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Titlebook: In Silico Immunology; Darren Flower,Jon Timmis Book 2007 Springer-Verlag US 2007 In silico.Master Patient Index.algorithms.artificial immu

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楼主: industrious
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Computational Models of B cell and T cell Receptorsnd antigens are represented by binary strings, or more generally, digit strings with a given number of letters. Various match rules are presented to describe the binding interaction between receptors and antigens. A second class of models is geometric models where receptors and antigens are represen
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Modelling Immunological Memory this chapter, we compare various models of immunological memory. We first validate an experimental immunological simulator, developed by the authors, by simulating several theories of immunological memory with known results. We then use the same system to evaluate the predicted effects of a theory
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Alternative Inspiration For Artificial Immune Systems: Exploiting Cohen’s Cognitive Immune Modelr artificial immune systems (AIS). It is clear that there is disagreement amongst immunologists concerning many mechanisms of the immune system, often providing an unclear picture for the engineer trying to exploit immune ideas. In spite of this, the abundence of immune theories can be beneficial to
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Empirical, AI, and QSAR Approaches to Peptide-MHC Binding Predictionion sweeping through bioscience. Historically, predicting the specificity of peptide Major Histocompatibility Complex (MHC) interactions has been the major contribution made by bioinformatics disciplines to research in immunology and the vaccinology. This will be the focus of the current chapter. In
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MHC diversity in Individuals and Populations important role in the induction of immune responses, this polymorphism is probably due to selection for increased protection of hosts against pathogens. In contrast to the large population diversity of MHC molecules, each individual expresses only a limited number of different MHC molecules. This i
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Biomolecular Structure Prediction Using Immune Inspired Algorithmsrgan development, antibodies and more. The Protein Structure Prediction problem (PSP) is concerned with the prediction of the 3D structure of a protein given its sequence of amino acids. If we know the protein structure we can infer the protein function. One computational approach for predicting the
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The Multi-scale Immune Response to Pathogens: , as an Examplely manifest at the population scale. Through the example of the human pathogen . we explore immune response events over multiple scales and how bridging these scales may ultimately lead to the greatest picture of how this complex system works.
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