Genoud Adrien P, Saha Topu, Williams Gregory M, Thomas Benjamin P
Department of Physics, New Jersey Institute of Technology, Newark, NJ USA.
Center for Vector Biology, Rutgers University, New Brunswick, NJ USA.
Appl Phys B. 2023;129(2):26. doi: 10.1007/s00340-023-07973-5. Epub 2023 Jan 17.
Insects are major actors in Earth's ecosystems and their recent decline in abundance and diversity is alarming. The monitoring of insects is paramount to understand the cause of this decline and guide conservation policies. In this contribution, an infrared laser-based system is used to remotely monitor the biomass density of flying insects in the wild. By measuring the optical extinction caused by insects crossing the 36-m long laser beam, the Entomological Bistatic Optical Sensor System used in this study can evaluate the mass of each specimen. At the field location, between July and December 2021, the instrument made a total of 262,870 observations of insects for which the average dry mass was 17.1 mg and the median 3.4 mg. The daily average mass of flying insects per meter cube of air at the field location has been retrieved throughout the season and ranged between near 0 to 1.2 mg/m. Thanks to its temporal resolution in the minute range, daily variations of biomass density have been observed as well. These measurements show daily activity patterns changing with the season, as large increases in biomass density were evident around sunset and sunrise during Summer but not during Fall.
昆虫是地球生态系统中的主要角色,它们近期在数量和多样性上的下降令人担忧。对昆虫的监测对于理解这种下降的原因及指导保护政策至关重要。在本研究中,一种基于红外激光的系统被用于远程监测野外飞行昆虫的生物量密度。通过测量昆虫穿过36米长激光束所引起的光学消光,本研究中使用的昆虫学双基地光学传感器系统能够评估每个样本的质量。在实地,于2021年7月至12月期间,该仪器对昆虫进行了总共262,870次观测,这些昆虫的平均干质量为17.1毫克,中位数为3.4毫克。整个季节都获取了实地每立方米空气中飞行昆虫的日均质量,其范围在接近0至1.2毫克/立方米之间。由于其分钟级别的时间分辨率,还观测到了生物量密度的每日变化。这些测量结果显示,每日活动模式随季节变化,因为在夏季日落和日出前后生物量密度大幅增加,但秋季没有这种情况。