Abstract
The number of tick-borne disease cases continues to rise in the United States, with Lyme disease the most frequently reported vector-borne disease nationally. Practical and effective tick control tools and strategies are needed to reduce tick encounters and tick-borne disease risk. Tick management tubes have shown varying efficacy when used as part of a tick management plan. To evaluate factors contributing to the efficacy of tick management tubes, this study assessed changes in tick tube deployment on tick burden on wild-caught Peromyscus mice, a primary reservoir for the bacterium causing Lyme disease, in Pennsylvania from 2021 to 2023. Over 2 years, tick tubes were deployed starting at different times of the year, with cotton removal from the tubes assessed every 2 weeks from April to November and tick burden on wild-caught mice assessed every 2 months from April to October of each year.The effect of distance between tick management tubes was assessed in year 3 of this study, with mouse tick burden assessed pre- and post-treatment with tick tubes at varying intervals in a field setting. There was a significant reduction in mouse tick burden between treated and control transects, and pre- and post-treatment transects. Tick tube distance did not affect cotton removal or tick burden on mice. Still, cotton removal was highest in September–October, and amount removed increased the longer tick tubes were deployed in the field, highlighting the long-term benefits of using tick tubes as part of an integrated tick management plan. Future investigations to evaluate the impact of tick management tubes on tick nymph density and infection would be valuable for assessing the effectiveness of tick management tubes in reducing tick bite risk.
| Original language | English |
|---|---|
| Pages (from-to) | 1459-1469 |
| Number of pages | 11 |
| Journal | Journal of Medical Entomology |
| Volume | 61 |
| Issue number | 6 |
| DOIs | |
| State | Published - Nov 1 2024 |
Bibliographical note
Publisher Copyright:© The Author(s) 2024. Published by Oxford University Press on behalf of Entomological Society of America. All rights reserved.
Funding
The authors would like to thank Mia Esoldo, Jesse Evans, Caroline Stickler, Anya Watts, Baxter Bierbaum, Desmyn Moore, Jillian Henok, Ashley Russo, Mckinley Morris, Allison Kelly, Chloe Roberts, and Anna-Marie Wise for their contributions during fieldwork conducted for this project. We thank the Pennsylvania Game Commission for the use of the Pennsylvania State Game Lands and Penn State for the use of Penn State properties for this research. Kylie D. Green (KDG) and Hannah S. Tiffin (HST) contributed equally and are considered co-first authors of the final manuscript. The study was originally conceived by Erika T. Machtinger (ETM) and study design contributions were made by ETM, KDG, and HST. Data were collected by KDG, and HST; statistical analyses were performed by Edwin R. Burgess IV (ERB); and initial draft was written by KDG and HST, with critical revisions and review of final manuscript provided by all authors. All authors contributed to the final interpretations of data analyses and have read and approved the manuscript. Funding was graciously provided by Thermacell\u00A9 Repellents, Inc. to ETM to support tick ecology research.
| Funders |
|---|
| Pennsylvania Game Commission |
Keywords
- blacklegged tick
- integrated vector management
- Ixodes scapularis
- Lyme disease
- Peromyscus
- tick control
- tick-borne disease
ASJC Scopus subject areas
- General Medicine
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