6533b7d4fe1ef96bd1261d7d
RESEARCH PRODUCT
Numerical Simulation of a Contractivity Based Multiscale Cancer Invasion Model
Niklas KolbeNikolaos SfakianakisMaria Lukacova-medvidovaB. Wiebesubject
Mathematical optimizationComputer simulationQuantitative Biology::Tissues and OrgansNumerical analysisDynamics (mechanics)medicineCancerStatistical physicsDiffusion (business)medicine.diseaseHaptotaxisQuantitative Biology::Cell BehaviorMathematicsdescription
We present a problem-suited numerical method for a particularly challenging cancer invasion model. This model is a multiscale haptotaxis advection-reaction-diffusion system that describes the macroscopic dynamics of two types of cancer cells coupled with microscopic dynamics of the cells adhesion on the extracellular matrix. The difficulties to overcome arise from the non-constant advection and diffusion coefficients, a time delay term, as well as stiff reaction terms.
year | journal | country | edition | language |
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2017-01-01 |