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Nature Communications|May 3, 2020
Accelerating invasion potential of disease vector Aedes aegypti under climate changeTakuya Iwamura, Adriana Guzman-Holst, Kris A Murray
Systematic Reviews|March 20, 2025
Human animal contact, land use change and zoonotic disease risk: a protocol for systematic reviewAliyu N Ahmed, Kimberly M Fornace, Takuya Iwamura, et al.
Plos Neglected Tropical Diseases|January 22, 2021
Integrating human behavior and snake ecology with agent-based models to predict snakebite in high risk landscapesEyal Goldstein, Joseph J Erinjery, Gerardo Martin, et al.
Toxicon: X|July 14, 2021
Implications of global environmental change for the burden of snakebiteGerardo Martín, Carlos Yáñez-Arenas, Rodrigo Rangel-Camacho, et al.
Plos Neglected Tropical Diseases|May 13, 2022
A mechanistic model of snakebite as a zoonosis: Envenoming incidence is driven by snake ecology, socioeconomics and its impacts on snakesGerardo Martín, Joseph J Erinjery, Dileepa Ediriweera, et al.
The Lancet. Planetary Health|August 9, 2024
Effects of global change on snakebite envenoming incidence up to 2050: a modelling assessmentGerardo Martín, Joseph James Erinjery, Dileepa Ediriweera, et al.
Current Opinion in Virology|February 19, 2013
Human ecology in pathogenic landscapes: two hypotheses on how land use change drives viral emergenceKris A Murray, Peter Daszak
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