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Interface Focus|August 7, 2013
Turing's model for biological pattern formation and the robustness problemPhilip K Maini, Thomas E Woolley, Ruth E Baker, et al.Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|September 26, 2012
Advection, diffusion, and delivery over a networkLuke L M Heaton, Eduardo López, Philip K Maini, et al.Journal of Mathematical Biology|July 28, 2025
Reducing phenotype-structured partial differential equations models of cancer evolution to systems of ordinary differential equations: a generalised moment dynamics approachChiara Villa, Philip K Maini, Alexander P Browning, et al.Plos Computational Biology|April 5, 2013
Systems model of T cell receptor proximal signaling reveals emergent ultrasensitivityHimadri Mukhopadhyay, Shaun-Paul Cordoba, Philip K Maini, et al.Journal of Theoretical Biology|March 12, 2014
Comparing methods for modelling spreading cell frontsDeborah C Markham, Matthew J Simpson, Philip K Maini, et al.Communications Biology|February 26, 2026
Growth rate-driven modelling suggests that phenotypic adaptation drives drug resistance in BRAFV600E-mutant melanomaSara Hamis, Alexander P Browning, Adrianne L Jenner, et al.Biophysical Journal|November 24, 2018
Unraveling the Control of Cell Cycle Periods during Intestinal Stem Cell DifferentiationRichard Ballweg, Suengwon Lee, Xiaonan Han, et al.Journal of Anatomy|June 8, 2019
A mathematical insight into cell labelling experiments for clonal analysisNoemi Picco, Simon Hippenmeyer, Julio Rodarte, et al.Plos Computational Biology|March 10, 2018
The importance of geometry in the corneal micropocket angiogenesis assayJames A Grogan, Anthony J Connor, Joe M Pitt-Francis, et al.Plos Computational Biology|February 14, 2017
Comparing individual-based approaches to modelling the self-organization of multicellular tissuesJames M Osborne, Alexander G Fletcher, Joe M Pitt-Francis, et al.Pageof 36