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When can we infer mechanism from parasite aggregation? A constraint-based approach to disease ecology Ecology. 98(3):688-702.. 2017.
When African clawed frogs invade: indirect interactions between native and invasive amphibians. Bulletin of the Southern California Academy of Sciences. 113:140–142.. 2014.
What causes generation cycles in populations of stored-product moths? Journal of Animal Ecology. :352–366.. 2000.
Using stochastic epidemiological models to evaluate conservation strategies for endangered amphibians. Journal of the Royal Society Interface. 14(133):20170480.. 2017.
Using decision analysis to support proactive management of emerging infectious wildlife diseases. The Ecological Society of America, Frontiers in Ecology and the Environment. 15(4):214-221.. 2017.
Two-patch metapopulation dynamics. Lecture notes in biomathematics. 96:125–135.. 1993.
Single-species models for many-species food webs. Nature. 417:541–543.. 2002.
Shared behavioral responses and predation risk of anuran larvae and adults exposed to a novel predator. Biological Invasions. 20:475-485.. 2018.
Risk of vector tick exposure initially increases, then declines through time in response to wildfire in California. Ecosphere. 9(5):Articlee02227.. 2018.
Resistance, tolerance and environmental transmission dynamics determine host extinction risk in a load-dependent amphibian disease. Ecology Letters. 20(9):1169-1181.. 2017.
Reply. Ecology Letters. 6:384–387.. 2003.
Rapid extirpation of a North American frog coincides with an increase in fungal pathogen prevalence: Historical analysis and implications for reintroduction. Biology and Evolution. DOI: 10.1002/ece3.3468. 2017.
The population dynamics of pathogens that control insect outbreaks. Journal of theoretical biology. 176:125–136.. 1995.
Models of intermediate complexity in insect-pathogen interactions: population dynamics of the microsporidian pathogen, Nosema pyrausta, of the European corn borer, Ostrinia nubilalis. Parasitology. 111:S71–S89.. 1995.
Modelling the relative efficacy of culling and sterilisation for controlling populations. Wildlife Research. 24:129–141.. 1997.
Modeling Virus Coinfection to Inform Management of Maize Lethal Necrosis in Kenya. Phytopathology. 107(10):1095-1108.. 2017.
A model of Nucleopolyhedrovirus (NPV) population genetics applied to co–occlusion and the spread of the few Polyhedra (FP) phenotype. Proceedings of the Royal Society of London B: Biological Sciences. 264:315–322.. 1997.
A model of insect—pathogen dynamics in which a pathogenic bacterium can also reproduce saprophytically. Proceedings of the Royal Society of London B: Biological Sciences. 266:233–240.. 1999.
Integrating the effects of ocean acidification across functional scales on tropical coral reefs. BioScience. 66(5):350-362.. 2016.
The influence of landscape and environmental factors on ranavirus epidemiology in amphibian assemblage. Freshwater Biology. 63. 2018.
Influence of Abiotic and Environmental Factors on the Density and Infection Prevalence of Ixodes pacificus (Acari: Ixodidae) with Borrelia burgdorferi. Journal of medical entomology. 48:20–28.. 2011.
Host-pathogen dynamics of amphibian chytridiomycosis: the role of the skin microbiome in health and disease. Fungal diseases: an emerging challenge to human, animal, and plant health. :342–355.. 2011.
A high speed multiple pipeline function unit as a building block for parallel architectures. Proc. ICCD. 87. 1987.
A high speed multiple function unit as a building block for parallel architectures. Proc. IEEE. Int. Conf. Computer Design: VLSI in Computers. :640–644.. 1987.