Traditional epidemiological studies of disease in animal populations often focus on directly transmitted pathogens. One reason pathogens with complex lifecycles are understudied could be due to challenges associated with detection in vectors and the environment. Ecological niche modeling (ENM) is a methodological approach that overcomes some of the detection challenges often seen with vector or environmentally dependent pathogens. We test this approach using a unique dataset of two pathogens in wild felids across North America: Toxoplasma gondii and Bartonella spp. in bobcats (Lynx rufus) and puma (Puma concolor). We found three main patterns. First, T. gondii showed a broader use of environmental conditions than did Bartonella spp. Also, e...
Toxoplasma gondii is a major zoonotic agent infecting a wide range of mammals, including wild felids...
AbstractChanging ecosystem dynamics are increasing the threat of disease epidemics arising in wildli...
Changing ecosystem dynamics are increasing the threat of disease epidemics arising in wildlife popul...
Traditional epidemiological studies of disease in animal populations often focus on directly transmi...
Transmission of pathogens among animals is influenced by demographic, social, and environmental fact...
Transmission of pathogens among animals is influenced by demographic, social, and environmental fact...
Transmission of pathogens among animals is influenced by demographic, social, and environmental fact...
Anthropogenic landscape change can lead to increased opportunities for pathogen transmission between...
A 2 year cross-sectional study was conducted to evaluate the occurrence of feral and wild cats and t...
We conducted a cross-sectional study from 2008 to 2009 to evaluate the occurrence of feral and wild ...
BackgroundEnvironmental transmission of the zoonotic parasite Toxoplasma gondii, which is shed only ...
Bobcats (Lynx rufus) are the most abundant and widely-distributed wild felid species in North Americ...
Anthropogenic landscape change can lead to increased opportunities for pathogen transmission between...
Toxoplasma gondii is a ubiquitous zoonotic parasite that can infect warm-blooded vertebrates, includ...
<div><p>Background</p><p>Environmental transmission of the zoonotic parasite <i>Toxoplasma gondii</i...
Toxoplasma gondii is a major zoonotic agent infecting a wide range of mammals, including wild felids...
AbstractChanging ecosystem dynamics are increasing the threat of disease epidemics arising in wildli...
Changing ecosystem dynamics are increasing the threat of disease epidemics arising in wildlife popul...
Traditional epidemiological studies of disease in animal populations often focus on directly transmi...
Transmission of pathogens among animals is influenced by demographic, social, and environmental fact...
Transmission of pathogens among animals is influenced by demographic, social, and environmental fact...
Transmission of pathogens among animals is influenced by demographic, social, and environmental fact...
Anthropogenic landscape change can lead to increased opportunities for pathogen transmission between...
A 2 year cross-sectional study was conducted to evaluate the occurrence of feral and wild cats and t...
We conducted a cross-sectional study from 2008 to 2009 to evaluate the occurrence of feral and wild ...
BackgroundEnvironmental transmission of the zoonotic parasite Toxoplasma gondii, which is shed only ...
Bobcats (Lynx rufus) are the most abundant and widely-distributed wild felid species in North Americ...
Anthropogenic landscape change can lead to increased opportunities for pathogen transmission between...
Toxoplasma gondii is a ubiquitous zoonotic parasite that can infect warm-blooded vertebrates, includ...
<div><p>Background</p><p>Environmental transmission of the zoonotic parasite <i>Toxoplasma gondii</i...
Toxoplasma gondii is a major zoonotic agent infecting a wide range of mammals, including wild felids...
AbstractChanging ecosystem dynamics are increasing the threat of disease epidemics arising in wildli...
Changing ecosystem dynamics are increasing the threat of disease epidemics arising in wildlife popul...