Mark A. J. Chaplain
- Mathematical models for tumour angiogenesis: Numerical simulations and nonlinear wave solutions
1995/05/01 by H. M. Byrne, Helen M. Byrne, Mark A. J. Chaplain +1 · 1 citation
Mathematics · Biochemistry, Genetics and Molecular Biology · #Mathematical Biology Tumor Growth #Angiogenesis and VEGF in Cancer #Microtubule and mitosis dynamics
- A multi-scale model of virus pandemic: Heterogeneous interactive\n entities in a globally connected world
2020/06/06 by Nicola Bellomo, R. Bingham, Bellomo, Nicola +15 · 1 citation
Mathematics · Medicine · #92C60 #92D30 #COVID-19 epidemiological studies #FOS: Biological sciences #Mathematical Biology Tumor Growth #Mathematical and Theoretical Epidemiology and Ecology Models #Populations and Evolution (q-bio.PE)
- Modelling the emergence of phenotypic heterogeneity in vascularised tumours
2019/10/18 by Chiara Villa, Mark A. J. Chaplain, Villa, Chiara +3 · 1 citation
Biochemistry, Genetics and Molecular Biology · Mathematics · Medicine · #35K55 #35Q92 #92C50 #92D25 #Adaptation and Self-Organizing Systems (nlin.AO) #Angiogenesis and VEGF in Cancer #FOS: Biological sciences #FOS: Physical sciences #MRI in cancer diagnosis #Mathematical Biology Tumor Growth #Populations and Evolution (q-bio.PE) #Tissues and Organs (q-bio.TO)
- Stochastic differential equation modelling of cancer cell migration and tissue invasion
2023/06/15 by Dimitrios Katsaounis, Mark A. J. Chaplain, Nikolaos Sfakianakis · 1 citation
- The effect of interstitial pressure on tumor growth: Coupling with the blood and lymphatic vascular systems
2012/12/07 by Min Wu, Hermann B. Frieboes, Steven Robert McDougall +5 · 2 citations
Mathematics · Engineering · Medicine · #Mathematical Biology Tumor Growth #3D Printing in Biomedical Research #Cancer Cells and Metastasis