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Titlebook: Computational Systems Toxicology; Julia Hoeng,Manuel C. Peitsch Book 2015 Springer Science+Business Media New York 2015 Biological network

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Computational Data Integration in Toxicogenomics,fter exposure of cells to chemicals in vitro. The case studies cover various areas of systems toxicology and pharmacogenomics and illustrate the rapid evolution of toxicogenomics, including computational methods for the analysis, integration, and interpretation of omics data.
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Book 2015ds to toxicological assessment..Written for the .Methods in Pharmacology and Toxicology. series, .Computational Systems Toxicology. includes the kind of key practical advice that will aid readers in furthering our knowledge of toxic substances and reactions to them..
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https://doi.org/10.1007/978-3-031-43841-7and promote their use in research applications such as drug discovery, personalized medicine, and toxicological risk assessment. In addition, we have provided practical recommendations for designing intuitive tools for network curation, identifying and recruiting the “target crowd,” and using various approaches to engage and motivate participants.
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https://doi.org/10.1007/978-3-031-43841-7n, tissue repair, and angiogenesis, all in the context of the pulmonary and vascular systems. With specific biological boundaries, multiple types of gene-centric entities, literature support at edge level, and interactive visualization, the CBN Database offers a coherent illustration of important bi
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https://doi.org/10.1007/978-3-031-43841-7able in an electronic readable format for further processing. Thus, in addition to an overview of chemical representation and resources, short overviews of the current status of information extraction techniques are given and a suitable network representation for compound-target interactions is desc
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