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Contaminants such as mercury are pervasive and can have immunosuppressive effects on wildlife. Impaired immunity could be important for forecasting pa...
Read morePathogen management strategies in wildlife are typically accompanied by an array of uncertainties such as the efficacy of vaccines or potential uninte...
Read moreZoonotic pathogens can harm human health and well-being directly or by impacting livestock. Pathogens that spillover from wildlife can also impair con...
Read moreDeterministic models predict that susceptible-infective-susceptible (SIS) disease, where there is no immunity to reinfection following recovery, will ...
Read moreEstimating disease transmission in wildlife populations is critical to understand host-pathogen dynamics, predict disease risks and prioritize surveil...
Read moreSupplemental feeding can increase the overall health of animals but also can have varying consequences for animals dealing with parasites. Furthermore...
Read moreBatrachochytrium dendrobatidis (Bd), an aquatic pathogenic fungus, is responsible for the decline of hundreds of amphibian species worldwide and negat...
Read moreThe amphibian chytrid fungus Batrachochytrium dendrobatidis is a major cause of frog declines globally. Two recent Maxent models predict high environm...
Read moreZoonotic disease control presents significant costs and challenges in human and wildlife populations. Although spatial variability and temporal variab...
Read moreIn recent years bovine tuberculosis (TB) incidence in cattle has been increasing in south-west England. The European badger Meles meles is implicated ...
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