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Journal of the Royal Society, Interface|October 24, 2019
Accurate and efficient discretizations for stochastic models providing near agent-based spatial resolution at low computational costNabil T Fadai, Ruth E Baker, Matthew J SimpsonBMC Systems Biology|March 18, 2017
Quantifying the roles of random motility and directed motility using advection-diffusion theory for a 3T3 fibroblast cell migration assay stimulated with an electric fieldMatthew J Simpson, Kai-Yin Lo, Yung-Shin SunGround Water|May 30, 2003
Analytical model for computing residence times near a pumping wellMatthew J Simpson, T Prabhakar Clement, Francis E YeomansDevelopment, Growth & Differentiation|May 16, 2007
Mathematical and experimental insights into the development of the enteric nervous system and Hirschsprung's diseaseKerry A Landman, Matthew J Simpson, Donald F NewgreenJournal of the Royal Society, Interface|August 30, 2013
Design and interpretation of cell trajectory assaysLucie G Bowden, Matthew J Simpson, Ruth E BakerBulletin of Mathematical Biology|February 10, 2009
Distinguishing between directed and undirected cell motility within an invading cell populationMatthew J Simpson, Kerry A Landman, Barry D HughesBiophysical Journal|October 17, 2017
Optimal Quantification of Contact Inhibition in Cell PopulationsDavid J Warne, Ruth E Baker, Matthew J SimpsonThe Journal of Chemical Physics|May 9, 2016
Communication: Distinguishing between short-time non-Fickian diffusion and long-time Fickian diffusion for a random walk on a crowded latticeAdam J Ellery, Ruth E Baker, Matthew J SimpsonThe Journal of Chemical Physics|July 3, 2016
Exits in order: How crowding affects particle lifetimesCatherine J Penington, Ruth E Baker, Matthew J SimpsonMathematical Medicine and Biology : a Journal of the IMA|July 12, 2022
Non-vanishing sharp-fronted travelling wave solutions of the Fisher-Kolmogorov modelMaud El-Hachem, Scott W McCue, Matthew J SimpsonPageof 18