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      A Cahn--Hilliard--Darcy model for tumour growth with chemotaxis and active transport

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          Abstract

          Using basic thermodynamic principles we derive a Cahn--Hilliard--Darcy model for tumour growth including nutrient diffusion, chemotaxis, active transport, adhesion, apoptosis and proliferation. The model generalises earlier models and in particular includes active transport mechanisms which ensure thermodynamic consistency. We perform a formally matched asymptotic expansion and develop several sharp interface models. Some of them are classical and some are new which for example include a jump in the nutrient density at the interface. A linear stability analysis for a growing nucleus is performed and in particular the role of the new active transport term is analysed. Numerical computations are performed to study the influence of the active transport term for specific growth scenarios.

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          Author and article information

          Journal
          2015-08-03
          2016-06-03
          Article
          1508.00437
          58c8a213-1597-43af-9712-7cb8517bf126

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

          History
          Custom metadata
          92B05, 35K57, 35R35, 65M60
          Math. Models Methods Appl. Sci., 26(6):1095--1148, (2016)
          47 pages, 51 figures, minor typos corrected, new figures added, accepted version
          math.AP q-bio.TO

          Analysis,Life sciences
          Analysis, Life sciences

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