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3D mosquito screens to create window double screen traps for mosquito control

机译:3D防蚊纱窗可创建用于防蚊的双窗口捕蚊器

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摘要

Background: Mosquitoes are vectors for many diseases such as malaria. Insecticide-treated bed nets and indoor residual spraying of insecticides are the principal malaria vector control tools used to prevent malaria in the tropics. Other interventions aim at reducing man-vector contact. For example, house screening provides additive or synergistic effects to other implemented measures. We used commercial screen materials made of polyester, polyethylene or polypropylene to design novel mosquito screens that provide remarkable additional benefits to those commonly used in house screening. The novel design is based on a double screen setup made of a screen with 3D geometric structures parallel to a commercial mosquito screen creating a trap between the two screens. Owing to the design of the 3D screen, mosquitoes can penetrate the 3D screen from one side but cannot return through the other side, making it a unidirectional mosquito screen. Therefore, the mosquitoes are trapped inside the double screen system. The permissiveness of both sides of the 3D screens for mosquitoes to pass through was tested in a wind tunnel using the insectary strain of Anopheles stephensi. Results: Among twenty- five tested 3D screen designs, three designs from the cone, prism, or cylinder design groups were the most efficient in acting as unidirectional mosquito screens. The three cone-,prism-, and cylinder-based screens allowed, on average, 92, 75 and 64% of Anopheles stephensi mosquitoes released into the wind tunnel to penetrate the permissive side and 0, 0 and 6% of mosquitoes to escape through the non-permissive side, respectively. Conclusions: A cone- based 3D screen fulfilled the study objective. It allowed capturing 92% of mosquitoes within the double screen setup inside the wind tunnel and blocked 100% from escaping. Thus, the cone- based screen effectively acted as a unidirectional mosquito screen. This 3D screen-based trap design could therefore be used in house screening as a means of avoiding infective bites and reducing mosquito population size.
机译:背景:蚊子是许多疾病(例如疟疾)的媒介。经过杀虫剂处理的蚊帐和室内喷洒的杀虫剂是用于在热带地区预防疟疾的主要疟疾媒介控制工具。其他干预措施旨在减少人与媒介的接触。例如,房屋筛选可为其他已实施的措施提供累加或协同作用。我们使用由聚酯,聚乙烯或聚丙烯制成的商业筛网材料来设计新颖的蚊帐,这些蚊帐为房屋筛查中常用的那些提供了显着的额外好处。新颖的设计基于双屏设置,该双屏设置由具有3D几何结构的屏幕组成,该屏幕与商用蚊帐平行,在两个屏幕之间形成了陷阱。由于3D屏幕的设计,蚊子可以从一侧穿透3D屏幕,但不能从另一侧返回,从而使其成为单向蚊屏。因此,蚊子被困在双筛系统中。使用斯蒂芬斯按蚊(Anopheles stephensi)的昆虫应变,在风洞中测试了3D屏幕两侧允许蚊子通过的允许性。结果:在经过测试的25种3D屏幕设计中,圆锥,棱镜或圆柱设计组中的三种设计在单向蚊帐中的功效最高。三个基于圆锥,棱镜和圆柱的筛网平均允许92%,75%和64%的按蚊按蚊进入风洞,以渗透到允许的一侧,使0、0和6%的蚊子通过不允许的一面。结论:基于圆锥体的3D屏幕满足了研究目的。它可以捕获风洞内部双屏设置内92%的蚊子,并阻止100%的逸出。因此,基于锥体的屏幕有效地充当了单向蚊帐。因此,这种基于3D屏幕的陷阱设计可用于房屋筛选,以避免感染性叮咬和减小蚊虫种群的大小。

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