Field testing of a lightweight, inexpensive, and customisable 3D-printed mosquito light trap in the UK

Scientific Reports
Tomonori HoshiJames G Logan

Abstract

Mosquito surveillance is a fundamental component of planning and evaluating vector control programmes. However, logistical and cost barriers can hinder the implementation of surveillance, particularly in vector-borne disease-endemic areas and in outbreak scenarios in remote areas where the need is often most urgent. The increasing availability and reduced cost of 3D printing technology offers an innovative approach to overcoming these challenges. In this study, we assessed the field performance of a novel, lightweight 3D-printed mosquito light trap baited with carbon dioxide (CO2) in comparison with two gold-standard traps, the Centers for Disease Control and Prevention (CDC) light trap baited with CO2, and the BG Sentinel 2 trap with BG-Lure and CO2. Traps were run for 12 nights in a Latin square design at Rainham Marshes, Essex, UK in September 2018. The 3D-printed trap showed equivalent catch rates to the two commercially available traps. The 3D-printed trap designs are distributed free of charge in this article with the aim of assisting entomological field studies across the world.

References

Sep 23, 2006·Vector Borne and Zoonotic Diseases·Maria A Diuk-WasserDurland Fish
Oct 6, 2006·Journal of the American Mosquito Control Association·Ulla KrockelMartin Geier
Sep 6, 2012·Epidemiology and Infection·V A BrugmanA C Breed
Nov 30, 2013·The British Journal of Ophthalmology·Carl SchubertLarry A Donoso
Jun 14, 2014·Parasites & Vectors·Renke LühkenAndreas Krüger
Dec 17, 2015·Parasites & Vectors·Patchara SriwichaiJetsumon Sattabongkot
Jan 31, 2017·The Lancet Infectious Diseases·Jolyon M MedlockSteve Leach
Jun 26, 2017·Parasites & Vectors·Thom DallimoreClare Strode

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Citations

Jun 30, 2021·Journal of the American Mosquito Control Association·Drew David Reinbold-Wasson, Michael Hay Reiskind

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Software Mentioned

R
Design Spark Mechanical
FreeCAD
RStudio
QGIS

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