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   系統號碼947778
   書刊名Mathematical principles in bioinformatics [electronic resource] /
   主要著者by Stephen S.-T. Yau ... [et al.].
   其他著者Yau, Stephen Shing-Toung.
   出版項Cham : Imprint: Springer, 2023.
   索書號QH324.2
   ISBN9783031482953
   標題Bioinformatics-Mathematics.
Bioinformatics.
Applications of Mathematics.
   電子資源https://doi.org/10.1007/978-3-031-48295-3
   叢書名Interdisciplinary applied mathematics,v. 582196-9973 ;;Interdisciplinary applied mathematics ;v. 58.2196-9973 ;
   
    
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內容簡介This textbook introduces bioinformatics to students in mathematics with no biology background assumed and it provides solid mathematical tools for biology students along with an understanding of how to implement them in bioinformatics problems. In addition to the basics, the text offers new approaches to understanding biological sequences. The concise presentation distinguishes itself from others on the subject, discussing and providing principles that relate to current open problems in bioinformatics as well as considering a variety of models. The convex hull principle is highlighted, opening a new interdisciplinary research area at the intersection of biology, mathematics, and computer science. Prerequisites include first courses in linear algebra, probability and statistics, and mathematical analysis. Researchers in mathematics, biology, and math-biology, will also find aspects of this text useful. This textbook is written based on the authors' research works that have been published in various journals along with the lecture notes used when teaching bioinformatics courses at the University of Illinois at Chicago and at Tsinghua University. The content may be divided into two parts. The first part includes three chapters, introducing some basic concepts. Chapter 1 provides biological background in molecular biology for mathematicians. Chapter 2 describes biological databases that are commonly used. Chapter 3 is concerned with alignment methods including global/local alignment, heuristic alignment, and multiple alignment. The second part consisting of five chapters, describes several bioinformatics principles using a rigorous mathematical formulation. Chapter 4 introduces the time-frequency spectral principle and its applications in bioinformatics. In Chapters 5 and 6, two strategies are used, the graphical representation and the natural vector method, to represent biological sequences, and conduct sequence comparison and phylogenetic analysis without alignment. C

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