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Journal of the Royal Society, Interface|April 2, 2020
Applying optimal control theory to a spatial simulation model of sudden oak death: ongoing surveillance protects tanoak while conserving biodiversityE H Bussell, N J CunniffeJournal of the Royal Society, Interface|November 10, 2020
Will an outbreak exceed available resources for control? Estimating the risk from invading pathogens using practical definitions of a severe epidemicR N Thompson, C A Gilligan, N J CunniffePhilosophical Transactions of the Royal Society of London. Series B, Biological Sciences|May 21, 2019
Applying optimal control theory to complex epidemiological models to inform real-world disease managementE H Bussell, C E Dangerfield, C A Gilligan, et al.Phytopathology|May 13, 2011
Spatial sampling to detect an invasive pathogen outside of an eradication zoneI Demon, N J Cunniffe, B P Marchant, et al.Phytopathology|June 10, 2010
The effect of landscape pattern on the optimal eradication zone of an invading epidemicS Parnell, T R Gottwald, C A Gilligan, et al.Phytopathology|November 24, 2011
Time-dependent infectivity and flexible latent and infectious periods in compartmental models of plant diseaseN J Cunniffe, R O J H Stutt, F van den Bosch, et al.Proceedings. Biological Sciences|September 4, 2015
Early detection surveillance for an emerging plant pathogen: a rule of thumb to predict prevalence at first discoveryS Parnell, T R Gottwald, N J Cunniffe, et al.Epidemics|December 1, 2019
Accurate forecasts of the effectiveness of interventions against Ebola may require models that account for variations in symptoms during infectionW S Hart, L F R Hochfilzer, N J Cunniffe, et al.Pageof 1