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Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences|March 10, 2015
How mathematical epidemiology became a field of biology: a commentary on Anderson and May (1981) 'The population dynamics of microparasites and their invertebrate hosts'J A P Heesterbeek, M G Roberts
Journal of the Royal Society, Interface|January 16, 2020
Characterizing reservoirs of infection and the maintenance of pathogens in ecosystemsM G Roberts, J A P Heesterbeek
Mathematical Biosciences|March 15, 2006
The type-reproduction number T in models for infectious disease controlJ A P Heesterbeek, M G Roberts
Journal of Mathematical Biology|August 9, 2007
Model-consistent estimation of the basic reproduction number from the incidence of an emerging infectionM G Roberts, J A P Heesterbeek
Journal of the Royal Society, Interface|October 12, 2021
Infection dynamics in ecosystems: on the interaction between red and grey squirrels, pox virus, pine martens and treesM G Roberts, J A P Heesterbeek
Journal of Mathematical Biology|October 23, 2012
Characterizing the next-generation matrix and basic reproduction number in ecological epidemiologyM G Roberts, J A P Heesterbeek
IMA Journal of Mathematics Applied in Medicine and Biology|January 1, 1994
The regulation of an age-structured population by a fatal diseaseK Louie, M G Roberts, G C Wake
IMA Journal of Mathematics Applied in Medicine and Biology|January 1, 1993
Thresholds and stability analysis of models for the spatial spread of a fatal diseaseK Louie, M G Roberts, G C Wake
Bulletin of the World Health Organization|January 1, 1986
Control of echinococcosis/hydatidosis: present status of worldwide progressM A Gemmell, J R Lawson, M G Roberts
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