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Titlebook: Dynamical Networks in Physics and Biology; At the Frontier of P D. A. Beysens,G. Forgacs Conference proceedings 1998 Springer-Verlag France

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書目名稱Dynamical Networks in Physics and Biology
副標題At the Frontier of P
編輯D. A. Beysens,G. Forgacs
視頻videohttp://file.papertrans.cn/284/283837/283837.mp4
叢書名稱Centre de Physique des Houches
圖書封面Titlebook: Dynamical Networks in Physics and Biology; At the Frontier of P D. A. Beysens,G. Forgacs Conference proceedings 1998 Springer-Verlag France
描述The 1997 Les Houches workshop on "Dynamical Network in Physics and Biology" was the third in a series of meetings "At the Frontier between Physics and Biology". Our objective with these workshops is to create a truly interdisciplinary forum for researchers working on outstanding problems in biology, but using different approaches (physical, chemical or biological). Generally speaking, the biologists are trained in the particular and motivated by the specifics, while, in contrast, the physicists deal with generic and "universal" models. All agree about the necessity of developing "robust" models. The specific aim of the workshop was to bridge the gap between physics and biology in the particular field of interconnected dynamical networks. The proper functioning of a living organism of any complexity requires the coordinated activity of a great number of "units". Units, or, in physical terms, degrees of freedom that couple to one another, typically form networks. The physical or biological properties of interconnected networks may drastically differ from those of the individual units: the whole is not simply an assembly of its parts, as can be demonstrated by the following examples.
出版日期Conference proceedings 1998
關鍵詞DNA; biology; biophysics; cell; cell biology; cell membrane; cytoskeleton; immune system; insects; leukocyte;
版次1
doihttps://doi.org/10.1007/978-3-662-03524-5
isbn_softcover978-3-540-65349-3
isbn_ebook978-3-662-03524-5
copyrightSpringer-Verlag France 1998
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Of Proteins, Redox States and Living Thingsfor by individual genes (by all means the culprits), and contributing largely to the harmonious activity of cells and tissues. With the recent discovery that proteins can transmit such obscure diseases as Creutzfeld-Jakob neurodegeneration, capable of twisting the programming of invaded cells, the p
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Branched Polymers and Gelscs, paints, adhesives, rubbers, and in some future, as batteries. They have changed completely our everyday life by superseding natural materials such as wood, iron, etc. Our understanding of the structure of synthetic polymers has increased tremendously these last 20 years. They may be either linea
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Networks of Extracellular Matrix and Adhesion Proteinshitecture were elucidated. Together with the adhesion receptors located at the cell surface it serves highly sophisticated functions including specific cell-cell recognition, cell communication, growth regulation, differentiation guidance of cell migration and maintenance of tissues.
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