Reilly T. Jackson
Terrestrial Research Program Manager
Also affiliated: Arizona Game and Fish Department (2024–2026); Johnson University (2026); Conway School of Landscape Design (2023); Department of Forestry (2022); University of Tennessee at Knoxville (2021–2026)
Staff Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Reilly T. Jackson's research focuses on wildlife disease ecology, with an emphasis on applying findings to wildlife management and conservation efforts. Jackson's work investigates how human-wildlife interactions, particularly those involving bats and modern anthropogenic structures in rural Kenya, can increase the risk of zoonotic pathogen spillover. This research also examines bat disease ecology in the United States, including studies on winter torpor expression and dietary habits in species susceptible to white-nose syndrome. Jackson's scholarship metrics include an h-index of 6, with 26 total publications and 161 total citations. Key collaborators include Kristian M. Forbes, Isabella K. DeAnglis, Maureen R. McClung, and Tamika J Lunn.
Metrics
- h-index: 6
- Publications: 27
- Citations: 166
Selected Publications
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New parajeilongviruses detected in bats but not in humans: assays for screening and diagnostic purposes (2026)
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Impacts of bat use of anthropogenic structures on bats and humans (2025)
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Modern building structures are a landscape‐level driver of bat–human exposure risk in Kenya (2024)
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Risk of invasive waterfowl interaction with poultry production: Understanding potential for avian pathogen transmission via species distribution models (2024)
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Current and future environmental suitability for bats hosting potential zoonotic pathogens in rural Kenya (2024)
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Frequent and intense human-bat interactions occur in buildings of rural Kenya (2024)
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Kenyan Free-Tailed Bats Demonstrate Seasonal Birth Pulse Asynchrony with Implications for Virus Maintenance (2024)
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Roost selection by synanthropic bats in rural Kenya: implications for human–wildlife conflict and zoonotic pathogen spillover (2023)
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Anthropogenic structures promote frequent and intense contact between humans and bats in rural Kenya (2023)
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Movement Patterns of Two Bat Species Active During Winter in the Southeastern United States (2023)
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Global patterns of reported human-wildlife interactions in areas of land-use change (2023)
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Emergence activity at hibernacula differs among four bat species affected by white‐nose syndrome (2022)
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Winter torpor expression varies in four bat species with differential susceptibility to white-nose syndrome (2022)
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Feasting, not fasting: winter diets of cave hibernating bats in the United States (2021)
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Ecology of Neglected Rodent-Borne American Orthohantaviruses (2020)
Collaboration Network
Top Collaborators
- Roost selection by synanthropic bats in rural Kenya: implications for human–wildlife conflict and zoonotic pathogen spillover
- Frequent and intense human-bat interactions occur in buildings of rural Kenya
- Global patterns of reported human-wildlife interactions in areas of land-use change
- Current and future environmental suitability for bats hosting potential zoonotic pathogens in rural Kenya
- Modern building structures are a landscape‐level driver of bat–human exposure risk in Kenya
Showing 5 of 8 shared publications
- Roost selection by synanthropic bats in rural Kenya: implications for human–wildlife conflict and zoonotic pathogen spillover
- Frequent and intense human-bat interactions occur in buildings of rural Kenya
- Global patterns of reported human-wildlife interactions in areas of land-use change
- Current and future environmental suitability for bats hosting potential zoonotic pathogens in rural Kenya
- Modern building structures are a landscape‐level driver of bat–human exposure risk in Kenya
Showing 5 of 7 shared publications
- Roost selection by synanthropic bats in rural Kenya: implications for human–wildlife conflict and zoonotic pathogen spillover
- Frequent and intense human-bat interactions occur in buildings of rural Kenya
- Current and future environmental suitability for bats hosting potential zoonotic pathogens in rural Kenya
- Modern building structures are a landscape‐level driver of bat–human exposure risk in Kenya
- Anthropogenic structures promote frequent and intense contact between humans and bats in rural Kenya
Showing 5 of 7 shared publications
- Roost selection by synanthropic bats in rural Kenya: implications for human–wildlife conflict and zoonotic pathogen spillover
- Frequent and intense human-bat interactions occur in buildings of rural Kenya
- Current and future environmental suitability for bats hosting potential zoonotic pathogens in rural Kenya
- Modern building structures are a landscape‐level driver of bat–human exposure risk in Kenya
- Anthropogenic structures promote frequent and intense contact between humans and bats in rural Kenya
Showing 5 of 7 shared publications
- Feasting, not fasting: winter diets of cave hibernating bats in the United States
- Winter torpor expression varies in four bat species with differential susceptibility to white-nose syndrome
- Emergence activity at hibernacula differs among four bat species affected by white‐nose syndrome
- Movement Patterns of Two Bat Species Active During Winter in the Southeastern United States
- Feasting, not fasting: winter diets of cave hibernating bats in the United States
- Winter torpor expression varies in four bat species with differential susceptibility to white-nose syndrome
- Emergence activity at hibernacula differs among four bat species affected by white‐nose syndrome
- Movement Patterns of Two Bat Species Active During Winter in the Southeastern United States
- Frequent and intense human-bat interactions occur in buildings of rural Kenya
- Anthropogenic structures promote frequent and intense contact between humans and bats in rural Kenya
- Current and future environmental suitability for bats hosting potential zoonotic pathogens in rural Kenya
- New parajeilongviruses detected in bats but not in humans: assays for screening and diagnostic purposes
- Feasting, not fasting: winter diets of cave hibernating bats in the United States
- Feasting, not fasting: winter diets of cave hibernating bats in the United States
- Emergence activity at hibernacula differs among four bat species affected by white‐nose syndrome
- Global patterns of reported human-wildlife interactions in areas of land-use change
- Global patterns of reported human-wildlife interactions in areas of land-use change
- Current and future environmental suitability for bats hosting potential zoonotic pathogens in rural Kenya
- Current and future environmental suitability for bats hosting potential zoonotic pathogens in rural Kenya
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