GRAM publications
Global burden of bacterial antimicrobial resistance 1990-2021: a systematic analysis with forecasts to 2050.
GBD 2021 Antimicrobial Resistance Collaborators None., (2024), Lancet, 404, 1199 - 1226
Global burden of bacterial antimicrobial resistance in 2019: a systematic analysis.
Antimicrobial Resistance Collaborators None., (2022), Lancet, 399, 629 - 655
Estimating the subnational prevalence of antimicrobial resistant Salmonella enterica serovars Typhi and Paratyphi A infections in 75 endemic countries, 1990-2019: a modelling study.
GRAM Typhoid Collaborators None., (2024), Lancet Glob Health, 12, e406 - e418
The burden of bacterial antimicrobial resistance in the WHO African region in 2019: a cross-country systematic analysis.
Antimicrobial Resistance Collaborators None., (2024), Lancet Glob Health, 12, e201 - e216
The burden of antimicrobial resistance in the Americas in 2019: a cross-country systematic analysis.
Antimicrobial Resistance Collaborators None., (2023), Lancet Reg Health Am, 25
Global mortality associated with 33 bacterial pathogens in 2019: a systematic analysis for the Global Burden of Disease Study 2019.
GBD 2019 Antimicrobial Resistance Collaborators None., (2022), Lancet, 400, 2221 - 2248
The burden of bacterial antimicrobial resistance in the WHO European region in 2019: a cross-country systematic analysis.
European Antimicrobial Resistance Collaborators None., (2022), Lancet Public Health, 7, e897 - e913
Mapping local variation in household overcrowding across Africa from 2000 to 2018: a modelling study.
Chipeta MG. et al, (2022), Lancet Planet Health, 6, e670 - e681
Global antibiotic consumption and usage in humans, 2000-18: a spatial modelling study.
Browne AJ. et al, (2021), Lancet Planet Health
The challenges of estimating the human global burden of disease of antimicrobial resistant bacteria.
Dunachie SJ. et al, (2020), Curr Opin Microbiol, 57, 95 - 101
Recent publications by Researchers affiliated with the GRAM project
Global burden of bacterial antimicrobial resistance in 2019: a systematic analysis.
Antimicrobial Resistance Collaborators None., (2022), Lancet, 399, 629 - 655
Insect pest control, approximate dynamic programming, and the management of the evolution of resistance.
Hackett SC. and Bonsall MB., (2019), Ecol Appl, 29
Management of a stage-structured insect pest: an application of approximate optimization.
Hackett SC. and Bonsall MB., (2018), Ecol Appl, 28, 938 - 952
The evolutionary stability of attenuators that mask information about animals that social partners can exploit.
Hackett S. and Ruxton GD., (2018), J Evol Biol, 31, 675 - 686
Type of fitness cost influences the rate of evolution of resistance to transgenic Bt crops.
Hackett SC. and Bonsall MB., (2016), J Appl Ecol, 53, 1391 - 1401
Investment in attending to cues and the evolution of amplifiers.
Hackett S. et al, (2016), J Evol Biol, 29, 1131 - 1141
Linking signal fidelity and the efficiency costs of communication.
Hackett S. et al, (2014), J Evol Biol, 27, 1797 - 1810
Unpredicted impacts of insect endosymbionts on interactions between soil organisms, plants and aphids.
Hackett SC. et al, (2013), Proc Biol Sci, 280