Groupement d'Intérêt Public Cyclotron Océan Indien (CYROI), 2 rue Maxime Rivière, 97490 Ste Clotilde, France.
Symbiosis Technologies for Insect Control (SymbioTIC), Plateforme de Recherche Cyroi, 2 rue Maxime Rivière, 97490 Ste Clotilde, France.
J Med Entomol. 2023 Jul 12;60(4):828-832. doi: 10.1093/jme/tjad050.
The production of mosquitoes for control programs or basic research is facilitated by the standardization of rearing conditions allowing the daily manipulation of thousands of individuals. It is crucial to develop mechanical or electronic systems for controlling the density of mosquitoes at each development stage with the aim of reducing costs, time, and human errors. We present herein an automatic mosquito counter using a recirculating water system allowing rapid and reliable counting of pupae without detectable increased mortality. Using Aedes albopictus pupae, we determined the density of pupae and the time of counting for which the device is most accurate, and evaluated the time saved using this device. Lastly, we discuss how this mosquito pupae counter can be useful in small-scale or mass-rearing contexts enabling a number of applications for research purposes as well as operational mosquito control programs.
为了控制项目或基础研究而生产蚊子,通过标准化的饲养条件来促进,这允许每天处理数千只个体。开发机械或电子系统来控制每个发育阶段的蚊子密度至关重要,目的是降低成本、时间和人为错误。本文介绍了一种使用循环水系统的自动蚊子计数器,它可以快速可靠地计数蛹,而不会导致可检测的死亡率增加。我们使用白纹伊蚊蛹来确定蛹的密度和计数时间,以确定设备最准确的范围,并评估使用该设备节省的时间。最后,我们讨论了这种蚊子蛹计数器如何在小规模或大规模饲养的情况下发挥作用,为研究目的以及运营性的蚊子控制项目提供了多种应用。