Department of Physics, Lund University, Lund, Sweden.
Department of Biology, Lund University, Lund, Sweden.
J Biophotonics. 2021 Apr;14(4):e202000420. doi: 10.1002/jbio.202000420. Epub 2020 Dec 14.
Forestry is raising concern about the outbreaks of European spruce bark beetle, Ips typographus, causing extensive damage to the spruce forest and timber values. Precise monitoring of these beetles is a necessary step towards preventing outbreaks. Current commercial monitoring methods are catch-based and lack in both temporal and spatial resolution. In this work, light scattering from beetles is characterized, and the feasibility of entomological lidar as a tool for long-term monitoring of bark beetles is explored. Laboratory optical properties, wing thickness, and wingbeat frequency of bark beetles are reported, and these parameters can infer target identity in lidar data. Lidar results from a Swedish forest with controlled bark beetle release event are presented. The capability of lidar to simultaneously monitor both insects and a pheromone plume mixed with chemical smoke governing the dispersal of many insects is demonstrated. In conclusion, entomological lidar is a promising tool for monitoring bark beetles.
林业界对欧洲云杉树皮甲虫(Ips typographus)的爆发感到担忧,这种甲虫会对云杉林和木材价值造成广泛的破坏。精确监测这些甲虫是预防爆发的必要步骤。目前的商业监测方法基于捕获,在时间和空间分辨率上都存在不足。在这项工作中,对甲虫的光散射进行了特征描述,并探讨了昆虫激光雷达作为一种长期监测树皮甲虫的工具的可行性。报告了树皮甲虫的实验室光学特性、翼厚和翼拍频率,这些参数可以在激光雷达数据中推断目标身份。展示了在瑞典森林中进行的受控树皮甲虫释放事件的激光雷达结果。证明了激光雷达能够同时监测昆虫和与化学烟雾混合的信息素羽流的能力,这种信息素羽流控制着许多昆虫的扩散。总之,昆虫激光雷达是一种很有前途的监测树皮甲虫的工具。