Pages that link to "Item:Q2237476"
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The following pages link to Modeling and simulation of vascular tumors embedded in evolving capillary networks (Q2237476):
Displaying 15 items.
- Front instabilities and invasiveness of simulated avascular tumors (Q836221) (← links)
- Analysis of a new multispecies tumor growth model coupling 3D phase-fields with a 1D vascular network (Q2066556) (← links)
- Goal-oriented a-posteriori estimation of model error as an aid to parameter estimation (Q2083651) (← links)
- Phase-field model of vascular tumor growth: three-dimensional geometry of the vascular network and integration with imaging data (Q2175066) (← links)
- Full-scale, three-dimensional simulation of early-stage tumor growth: the onset of malignancy (Q2310363) (← links)
- Multiscale modelling and nonlinear simulation of vascular tumour growth (Q2340003) (← links)
- Simulation of angiogenesis in a multiphase tumor growth model (Q2417704) (← links)
- Modeling Tumor Blood Vessel Dynamics (Q2820377) (← links)
- A hybrid ten-species phase-field model of tumor growth (Q2930094) (← links)
- Modelling the interactions between tumour cells and a blood vessel in a microenvironment within a vascular tumour (Q4330688) (← links)
- Tumor evolution models of phase-field type with nonlocal effects and angiogenesis (Q6044237) (← links)
- A linear convex splitting scheme for the Cahn–Hilliard equation with a high‐order polynomial free energy (Q6082556) (← links)
- An optimization based 3D-1D coupling strategy for tissue perfusion and chemical transport during tumor-induced angiogenesis (Q6184110) (← links)
- Residual-based error corrector operator to enhance accuracy and reliability of neural operator surrogates of nonlinear variational boundary-value problems (Q6185165) (← links)
- Bridging scales: a hybrid model to simulate vascular tumor growth and treatment response (Q6201151) (← links)