The complexity of host–parasite interactions makes it difficult to predict how host–parasite systems will respond to climate change. In particular, host and parasite traits such as survival and virulence may have distinct temperature dependencies that must be integrated into models of disease dynamics. Using experimental data from Daphnia magna and a microsporidian parasite, we fitted a mechanistic model of the within-host parasite population dynamics. Model parameters comprising host aging and mortality, as well as parasite growth, virulence, and equilibrium abundance, were specified by relationships arising from the metabolic theory of ecology. The model effectively predicts host survival, parasite growth, and the cost of infection across...
Climate change has profound effects on infectious disease dynamics, yet the impacts of increased sho...
Predicting the effects of seasonality and climate change on the emergence and spread of infectious d...
Global warming challenges the persistence of local populations, not only through heat-induced stress...
The complexity of host–parasite interactions makes it difficult to predict how host–parasite systems...
<div><p>The complexity of host–parasite interactions makes it difficult to predict how host–parasite...
The complexity of host-parasite interactions makes it difficult to predict how host-parasite systems...
<p>Using a combination of experiments and mathematical modeling, Kirk et al. [<a href="http://www.pl...
Climate change is affecting infectious disease around the world. These effects can be complicated, a...
The metabolic theory of ecology (MTE) provides a general framework of allometric and thermal depende...
The metabolic theory of ecology (MTE) provides a general framework of allometric and thermal depende...
The metabolic theory of ecology (MTE) provides a general framework of allometric and thermal depende...
The metabolic theory of ecology (MTE) provides a general framework of allometric and thermal depende...
Predicting the effects of seasonality and climate change on the emergence and spread of infectious d...
With over 1 million species on earth, each biologically unique, do we have any hope of understanding...
Predicting the effects of seasonality and climate change on the emergence and spread of infectious d...
Climate change has profound effects on infectious disease dynamics, yet the impacts of increased sho...
Predicting the effects of seasonality and climate change on the emergence and spread of infectious d...
Global warming challenges the persistence of local populations, not only through heat-induced stress...
The complexity of host–parasite interactions makes it difficult to predict how host–parasite systems...
<div><p>The complexity of host–parasite interactions makes it difficult to predict how host–parasite...
The complexity of host-parasite interactions makes it difficult to predict how host-parasite systems...
<p>Using a combination of experiments and mathematical modeling, Kirk et al. [<a href="http://www.pl...
Climate change is affecting infectious disease around the world. These effects can be complicated, a...
The metabolic theory of ecology (MTE) provides a general framework of allometric and thermal depende...
The metabolic theory of ecology (MTE) provides a general framework of allometric and thermal depende...
The metabolic theory of ecology (MTE) provides a general framework of allometric and thermal depende...
The metabolic theory of ecology (MTE) provides a general framework of allometric and thermal depende...
Predicting the effects of seasonality and climate change on the emergence and spread of infectious d...
With over 1 million species on earth, each biologically unique, do we have any hope of understanding...
Predicting the effects of seasonality and climate change on the emergence and spread of infectious d...
Climate change has profound effects on infectious disease dynamics, yet the impacts of increased sho...
Predicting the effects of seasonality and climate change on the emergence and spread of infectious d...
Global warming challenges the persistence of local populations, not only through heat-induced stress...