Research Areas
Biography and Research Information
OverviewAI-generated summary
Katherine E. Wearing's research investigates ecological and health-related topics in wild mammal populations. Her work has explored how food supplementation can reduce nematode super-shedding in wild mammals, with a publication in 2026. Additionally, her research has examined the influence of ecological factors on viral infection dynamics in wild rodent populations, as detailed in her 2024 publication. Wearing has collaborated with researchers at the University of Arkansas at Fayetteville, including Janine Mistrick and Kristian M. Forbes, contributing to multiple shared publications. Her scholarly output includes 3 total publications and has garnered 1 citation, with an h-index of 1.
Metrics
- h-index: 1
- Publications: 3
- Citations: 1
Selected Publications
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Age-dependent effects of infection on survival of a wild rodent reservoir host (2026)
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Food Supplementation Reduces Nematode Super-Shedding in a Wild Mammal (2026)
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Ecological factors alter how spatial overlap predicts viral infection dynamics in wild rodent populations (2024)
Collaboration Network
Top Collaborators
- Ecological factors alter how spatial overlap predicts viral infection dynamics in wild rodent populations
- Food Supplementation Reduces Nematode Super-Shedding in a Wild Mammal
- Ecological factors alter how spatial overlap predicts viral infection dynamics in wild rodent populations
- Food Supplementation Reduces Nematode Super-Shedding in a Wild Mammal
- Ecological factors alter how spatial overlap predicts viral infection dynamics in wild rodent populations
- Food Supplementation Reduces Nematode Super-Shedding in a Wild Mammal
- Ecological factors alter how spatial overlap predicts viral infection dynamics in wild rodent populations
- Food Supplementation Reduces Nematode Super-Shedding in a Wild Mammal
- Ecological factors alter how spatial overlap predicts viral infection dynamics in wild rodent populations
- Ecological factors alter how spatial overlap predicts viral infection dynamics in wild rodent populations
- Ecological factors alter how spatial overlap predicts viral infection dynamics in wild rodent populations
- Ecological factors alter how spatial overlap predicts viral infection dynamics in wild rodent populations
- Ecological factors alter how spatial overlap predicts viral infection dynamics in wild rodent populations
- Ecological factors alter how spatial overlap predicts viral infection dynamics in wild rodent populations
- Ecological factors alter how spatial overlap predicts viral infection dynamics in wild rodent populations
- Ecological factors alter how spatial overlap predicts viral infection dynamics in wild rodent populations
- Ecological factors alter how spatial overlap predicts viral infection dynamics in wild rodent populations
- Food Supplementation Reduces Nematode Super-Shedding in a Wild Mammal
- Food Supplementation Reduces Nematode Super-Shedding in a Wild Mammal
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