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- W165070760 abstract "Cellular biological media, such as tissues and biofilms, are multiphase complex systems with dynamically evolving and highly organized hierarchical structures. The objective of this chapter is to present a comprehensive review of the theoretical modeling of momentum and mass transport in cellular biological media. In the spirit of a bottom-up approach, the chapter begins with a concise exposition of the state of the art in the mechanics of individual biomacromolecules, subcellular structures (e.g., cytoskeleton, membrane) and biological cells that build up the cellular biological medium. Thereafter, the main part is focused on the formulation of balance laws and constitutive equations, as well as on the experimental and theoretical calculation of constitutive parameters. The conceptual framework and the mathematical foundation is presented for various theoretical approaches, including single-scale–single-phase models, the theory of interacting continua, upscaling methods (e.g., spatial averaging, homogenization) and multiscale equation-free approaches." @default.
- W165070760 created "2016-06-24" @default.
- W165070760 creator A5008702315 @default.
- W165070760 creator A5072619144 @default.
- W165070760 date "2013-01-01" @default.
- W165070760 modified "2023-10-14" @default.
- W165070760 title "Modeling Momentum and Mass Transport in Cellular Biological Media: From the Molecular to the Tissue Scale" @default.
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