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Design and testing of novel lethal ovitrap to reduce populations of Aedes mosquitoes: Community-based participatory research between industry, academia and communities in Peru and Thailand

  • Valerie A. Paz-Soldan
  • , Josh Yukich
  • , Amara Soonthorndhada
  • , Maziel Giron
  • , Charles S. Apperson
  • , Loganathan Ponnusamy
  • , Coby Schal
  • , Amy C. Morrison
  • , Joseph Keating
  • , Dawn M. Wesson
  • Tulane University School of Public Health and Tropical Medicine
  • Institute for Population and Social Research, Mahidol University
  • San Jose State University
  • North Carolina State University
  • University of California, Davis

Research output: Contribution to journalArticlepeer-review

25 Scopus citations

Abstract

Background: Dengue virus (and Chikungunya and Zika viruses) is transmitted by Aedes aegypti and Aedes albopictus mosquitoes and causes considerable human morbidity and mortality. As there is currently no vaccine or chemoprophylaxis to protect people from dengue virus infection, vector control is the only viable option for disease prevention. The purpose of this paper is to illustrate the design and placement process for an attractive lethal ovitrap to reduce vector populations and to describe lessons learned in the development of the trap. Methods: This study was conducted in 2010 in Iquitos, Peru and Lopburi Province, Thailand and used an iterative community-based participatory approach to adjust design specifications of the trap, based on community members' perceptions and feedback, entomological findings in the lab, and design and research team observations. Multiple focus group discussions (FGD) were held over a 6 month period, stratified by age, sex and motherhood status, to inform the design process. Trap testing transitioned from the lab to within households. Results: Through an iterative process of working with specifications from the research team, findings from the laboratory testing, and feedback from FGD, the design team narrowed trap design options from 22 to 6. Comments from the FGD centered on safety for children and pets interacting with traps, durability, maintenance issues, and aesthetics. Testing in the laboratory involved releasing groups of 50 gravid Ae. aegypti in walk-in rooms and assessing what percentage were caught in traps of different colors, with different trap cover sizes, and placed under lighter or darker locations. Two final trap models were mocked up and tested in homes for a week; one model was the top choice in both Iquitos and Lopburi. Discussion: The community-based participatory process was essential for the development of novel traps that provided effective vector control, but also met the needs and concerns of community members.

Original languageEnglish
Article numbere0160386
JournalPLoS ONE
Volume11
Issue number8
DOIs
StatePublished - Aug 2016

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being
  2. SDG 16 - Peace, Justice and Strong Institutions
    SDG 16 Peace, Justice and Strong Institutions

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