Pages that link to "Item:Q378935"
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The following pages link to Modeling chemotaxis from \(L^2\)-closure moments in kinetic theory of active particles (Q378935):
Displaying 13 items.
- Partial-moment minimum-entropy models for kinetic chemotaxis equations in one and two dimensions (Q289323) (← links)
- Emergence of spatial patterns in a mathematical model for the co-culture dynamics of epithelial-like and mesenchymal-like cells (Q335245) (← links)
- A multiscale model of cell mobility: from a kinetic to a hydrodynamic description (Q499185) (← links)
- From the mathematical kinetic theory for active particles on the derivation of hyperbolic macroscopic tissue models (Q734479) (← links)
- An asymptotic preserving scheme for kinetic models for chemotaxis phenomena (Q2274607) (← links)
- Drift-diffusion limit of a model for the dynamics of epithelial and mesenchymal cell monolayers (Q2339043) (← links)
- Asymptotic analysis of a nonlinear integro-differential system modeling the immune response (Q2627223) (← links)
- From a multiscale derivation of nonlinear cross-diffusion models to Keller-Segel models in a Navier-Stokes fluid (Q2830975) (← links)
- On the difficult interplay between life, ``complexity'', and mathematical sciences (Q2868591) (← links)
- On a class of multiscale cancer cell migration models: Well-posedness in less regular function spaces (Q3191255) (← links)
- MULTISCALE BIOLOGICAL TISSUE MODELS AND FLUX-LIMITED CHEMOTAXIS FOR MULTICELLULAR GROWING SYSTEMS (Q3587556) (← links)
- Kinetic and macroscopic models for active particles exploring complex environments with an internal navigation control system (Q5164249) (← links)
- Toward a mathematical theory of Keller–Segel models of pattern formation in biological tissues (Q5265465) (← links)