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Mathematical Biosciences|February 19, 2008
Network epidemic models with two levels of mixingFrank Ball, Peter NealMathematical Biosciences|October 22, 2002
A general model for stochastic SIR epidemics with two levels of mixingFrank Ball, Peter NealJournal of Mathematical Biology|October 31, 2022
An epidemic model with short-lived mixing groupsFrank Ball, Peter NealJournal of Mathematical Biology|November 8, 2023
The impact of household structure on disease-induced herd immunityFrank Ball, Liam Critcher, Peter Neal, et al.Journal of Mathematical Biology|March 31, 2015
Estimating the within-household infection rate in emerging SIR epidemics among a community of householdsFrank Ball, Laurence ShawJournal of Mathematical Biology|April 26, 2026
Multitype SIR epidemics among a population partitioned into households with proportionate global mixingFrank Ball, Liam CritcherMathematical Biosciences|July 1, 2009
An epidemic model with infector and exposure dependent severityFrank Ball, Tom BrittonJournal of Mathematical Biology|January 19, 2017
Heterogeneous network epidemics: real-time growth, variance and extinction of infectionFrank Ball, Thomas HouseStatistical Methods in Medical Research|November 9, 2006
Optimal vaccination schemes for epidemics among a population of households, with application to variola minor in BrazilFrank Ball, Owen LyneEpidemiology (Cambridge, Mass.)|June 13, 2025
Improving the Use of Social Contact Studies in Epidemic ModelingTom Britton, Frank BallPageof 6