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Probabilistic methods for bioinformatics = with an introduction to Bayesian networks /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Probabilistic methods for bioinformatics/ Richard E. Neapolitan.
Reminder of title:
with an introduction to Bayesian networks /
Author:
Neapolitan, Richard E.
Published:
Amsterdam ;Morgan Kaufmann/Elsevier, : c2009.,
Description:
1 online resource (xii, 406 p.) :ill.
Notes:
Description based on print version record.
[NT 15003449]:
I: Informatics and Baysesian Networks; Introduction to Informatics; Basics of Probability and Statistics; Algorithms for Bayesian Networks; Decision Trees and Influence Diagrams. II Bioinformatics: Background; Applications to Molecular Phylogenetics; Gene Linkage Analysis; Analyzing Gene Expression Data; and more.
Subject:
Bayesian statistical decision theory. -
Online resource:
http://www.netlibrary.com/urlapi.asp?action=summary&v=1&bookid=248912
Online resource:
http://www.engineeringvillage.com/controller/servlet/OpenURL?genre=book&isbn=9780123704764An electronic book accessible through the World Wide Web; click for information
Online resource:
http://www.sciencedirect.com/science/book/9780123704764An electronic book accessible through the World Wide Web; click for information
Online resource:
http://public.eblib.com/EBLPublic/PublicView.do?ptiID=453096Click here to view book
ISBN:
0080919367 (electronic bk.)
Probabilistic methods for bioinformatics = with an introduction to Bayesian networks /
Neapolitan, Richard E.
Probabilistic methods for bioinformatics
with an introduction to Bayesian networks /[electronic resource] :Richard E. Neapolitan. - Amsterdam ;Morgan Kaufmann/Elsevier,c2009. - 1 online resource (xii, 406 p.) :ill.
Description based on print version record.
Includes bibliographical references (p. 387-[399]) and index.
I: Informatics and Baysesian Networks; Introduction to Informatics; Basics of Probability and Statistics; Algorithms for Bayesian Networks; Decision Trees and Influence Diagrams. II Bioinformatics: Background; Applications to Molecular Phylogenetics; Gene Linkage Analysis; Analyzing Gene Expression Data; and more.
The Bayesian network is one of the most important architectures for representing and reasoning with multivariate probability distributions. When used in conjunction with specialized informatics, possibilities of real-world applications are achieved. Probabilistic Methods for BioInformatics explains the application of probability and statistics, in particular Bayesian networks, to genetics. This book provides background material on probability, statistics, and genetics, and then moves on to discuss Bayesian networks and applications to bioinformatics. Rather than getting bogged down in proofs and algorithms, probabilistic methods used for biological information and Bayesian networks are explained in an accessible way using applications and case studies. The many useful applications of Bayesian networks that have been developed in the past 10 years are discussed. Forming a review of all the significant work in the field that will arguably become the most prevalent method in biological data analysis. Unique coverage of probabilistic reasoning methods applied to bioinformatics data--those methods that are likely to become the standard analysis tools for bioinformatics. Shares insights about when and why probabilistic methods can and cannot be used effectively; Complete review of Bayesian networks and probabilistic methods with a practical approach.
ISBN: 0080919367 (electronic bk.)Subjects--Topical Terms:
551404
Bayesian statistical decision theory.
Index Terms--Genre/Form:
542853
Electronic books.
LC Class. No.: QH324.2 / .N43 2009eb
Dewey Class. No.: 572.80285
Probabilistic methods for bioinformatics = with an introduction to Bayesian networks /
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I: Informatics and Baysesian Networks; Introduction to Informatics; Basics of Probability and Statistics; Algorithms for Bayesian Networks; Decision Trees and Influence Diagrams. II Bioinformatics: Background; Applications to Molecular Phylogenetics; Gene Linkage Analysis; Analyzing Gene Expression Data; and more.
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