Pages that link to "Item:Q253507"
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The following pages link to A continuum model of motility in ameboid cells (Q253507):
Displaying 37 items.
- Polarization and movement of keratocytes: a multiscale modelling approach (Q263672) (← links)
- Cell migration with multiple pseudopodia: temporal and spatial sensing models (Q376415) (← links)
- Continuum modeling and numerical simulation of cell motility (Q393569) (← links)
- One-dimensional viscoelastic cell motility models (Q630962) (← links)
- A poroelastic immersed boundary method with applications to cell biology (Q728858) (← links)
- An extended filament based lamellipodium model produces various moving cell shapes in the presence of chemotactic signals (Q739355) (← links)
- Hybrid models of cell and tissue dynamics in tumor growth (Q745117) (← links)
- A 3D motile rod-shaped monotrichous bacterial model (Q836223) (← links)
- Protrusion of a virtual model lamellipodium by actin polymerization: A coarse-grained langevin dynamics model (Q960164) (← links)
- A cell-based model of endothelial cell migration, proliferation and maturation during corneal angiogenesis (Q977689) (← links)
- Continuum model of cell adhesion and migration (Q999325) (← links)
- Mathematics of cell motility: Have we got its number? (Q999328) (← links)
- A mathematical model of liver cell aggregation in vitro (Q1026649) (← links)
- Does buckling instability of the pseudopodium limit how well an amoeba can climb? (Q1670600) (← links)
- `Run-and-tumble' or `look-and-run'? A mechanical model to explore the behavior of a migrating amoeboid cell (Q1784799) (← links)
- Nonlinear mechanical modeling of cell adhesion (Q1788133) (← links)
- A computational model of cell migration coupling the growth of focal adhesions with oscillatory cell protrusions (Q1796342) (← links)
- Cytoplasm dynamics and cell motion: Two-phase flow models (Q1807248) (← links)
- How cellular movement determines the collective force generated by the \textit{Dictyostelium discoideum} slug (Q2186556) (← links)
- Simulated morphogenesis of developmental folds due to proliferative pressure (Q2201954) (← links)
- A moving grid finite element method applied to a mechanobiochemical model for 3D cell migration (Q2202437) (← links)
- Ameboid cell motility: a model and inverse problem, with an application to live cell imaging data (Q2209063) (← links)
- Modulation of the reaction rate of regulating protein induces large morphological and motional change of amoebic cell (Q2209930) (← links)
- Multiscale phenomena and patterns in biological systems: special issue in honour of Hans Othmer (Q2297286) (← links)
- Immersed finite element method and its applications to biological systems (Q2372501) (← links)
- Approaches to myosin modelling in a two-phase flow model for cell motility (Q2411727) (← links)
- Nonlinearity in cytoplasm viscosity can generate an essential symmetry breaking in cellular behaviors (Q2413925) (← links)
- Modeling of adhesion, protrusion, and contraction coordination for cell migration simulations (Q2436585) (← links)
- A viscoelastic model of blood capillary extension and regression: derivation, analysis, and simulation (Q2436602) (← links)
- On the mechanical interplay between intra- and inter-synchronization during collective cell migration: a numerical investigation (Q2446801) (← links)
- On a poroviscoelastic model for cell crawling (Q2512924) (← links)
- A continuum theory of surface growth (Q3163460) (← links)
- (Q3171641) (← links)
- A POROUS VISCOELASTIC MODEL FOR THE CELL CYTOSKELETON (Q3177373) (← links)
- (Q4377770) (← links)
- A DISCRETE MATHEMATICAL MODEL FOR SINGLE AND COLLECTIVE MOVEMENT IN AMOEBOID CELLS (Q4628915) (← links)
- A theoretical model for focal adhesion and cytoskeleton formation in non-motile cells (Q6671198) (← links)