Pages that link to "Item:Q2339998"
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The following pages link to Microenvironment driven invasion: a multiscale multimodel investigation (Q2339998):
Displaying 27 items.
- A novel method for simulating the extracellular matrix in models of tumour growth (Q454596) (← links)
- In silico modelling of tumour margin diffusion and infiltration: review of current status (Q454708) (← links)
- A multilayer grow-or-go model for GBM: effects of invasive cells and anti-angiogenesis on growth (Q467769) (← links)
- Computational analysis of the influence of the microenvironment on carcinogenesis (Q630961) (← links)
- Mathematical modeling of cancer cell invasion of tissue: biological insight from mathematical analysis and computational simulation (Q659011) (← links)
- Front instabilities and invasiveness of simulated avascular tumors (Q836221) (← links)
- A computational study of the development of epithelial acini. II: Necessary conditions for structure and lumen stability (Q941155) (← links)
- A structure-preserving computational method in the simulation of the dynamics of cancer growth with radiotherapy (Q1617482) (← links)
- Evolution of cell motility in an individual-based model of tumour growth (Q1624265) (← links)
- Tumor growth modelling by cellular automata (Q1691274) (← links)
- The influence of soluble fragments of extracellular matrix (ECM) on tumor growth and morphology (Q1698511) (← links)
- What does not kill a tumour may make it stronger: \textit{in silico} insights into chemotherapeutic drug resistance (Q1714197) (← links)
- The impact of adhesion on cellular invasion processes in cancer and development (Q1719808) (← links)
- A hybrid cellular automaton model of clonal evolution in cancer: the emergence of the glycolytic phenotype (Q1788573) (← links)
- Hypoxic cell waves around necrotic cores in glioblastoma: a biomathematical model and its therapeutic implications (Q1936688) (← links)
- A mathematical study of the influence of hypoxia and acidity on the evolutionary dynamics of cancer (Q2035804) (← links)
- Nonlinear simulation of the effect of microenvironment on tumor growth (Q2209992) (← links)
- Extension of tumor fingers: a comparison between an individual-cell based model and a measure theoretic approach (Q2274596) (← links)
- Simulation of glioblastoma growth using a 3D multispecies tumor model with mass effect (Q2315208) (← links)
- Modelling the effects of cell-cycle heterogeneity on the response of a solid tumour to chemotherapy: biological insights from a hybrid multiscale cellular automaton model (Q2632026) (← links)
- A hybrid computational model for the effects of maspin on cancer cell dynamics (Q2632191) (← links)
- The formation of tight tumor clusters affects the efficacy of cell cycle inhibitors: a hybrid model study (Q2632855) (← links)
- Modelling of cancer growth, evolution and invasion: bridging scales and models (Q2788510) (← links)
- Semi-autonomous wound invasion via matrix-deposited, haptotactic cues (Q6174234) (← links)
- Traveling waves in a coarse‐grained model of volume‐filling cell invasion: Simulations and comparisons (Q6204635) (← links)
- Selected aspects of avascular tumor growth reproduced by a hybrid model of cell dynamics and chemical kinetics (Q6550777) (← links)
- Implementation of actin polymerization and depolymerization in a two-dimensional cell migration model and its implications on mammalian cell morphology and velocity (Q6671208) (← links)