subset of known results to derive and predict results. This book is useful for students, researchers and industry practitioners who want to explore modeling and simulation of the physical world complex systems from a different perspective. It raises the inevitable the question – ‘Are life and the universe nothing but a collection of continuous systems processing information’.
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