Department of Entomology, Texas A&M University, College Station, TX 77845, USA.
Pest Manag Sci. 2013 Sep;69(9):1061-5. doi: 10.1002/ps.3467. Epub 2013 Feb 1.
The factors contributing to the current resurgence of bed bug Cimex lectularius L. populations across the United States and elsewhere include, among others, the development of resistance to chemical insecticides and population management practices. This has led to the development and attempted refinement of many non-chemical control methods that contribute to an IPM approach to solving the current bed bug population density increase in urban dwellings. One such approach is the use of heat in the form of steam to provide an effective mechanism for controlling localized infestations of bed bugs.
The work reported herein was designed to refine our understanding of the duration of bed bug/steam contact necessary to affect mortality of bed bugs in laboratory trials. Beg bug eggs, nymphs and adults were exposed to three steam treatment exposure periods in these trials. Mean percentage mortality of bed bug eggs was 100% (regardless of duration of exposure), and that of nymphs and adults ranged from 88.0 to 94.0%. Survivorship of nymphs and adults in the trials was the result of experimental protocol restrictions that would not usually be associated with actual pest management efforts.
The treatment equipment used in these trials is portable and relatively inexpensive and represents a non-chemical means of killing all life stages of bed bugs. While this method would likely be seen as an inefficient means of remediating a mature bed bug infestation within a structure, it does represent a practical component of integrated management of this pest insect.
导致臭虫 Cimex lectularius L. 在美国和其他地区的种群数量再次增加的因素包括对化学杀虫剂的抗性发展和种群管理实践等。这导致了许多非化学控制方法的发展和尝试改进,这些方法为解决城市住宅中当前臭虫种群密度增加的问题提供了综合虫害管理(IPM)方法。其中一种方法是使用蒸汽形式的热量,为控制臭虫的局部滋生提供有效的机制。
本文所述的工作旨在深入了解臭虫/蒸汽接触的持续时间对实验室试验中臭虫死亡率的影响。在这些试验中,臭虫卵、若虫和成虫暴露于三种蒸汽处理暴露期。臭虫卵的平均死亡率为 100%(无论暴露时间长短),若虫和成虫的死亡率范围为 88.0%至 94.0%。若虫和成虫在试验中的存活率是由于实验方案限制造成的,这些限制通常与实际的害虫管理工作无关。
这些试验中使用的处理设备便携且相对便宜,是一种杀死臭虫所有生命阶段的非化学方法。虽然这种方法在处理结构内成熟的臭虫滋生方面可能被视为低效手段,但它确实代表了对这种害虫昆虫进行综合管理的一个实际组成部分。