Introduction To Computational Molecular Biology
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Introduction to Computational Molecular Biology
Author | : João Carlos Setubal,João Meidanis |
Publsiher | : Pws Publishing Company |
Total Pages | : 296 |
Release | : 1997 |
Genre | : Computers |
ISBN | : 0534952623 |
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Basic concepts of molecular biology. Strings, graphs, and algorithms. Sequence comparasion and database search. Fragment assembly of DNA. Physical mapping of DNA. Phylogenetic trees. Genome rearrangements. Molecular structure prediction. epilogue: computing with DNA. Answers to selected exercises. References. index.
Introduction to Computational Biology
Author | : Bernhard Haubold,Thomas Wiehe |
Publsiher | : Springer Science & Business Media |
Total Pages | : 329 |
Release | : 2006-08-09 |
Genre | : Science |
ISBN | : 9783764373870 |
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Written with the advanced undergraduate in mind, this book introduces into the field of Bioinformatics. The authors explain the computational and conceptional background to the analysis of large-scale sequence data. Many of the corresponding analysis methods are rooted in evolutionary thinking, which serves as a common thread throughout the book. The focus is on methods of comparative genomics and subjects covered include: alignments, gene finding, phylogeny, and the analysis of single nucleotide polymorphisms (SNPs). The volume contains exercises, questions & answers to selected problems.
Introduction to Computational Molecular Biology
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Author | : João Carlos Setubal,João Meidanis |
Publsiher | : Unknown |
Total Pages | : 296 |
Release | : 1997 |
Genre | : Molecular biology |
ISBN | : 8131504034 |
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Computational Molecular Biology
Author | : Peter Clote,Rolf Backofen |
Publsiher | : John Wiley & Sons |
Total Pages | : 312 |
Release | : 2000-10-03 |
Genre | : Computers |
ISBN | : UOM:39015050324204 |
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Recently molecular biology has undergone unprecedented development generating vast quantities of data needing sophisticated computational methods for analysis, processing and archiving. This requirement has given birth to the truly interdisciplinary field of computational biology, or bioinformatics, a subject reliant on both theoretical and practical contributions from statistics, mathematics, computer science and biology. Provides the background mathematics required to understand why certain algorithms work Guides the reader through probability theory, entropy and combinatorial optimization In-depth coverage of molecular biology and protein structure prediction Includes several less familiar algorithms such as DNA segmentation, quartet puzzling and DNA strand separation prediction Includes class tested exercises useful for self-study Source code of programs available on a Web site Primarily aimed at advanced undergraduate and graduate students from bioniformatics, computer science, statistics, mathematics and the biological sciences, this text will also interest researchers from these fields.
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.
Handbook of Computational Molecular Biology
Author | : Srinivas Aluru |
Publsiher | : CRC Press |
Total Pages | : 1108 |
Release | : 2005-12-21 |
Genre | : Computers |
ISBN | : 9781420036275 |
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The enormous complexity of biological systems at the molecular level must be answered with powerful computational methods. Computational biology is a young field, but has seen rapid growth and advancement over the past few decades. Surveying the progress made in this multidisciplinary field, the Handbook of Computational Molecular Biology of
Kernel Methods in Computational Biology
Author | : Bernhard Schölkopf,Koji Tsuda,Jean-Philippe Vert |
Publsiher | : MIT Press |
Total Pages | : 428 |
Release | : 2004 |
Genre | : Computers |
ISBN | : 0262195097 |
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A detailed overview of current research in kernel methods and their application to computational biology.
Pattern Recognition in Computational Molecular Biology
Author | : Mourad Elloumi,Costas Iliopoulos,Jason T. L. Wang,Albert Y. Zomaya |
Publsiher | : John Wiley & Sons |
Total Pages | : 656 |
Release | : 2015-11-30 |
Genre | : Technology & Engineering |
ISBN | : 9781119078852 |
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A comprehensive overview of high-performance pattern recognition techniques and approaches to Computational Molecular Biology This book surveys the developments of techniques and approaches on pattern recognition related to Computational Molecular Biology. Providing a broad coverage of the field, the authors cover fundamental and technical information on these techniques and approaches, as well as discussing their related problems. The text consists of twenty nine chapters, organized into seven parts: Pattern Recognition in Sequences, Pattern Recognition in Secondary Structures, Pattern Recognition in Tertiary Structures, Pattern Recognition in Quaternary Structures, Pattern Recognition in Microarrays, Pattern Recognition in Phylogenetic Trees, and Pattern Recognition in Biological Networks. Surveys the development of techniques and approaches on pattern recognition in biomolecular data Discusses pattern recognition in primary, secondary, tertiary and quaternary structures, as well as microarrays, phylogenetic trees and biological networks Includes case studies and examples to further illustrate the concepts discussed in the book Pattern Recognition in Computational Molecular Biology: Techniques and Approaches is a reference for practitioners and professional researches in Computer Science, Life Science, and Mathematics. This book also serves as a supplementary reading for graduate students and young researches interested in Computational Molecular Biology.