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Titlebook: Bioinformatics: Sequences, Structures, Phylogeny; Asheesh Shanker Book 2018 Springer Nature Singapore Pte Ltd. 2018 Bioinformatics.Sequenc

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期刊全称Bioinformatics: Sequences, Structures, Phylogeny
影响因子2023Asheesh Shanker
视频video
发行地址Cover the topics from sequencing to structural analysis.Beneficial to a beginner as well as for advanced learner.Covers intellectual property protection in bioinformatics
图书封面Titlebook: Bioinformatics: Sequences, Structures, Phylogeny;  Asheesh Shanker Book 2018 Springer Nature Singapore Pte Ltd. 2018 Bioinformatics.Sequenc
影响因子.This book provides a comprehensive overview of the concepts and approaches used for sequence, structure, and phylogenetic analysis. Starting with an introduction to the subject and intellectual property protection for bioinformatics, it guides readers through the latest sequencing technologies, sequence analysis, genomic variations, metagenomics, epigenomics, molecular evolution and phylogenetics, structural bioinformatics, protein folding, structure analysis and validation, drug discovery, reverse vaccinology, machine learning, application of R programming in biological data analysis, and the use of Linux in handling large data files..
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Understanding Genomic Variations in the Context of Health and Disease: Annotation, Interpretation, ask, complicated by the contextual nature of these variations. While a large number of well-maintained repositories of variation data exist, a systematic method to obtain information from different sources and collate them coherently toward prioritization of functional variants is the dire need of t
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Computational Approaches to Studying Molecular Phylogenetics,s of divergence, the next step is to build a graphical representation called a phylogenetic tree with each sequence as a branch of it. A tree represents a prediction of evolutionary relationships among organisms. In addition to uncovering evolutionary relationships, phylogenetic analysis finds appli
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Structural Bioinformatics: Life Through The 3D Glasses,ls and their various interactions to address biological questions. The biological data exists in various forms, which increases the complexity − the linear data represented in one dimension (1D) includes sequence information, and the nonlinear data represented in three dimensions (3D) includes struc
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