Turing-type instabilities in bulk-surface reaction-diffusion systems
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Publication:2352303
DOI10.1016/j.cam.2015.02.050zbMath1402.92156OpenAlexW1964117739MaRDI QIDQ2352303
Publication date: 30 June 2015
Published in: Journal of Computational and Applied Mathematics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.cam.2015.02.050
reaction-diffusion systemsTuring instabilitynumerical simulations of reaction-diffusion systemsPDE's on surfaces
Reaction-diffusion equations (35K57) PDEs in connection with biology, chemistry and other natural sciences (35Q92) Biochemistry, molecular biology (92C40) Cell biology (92C37)
Related Items (5)
Generation and Motion of Interfaces in a Mass-Conserving Reaction-Diffusion System ⋮ Solvability of nonlinear diffusion models with flux at the boundary driven by nonmonotone local and memory interactions ⋮ Turing pattern formation in reaction-cross-diffusion systems with a bilayer geometry ⋮ Turing patterning in stratified domains ⋮ Stability analysis of a bulk-surface reaction model for membrane protein clustering
Cites Work
- Unnamed Item
- The surface finite element method for pattern formation on evolving biological surfaces
- Turing instabilities in a mathematical model for signaling networks
- PDE's on surfaces -- a diffusive interface approach
- Finite element approximation of elliptic partial differential equations on implicit surfaces
- Solving PDEs in complex geometries: a diffuse domain approach
- Erratum to: Turing instabilities in a mathematical model for signaling networks
- An AFC-stabilized implicit finite element method for partial differential equations on evolving-in-time surfaces
- A diffuse-interface approach for modelling transport, diffusion and adsorption/desorption of material quantities on a deformable interface
- Diffusion on a curved surface coupled to diffusion in the volume: application to cell biology
- Signaling networks and cell motility: a computational approach using a phase field description
- Implicit--Explicit Timestepping with Finite Element Approximation of Reaction--Diffusion Systems on Evolving Domains
- Symmetry breaking in a bulk–surface reaction–diffusion model for signalling networks
- Finite element analysis for a coupled bulk-surface partial differential equation
- Finite element methods for surface PDEs
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