Dewsnup M Andrew, Faraji Ary, White Gregory S, Bibbs Christopher S
Salt Lake City Mosquito Abatement District, 2215 North 2200 West, Salt Lake City, UT 84116, USA.
J Insect Sci. 2023 Jul 1;23(4). doi: 10.1093/jisesa/iead072.
Tools for rearing hematophagous insects, such as mosquitoes (Diptera: Culicidae), in an insectary are essential for research and operational evaluations in vector biology and control. There is an abundance of low-cost options for practitioners without conventional infrastructure. However, few midrange options exist that provide a balance of efficiency and low material waste. We present here a reproducible design for an electrically powered blood-feeding device that offers long-term reusability, low material waste, and customizability for different species or experiments. The limitation is the requirement for electricity, but the gain is a simple, low-skill device that can be modified as needed. To validate the design, assessments of feeding angle and blood-feeding success were compared between the Salt Lake City Mosquito Abatement District artificial membrane feeder (SLAM) and a commercial system (Hemotek). Engorgement in Aedes aegypti (80-90%), Culex pipiens (50-80%), and Culex tarsalis (30-75%) was similar between the 2 units, resulting in nearly identical fecundity outcomes between devices. Additionally, 45° angles were more successful, generally, than presenting the feeders flat or vertical to the mosquitoes (df3,48, P = 1.014 × 10-15). This angle is simple to present with the SLAM device. Materials for in-house reproduction of the SLAM system are now widely available in regions with access to e-commerce and shipped goods. This results in a device schematic that should fit well into a relatively modular, do-it-yourself paradigm where the practitioner needs only to assemble some materials without complex engineering. This article provides schematics, cost comparison, and validation of the in-house-made SLAM system.
在昆虫饲养室饲养吸血昆虫(如蚊子,双翅目:蚊科)的工具对于媒介生物学和控制方面的研究及操作评估至关重要。对于没有传统基础设施的从业者而言,有大量低成本的选择。然而,很少有中等价位的选项能在效率和低材料浪费之间取得平衡。我们在此展示一种电动采血装置的可重复设计,该装置具有长期可重复使用性、低材料浪费以及针对不同物种或实验的可定制性。其局限性在于需要电力,但好处是这是一个简单、对技术要求低的装置,可根据需要进行修改。为验证该设计,比较了盐湖城灭蚊区人工膜饲器(SLAM)和商业系统(Hemotek)在喂食角度和采血成功率方面的评估。埃及伊蚊(80 - 90%)、致倦库蚊(50 - 80%)和骚扰库蚊(30 - 75%)在这两种装置中的饱血率相似,导致两种装置的繁殖力结果几乎相同。此外,一般来说,45°角比将饲器平放在蚊子面前或垂直放置更成功(自由度3,48,P = 1. × 10-15)。这个角度用SLAM装置很容易实现。在可进行电子商务和货物运输的地区,现在广泛可获取用于内部复制SLAM系统的材料。这就产生了一个装置原理图,它应该很适合相对模块化的自己动手模式,在此模式下,从业者只需组装一些材料,无需复杂的工程技术。本文提供了自制SLAM系统的原理图、成本比较和验证。