Details

Immunoinformatics


Immunoinformatics

Bioinformatic Strategies for Better Understanding of Immune Function
Novartis Foundation Symposia, Band 254 1. Aufl.

von: Gregory R. Bock, Jamie A. Goode

161,99 €

Verlag: Wiley
Format: PDF
Veröffentl.: 05.03.2004
ISBN/EAN: 9780470090756
Sprache: englisch
Anzahl Seiten: 272

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Beschreibungen

The astounding diversity of the immune system and the complexity of its regulatory pathways makes immunology a combinatorial science. Computational analysis has therefore become an essential element of immunology research and this has led to the creation of the emerging field of immunoinformatics. This book is the first to feature thorough coverage of this new field. <p>Immunoinformatics facilitates the understanding of immune function by modelling the interactions among immunological components. Biological research provides ever deeper insights into the complexity of living organisms while computer science provides an effective means to store and analyse large volumes of complex data. Combining the two fields increases the efficiency of biological research and offers the potential for major advances in the study of biological systems.</p> <p>This book encompasses key developments in immunoinformatics, including immunological databases, sequence analysis, structure modelling, mathematical modelling of the immune system, simulation of laboratory experiments, statistical support for immunological experimentation and immunogenomics.</p> <p>The difficulties in effective application of bioinformatic tools in immunology arise at both ends of the spectrum: most immunologists have only a limited comprehension of sophisticated data analysis and applicability and limitations, while the average computer scientist lacks knowledge of the depth and complexity of biological data. The purpose of this book, therefore, is to present contributions from a multidisciplinary team of biologists and computer scientists to explore the issues related to better understanding of immune function and, in particular, to help apply new computer science methods to immunological research.</p> <p><b>Related <i>Novartis Foundation symposia</i>:</b></p> <p>247 <i>In Silico Simulation of Biological Processes</i><br />Chair: Denis Noble</p> <p>252 <i>Generation and effector functions of regulatory lymphocytes</i><br />Chair: Jean-François Bach</p>
Chair's Introduction (H. Rammensee). <p>Immunoinformatics - the new kid in town (V. Brusic & N. Petrovsky).</p> <p>The fututre of computational modelling and prediction systems in clinical immunology (N. Petrovsky, <i>et al</i>.).</p> <p>Immunoinformatics in personalized medicine (K. Gulukota).</p> <p>From immunome to vaccine: epitope mapping and vaccine design tools (A. De Groot & W. Martin).</p> <p>Insights from MHC-bound peptides (H. Margalit & Y. Altuvia).</p> <p>General discussion I.</p> <p>Computation vaccinology: quanitative approaches (D. Flower, <i>et al</i>).</p> <p>IMGT, the international ImMunoGeneTics information System<sup>®</sup>, <a href="http://imgt.cines.fr/">http://imgt.cines.fr</a>  (M. Lefranc).</p> <p>Generating data for databases—the peptide repertoire of HLA molecules (S. Stevanovic, <i>et al</i>.).</p> <p>HLA nomenclature and the IMGT/HLA Sequence Database (S. Marsh).</p> <p>From immunogenetics to immunomics: functional prospecting of genes and transcripts (C. Schönbach).</p> <p>Mathematical models of HIV and the immune system (D. Wodarz).</p> <p>General discussion II.</p> <p>Immunogenomics: towards a digital immune system (S. Beck).</p> <p>Viral bioinformatics: computational views of host and pathogen (P. Kellam, <i>et al.</i>).</p> <p>Final general discussion</p> <p>Closing remarks (H. Rammensee).</p> <p>Index of Contributors.</p> <p>Subject Index.</p>
The <strong>Novartis Foundation</strong> is an international scientific and educational charity which promotes the study and general knowledge of science and in particular encourages international co-operation in scientific research.
The astounding diversity of the immune system and the complexity of its regulatory pathways makes immunology a combinatorial science. Computational analysis has therefore become an essential element of immunology research and this has led to the creation of the emerging field of immunoinformatics. This book is the first to feature thorough coverage of this new field. <p>Immunoinformatics facilitates the understanding of immune function by modelling the interactions among immunological components. Biological research provides ever deeper insights into the complexity of living organisms while computer science provides an effective means to store and analyse large volumes of complex data. Combining the two fields increases the efficiency of biological research and offers the potential for major advances in the study of biological systems.</p> <p>This book encompasses key developments in immunoinformatics, including immunological databases, sequence analysis, structure modelling, mathematical modelling of the immune system, simulation of laboratory experiments, statistical support for immunological experimentation and immunogenomics.</p> <p>The difficulties in effective application of bioinformatic tools in immunology arise at both ends of the spectrum: most immunologists have only a limited comprehension of sophisticated data analysis and applicability and limitations, while the average computer scientist lacks knowledge of the depth and complexity of biological data. The purpose of this book, therefore, is to present contributions from a multidisciplinary team of biologists and computer scientists to explore the issues related to better understanding of immune function and, in particular, to help apply new computer science methods to immunological research.</p> <p><b><i>Related Novartis Foundation symposia:</i></b></p> <p>247 In Silico Simulation of Biological Processes</p> <p>Chair: Denis Noble</p> <p>252 Generation and effector functions of regulatory lymphocytes</p> <p>Chair: Jean-François Bach</p>

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