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Titlebook: Approaches in Integrative Bioinformatics; Towards the Virtual Ming Chen,Ralf Hofestädt Book 2014 Springer-Verlag Berlin Heidelberg 2014 Bi

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发表于 2025-3-21 20:03:01 | 显示全部楼层 |阅读模式
期刊全称Approaches in Integrative Bioinformatics
期刊简称Towards the Virtual
影响因子2023Ming Chen,Ralf Hofestädt
视频videohttp://file.papertrans.cn/161/160298/160298.mp4
发行地址Presents a summary of essential topics, basic introductions and latest developments in integrative bioinformatics.Introduces a key point to understand the mechanism of life, i.e. the systems biology t
图书封面Titlebook: Approaches in Integrative Bioinformatics; Towards the Virtual  Ming Chen,Ralf Hofestädt Book 2014 Springer-Verlag Berlin Heidelberg 2014 Bi
影响因子.Approaches in Integrative Bioinformatics. provides a basic introduction to biological information systems, as well as guidance for the computational analysis of systems biology. This book also covers a range of issues and methods that reveal the multitude of omics data integration types and the relevance that integrative bioinformatics has today. Topics include biological data integration and manipulation, modeling and simulation of metabolic networks, transcriptomics and phenomics, and virtual cell approaches, as well as a number of applications of network biology. It helps to illustrate the value of integrative bioinformatics approaches to the life sciences. This book is intended for researchers and graduate students in the field of Bioinformatics. Professor Ming Chen is the Director of the Bioinformatics Laboratory at the College of Life Sciences, Zhejiang University, Hangzhou, China. Professor Ralf Hofestädt is the Chair of the Department of Bioinformatics and Medical Informatics, Bielefeld University, Germany.
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Information Retrieval in Life Sciences: A Programmatic Surveylife science data repositories and associated information. This chapter provides an overview of IR concepts and their current applications in life sciences. Enriched by a high number of selected references to pursuing literature, the following sections will successively build a practical guide for b
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Molecular Information Fusion in Ondexn of links between closely related entries in different life sciences databases when there is no direct information that provides a reliable cross reference. Here we describe and evaluate three data integration methods to address this challenge in the context of a graph-based data integration framew
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Erfolg als theoriegeleitete Kategorie,ghput technologies. One characteristic of this data is exponential growing. Therefore, storing and analysis of this molecular and cellular data essentially uses methods and concepts of Bioinformatics. Currently, there are more than 2,000 database and information systems available via the Internet, w
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Das situative Forschungskonzept,n of links between closely related entries in different life sciences databases when there is no direct information that provides a reliable cross reference. Here we describe and evaluate three data integration methods to address this challenge in the context of a graph-based data integration framew
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https://doi.org/10.1007/978-3-322-82282-6hlighted and illustrated by a number of examples. Then, the state of the art in network visualization for the life sciences is presented together with a discussion of standards for the graphical representation of cellular networks and biological processes.
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Biologische Blockaden erkennen und besiegen,lization entries found in databases. Finally, different visualization approaches will be shown, and 2D and 3D network visualization will be discussed, as well as quantitative illustrations using charts.
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https://doi.org/10.1007/978-3-322-82445-5” data at broad levels by using the systems-biology approach is paramount to further bridging the gaps between genomics and phenomics and eventually making accurate predictions of phenotypes based on genetic contribution.
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