Description

Book Synopsis
Pooling designs have been widely used in various aspects of DNA sequencing. In biological applications, the well-studied mathematical problem called “group testing” shifts its focus to nonadaptive algorithms while the focus of traditional group testing is on sequential algorithms. Biological applications also bring forth new models not previously considered, such as the error-tolerant model, the complex model, and the inhibitor model. This book is the first attempt to collect all the significant research on pooling designs in one convenient place.The coverage includes many real biological applications such as clone library screening, contig sequencing, exon boundary finding and protein-protein interaction detecting and introduces the mathematics behind it.

Table of Contents
d-Disjunct Matrices and d-Separable Matrices; Geometric and Algebraic Designs; Random Designs; Subset-Containment Designs; Array and Transversal Designs; The Complex Model; The Inhibitor Model; Contig Sequencing; Gene Detection.

Pooling Designs And Nonadaptive Group Testing:

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A Hardback by Frank Kwang-ming Hwang, Ding-zhu Du

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    View other formats and editions of Pooling Designs And Nonadaptive Group Testing: by Frank Kwang-ming Hwang

    Publisher: World Scientific Publishing Co Pte Ltd
    Publication Date: 20/06/2006
    ISBN13: 9789812568229, 978-9812568229
    ISBN10: 9812568220

    Description

    Book Synopsis
    Pooling designs have been widely used in various aspects of DNA sequencing. In biological applications, the well-studied mathematical problem called “group testing” shifts its focus to nonadaptive algorithms while the focus of traditional group testing is on sequential algorithms. Biological applications also bring forth new models not previously considered, such as the error-tolerant model, the complex model, and the inhibitor model. This book is the first attempt to collect all the significant research on pooling designs in one convenient place.The coverage includes many real biological applications such as clone library screening, contig sequencing, exon boundary finding and protein-protein interaction detecting and introduces the mathematics behind it.

    Table of Contents
    d-Disjunct Matrices and d-Separable Matrices; Geometric and Algebraic Designs; Random Designs; Subset-Containment Designs; Array and Transversal Designs; The Complex Model; The Inhibitor Model; Contig Sequencing; Gene Detection.

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