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Mathematical Biosciences|December 17, 2009
Analysis of a stochastic SIR epidemic on a random network incorporating household structureFrank Ball, David Sirl, Pieter TrapmanRoyal Society Open Science|August 5, 2021
The risk for a new COVID-19 wave and how it depends on <i>R</i> <sub>0</sub>, the current immunity level and current restrictionsTom Britton, Pieter Trapman, Frank BallMathematical Biosciences|July 6, 2019
The basic reproduction number, R<sub>0</sub>, in structured populationsPeter Neal, Thitiya TheparodJournal of Mathematical Biology|December 30, 2009
The time to extinction for a stochastic SIS-household-epidemic modelTom Britton, Peter NealJournal of Computational Neuroscience|May 11, 2011
A spatially extended model for macroscopic spike-wave dischargesPeter Neal Taylor, Gerold BaierNeuroimage. Clinical|August 23, 2016
Heterogeneity of trans-callosal structural connectivity and effects on resting state subnetwork integrity may underlie both wanted and unwanted effects of therapeutic corpus callostomyPeter Neal Taylor, Rob ForsythMathematical Biosciences|July 23, 2016
A tutorial introduction to Bayesian inference for stochastic epidemic models using Approximate Bayesian ComputationTheodore Kypraios, Peter Neal, Dennis PrangleJournal of Mathematical Biology|March 15, 2019
A stochastic SIR network epidemic model with preventive dropping of edgesFrank Ball, Tom Britton, Ka Yin Leung, et al.Journal of the Royal Society, Interface|August 31, 2018
Individual preventive social distancing during an epidemic may have negative population-level outcomesKa Yin Leung, Frank Ball, David Sirl, et al.Journal of Mathematical Biology|April 23, 2025
Modelling the spread of two successive SIR epidemics on a configuration model networkFrank Ball, Abid Ali Lashari, David Sirl, et al.Pageof 6