An Introduction To Computational Systems Biology
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An Introduction to Computational Systems Biology
Author | : Karthik Raman |
Publsiher | : CRC Press |
Total Pages | : 359 |
Release | : 2021-05-30 |
Genre | : Computers |
ISBN | : 9780429944529 |
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Emphasises a hands-on approach to modelling Strong emphasis on coding and software tools for systems biology Covers the entire spectrum of modelling, from static networks, to dynamic models Thoughtful exercises to test and enable student understanding of concepts Current chapters on exciting new developments like whole-cell modelling and community modelling
An Introduction to Computational Systems Biology
Author | : Karthik Raman |
Publsiher | : Chapman & Hall/CRC |
Total Pages | : 0 |
Release | : 2023-05-29 |
Genre | : Biological systems |
ISBN | : 0367752506 |
Download An Introduction to Computational Systems Biology Book in PDF, Epub and Kindle
Emphasises a hands-on approach to modelling Strong emphasis on coding and software tools for systems biology Covers the entire spectrum of modelling, from static networks, to dynamic models Thoughtful exercises to test and enable student understanding of concepts Current chapters on exciting new developments like whole-cell modelling and community modelling
An Introduction to Computational Systems Biology
Author | : Karthik Raman |
Publsiher | : Unknown |
Total Pages | : 336 |
Release | : 2021 |
Genre | : Biological systems |
ISBN | : 1138597325 |
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This book delivers a comprehensive and insightful account of applying mathematical modelling approaches to very large biological systems and networks--a fundamental aspect of computational systems biology. The book covers key modelling paradigms in detail, while at the same time retaining a simplicity that will appeal to those from less quantitative fields. Key Features: A hands-on approach to modelling Covers a broad spectrum of modelling, from static networks to dynamic models and constraint-based models Thoughtful exercises to test and enable understanding of concepts State-of-the-art chapters on exciting new developments, like community modelling and biological circuit design Emphasis on coding and software tools for systems biology The book is highly multi-disciplinary and will appeal to biologists, engineers, computer scientists, mathematicians and others.
Introduction to Systems Biology
Author | : Sangdun Choi |
Publsiher | : Springer Science & Business Media |
Total Pages | : 549 |
Release | : 2008-05-17 |
Genre | : Science |
ISBN | : 9781597455312 |
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This book provides an introductory text for undergraduate and graduate students who are interested in comprehensive biological systems. The authors offer a broad overview of the field using key examples and typical approaches to experimental design. The volume begins with an introduction to systems biology and then details experimental omics tools. Other sections introduce the reader to challenging computational approaches. The final sections provide ideas for theoretical and modeling optimization in systemic biological researches. The book is an indispensable resource, providing a first glimpse into the state-of-the-art in systems biology.
An Introduction to Systems Biology
Author | : Uri Alon |
Publsiher | : CRC Press |
Total Pages | : 324 |
Release | : 2006-07-07 |
Genre | : Mathematics |
ISBN | : 9781584886426 |
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Thorough and accessible, this book presents the design principles of biological systems, and highlights the recurring circuit elements that make up biological networks. It provides a simple mathematical framework which can be used to understand and even design biological circuits. The textavoids specialist terms, focusing instead on several well-studied biological systems that concisely demonstrate key principles. An Introduction to Systems Biology: Design Principles of Biological Circuits builds a solid foundation for the intuitive understanding of general principles. It encourages the reader to ask why a system is designed in a particular way and then proceeds to answer with simplified models.
Introduction to Computational Biology
Author | : Michael S. Waterman |
Publsiher | : CRC Press |
Total Pages | : 248 |
Release | : 2018-05-02 |
Genre | : Mathematics |
ISBN | : 9781351437080 |
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Biology is in the midst of a era yielding many significant discoveries and promising many more. Unique to this era is the exponential growth in the size of information-packed databases. Inspired by a pressing need to analyze that data, Introduction to Computational Biology explores a new area of expertise that emerged from this fertile field- the combination of biological and information sciences. This introduction describes the mathematical structure of biological data, especially from sequences and chromosomes. After a brief survey of molecular biology, it studies restriction maps of DNA, rough landmark maps of the underlying sequences, and clones and clone maps. It examines problems associated with reading DNA sequences and comparing sequences to finding common patterns. The author then considers that statistics of pattern counts in sequences, RNA secondary structure, and the inference of evolutionary history of related sequences. Introduction to Computational Biology exposes the reader to the fascinating structure of biological data and explains how to treat related combinatorial and statistical problems. Written to describe mathematical formulation and development, this book helps set the stage for even more, truly interdisciplinary work in biology.
Mathematical Modeling in Systems Biology
Author | : Brian P. Ingalls |
Publsiher | : MIT Press |
Total Pages | : 423 |
Release | : 2022-06-07 |
Genre | : Science |
ISBN | : 9780262545822 |
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An introduction to the mathematical concepts and techniques needed for the construction and analysis of models in molecular systems biology. Systems techniques are integral to current research in molecular cell biology, and system-level investigations are often accompanied by mathematical models. These models serve as working hypotheses: they help us to understand and predict the behavior of complex systems. This book offers an introduction to mathematical concepts and techniques needed for the construction and interpretation of models in molecular systems biology. It is accessible to upper-level undergraduate or graduate students in life science or engineering who have some familiarity with calculus, and will be a useful reference for researchers at all levels. The first four chapters cover the basics of mathematical modeling in molecular systems biology. The last four chapters address specific biological domains, treating modeling of metabolic networks, of signal transduction pathways, of gene regulatory networks, and of electrophysiology and neuronal action potentials. Chapters 3–8 end with optional sections that address more specialized modeling topics. Exercises, solvable with pen-and-paper calculations, appear throughout the text to encourage interaction with the mathematical techniques. More involved end-of-chapter problem sets require computational software. Appendixes provide a review of basic concepts of molecular biology, additional mathematical background material, and tutorials for two computational software packages (XPPAUT and MATLAB) that can be used for model simulation and analysis.
Computational Systems Biology
Author | : Andres Kriete,Roland Eils |
Publsiher | : Academic Press |
Total Pages | : 548 |
Release | : 2013-11-26 |
Genre | : Computers |
ISBN | : 9780124059382 |
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This comprehensively revised second edition of Computational Systems Biology discusses the experimental and theoretical foundations of the function of biological systems at the molecular, cellular or organismal level over temporal and spatial scales, as systems biology advances to provide clinical solutions to complex medical problems. In particular the work focuses on the engineering of biological systems and network modeling. Logical information flow aids understanding of basic building blocks of life through disease phenotypes Evolved principles gives insight into underlying organizational principles of biological organizations, and systems processes, governing functions such as adaptation or response patterns Coverage of technical tools and systems helps researchers to understand and resolve specific systems biology problems using advanced computation Multi-scale modeling on disparate scales aids researchers understanding of dependencies and constraints of spatio-temporal relationships fundamental to biological organization and function.