Climatic warming will likely have idiosyncratic impacts on infectious diseases, causing some to increase while others decrease or shift geographically. A mechanistic framework could better predict these different temperature-disease outcomes. However, such a framework remains challenging to develop, due to the non-linear and (sometimes) opposing thermal responses of different host and parasite traits, and due to the difficulty of validating model predictions with observations and experiments. We address these challenges in a zooplankton-fungus (Daphnia dentifera-Metschnikowia bicuspidata) system. We test the hypothesis that warmer temperatures promote disease spread and produce larger epidemics. In lakes, epidemics that start earlier and wa...
Predicting the effects of seasonality and climate change on the emergence and spread of infectious d...
Climate change is affecting infectious disease around the world. These effects can be complicated, a...
1. Global warming challenges the persistence of local populations, not only through heat-induced str...
Climatic warming will likely have idiosyncratic impacts on infectious diseases, causing some to incr...
Climatic warming will likely have idiosyncratic impacts on infectious diseases, causing some to incr...
Climatic warming will likely have idiosyncratic impacts on infectious diseases, causing some to incr...
Seasonal epidemics erupt commonly in nature and are driven by numerous mechanisms. Here, we suggest ...
1. Thermal ecology theory predicts that transmission of infectious diseases should respond unimodall...
Seasonal epidemics erupt commonly in nature and are driven by numerous mechanisms. Here, we suggest ...
Predicting the effects of seasonality and climate change on the emergence and spread of infectious d...
1. Thermal ecology theory predicts that transmission of infectious diseases should respond unimodall...
1. Climate change has the potential to shape the future of infectious diseases, both directly and in...
Climate change has profound effects on infectious disease dynamics, yet the impacts of increased sho...
Many infectious diseases display strong seasonal dynamics. When both hosts and parasites are influen...
DOI:10.1890/0012-9658(2006)87[1684:WDNHTM]2.0.CO;2© Ecological Society of AmericaEcologists and epid...
Predicting the effects of seasonality and climate change on the emergence and spread of infectious d...
Climate change is affecting infectious disease around the world. These effects can be complicated, a...
1. Global warming challenges the persistence of local populations, not only through heat-induced str...
Climatic warming will likely have idiosyncratic impacts on infectious diseases, causing some to incr...
Climatic warming will likely have idiosyncratic impacts on infectious diseases, causing some to incr...
Climatic warming will likely have idiosyncratic impacts on infectious diseases, causing some to incr...
Seasonal epidemics erupt commonly in nature and are driven by numerous mechanisms. Here, we suggest ...
1. Thermal ecology theory predicts that transmission of infectious diseases should respond unimodall...
Seasonal epidemics erupt commonly in nature and are driven by numerous mechanisms. Here, we suggest ...
Predicting the effects of seasonality and climate change on the emergence and spread of infectious d...
1. Thermal ecology theory predicts that transmission of infectious diseases should respond unimodall...
1. Climate change has the potential to shape the future of infectious diseases, both directly and in...
Climate change has profound effects on infectious disease dynamics, yet the impacts of increased sho...
Many infectious diseases display strong seasonal dynamics. When both hosts and parasites are influen...
DOI:10.1890/0012-9658(2006)87[1684:WDNHTM]2.0.CO;2© Ecological Society of AmericaEcologists and epid...
Predicting the effects of seasonality and climate change on the emergence and spread of infectious d...
Climate change is affecting infectious disease around the world. These effects can be complicated, a...
1. Global warming challenges the persistence of local populations, not only through heat-induced str...