Rachel A. Taylor
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Risk Analyst
Formerly Arkansas Affiliated with University of Arkansas through 2023; recent publications list Animal and Plant Health Agency.
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Rachel A. Taylor's research interests encompass public health, disease modeling, and risk assessment. Her work has investigated the spread and drivers of West Nile virus in Europe, including the development of models to assess temperature suitability for its establishment in mosquito populations. Taylor has also examined microbial risks associated with food products, such as shiga-toxin producing E. coli in raw sheep's milk cheeses. Her research extends to health disparities, with publications analyzing trends in buprenorphine initiation in US emergency departments.
Further contributions include work on understanding disease progression and outcomes in pediatric patients with multisystem inflammatory syndrome, as well as developing semi-quantitative models for ranking the risk of exotic animal pathogen incursions into European Union member states. Taylor's scholarship metrics include an h-index of 19, with over 1,700 citations across approximately 70 publications. She has received federal funding for a doctoral dissertation research project focused on primate chewing function.
Metrics
- h-index: 19
- Publications: 70
- Citations: 1,727
Positions
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Risk Analyst 2017–presentAnimal and Plant Health Agency Epidemiological Sciences ORCID
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Risk AnalystUniversity of Arkansas at Fayetteville ORCID
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Postdoctoral Scholar 2014–2016University of South Florida Integrative Biology ORCID
Selected Publications
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Stress-induced nucleolar rejuvenation via chaperone-mediated segregation in a filamentous fungus (2026)
Federal Grants 1 $32,610 total
Collaboration Network
Top Collaborators
- Stress-induced nucleolar rejuvenation via chaperone-mediated segregation in a filamentous fungus
- Stress-induced nucleolar rejuvenation via chaperone-mediated segregation in a filamentous fungus
- Stress-induced nucleolar rejuvenation via chaperone-mediated segregation in a filamentous fungus
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