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Titlebook: Adhesion of Cells, Viruses and Nanoparticles; Kevin Kendall,Michaela Kendall,Florian Rehfeldt Book 2011 Springer Science+Business Media B.

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期刊全称Adhesion of Cells, Viruses and Nanoparticles
影响因子2023Kevin Kendall,Michaela Kendall,Florian Rehfeldt
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发行地址The first book to address the physical chemistry of cell adhesion.Explains cell adhesion from basic principles to complex research results.Provides a comprehensive picture of cell adhesion across a ra
图书封面Titlebook: Adhesion of Cells, Viruses and Nanoparticles;  Kevin Kendall,Michaela Kendall,Florian Rehfeldt Book 2011 Springer Science+Business Media B.
影响因子."Adhesion of Cells, Viruses and Nanoparticles" describes the adhesion of cells, viruses and nanoparticles starting from the basic principles of adhesion science, familiar to postgraduates, and leading on to recent research results...The underlying theory is that of van der Waals forces acting between cells and substrates, embodied in the molecules lying at the surfaces, together with the geometry and elasticity of the materials involved...The first part describes the fundamental background to adhesion principles, including the phenomenology, the important equations and the modeling ideas. Then the mechanisms of adhesion are explored in the second part, including the elastic deformations of spheres and the importance of the energy of adhesion as measured in various tests. It is demonstrated that adhesion of cells is statistical and depends on Brownian movement and on the complex multiple contacts that can form as cells move around. Then, detailed chapters on cell adhesion, contact of viruses and aggregation of nanoparticles follow in Part 3. Finally, the last chapter looks to the future understanding of cell adhesion and points out some interesting directions of research, developme
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Front Matterrivially) in regional and theoretical economics; algebraic geometry interacts with physics; the Minkowsky lemma, coding theory and the structure of water meet one another in packing and covering theory; quantum fields, crystal defects and mathematical programming profit from homotopy theory; Lie algebras are 978-94-010-7807-8978-94-009-2901-2
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Modelling Nanoparticle, Virus and Cell Adhesionchieved by doping or functionnalizing a given host structure and subsequent poling and stabilization /5,6/. However, in the latter approach, one may be willing to pay the price in terms of active units dilution, so as to take advantage of the possible qualities of the host system such as mechanical
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