Gedeon Csongor I, Flórián Norbert, Liszli Péter, Hambek-Oláh Beáta, Bánszegi Oxána, Schellenberger Judit, Dombos Miklós
Institute for Soil Sciences and Agricultural Chemistry, Centre for Agricultural Research, Hungarian Academy of Sciences, Herman Ottó út 15, H-1022 Budapest, Hungary.
Deákdelta Ltd. Irinyi János u. 1, H-6727 Szeged, Hungary.
Sensors (Basel). 2017 Aug 1;17(8):1757. doi: 10.3390/s17081757.
Methods to estimate density of soil-dwelling arthropods efficiently, accurately and continuously are critical for investigating soil biological activity and evaluating soil management practices. Soil-dwelling arthropods are currently monitored manually. This method is invasive, and time- and labor-consuming. Here we describe an infrared opto-electronic sensor for detection of soil microarthropods in the size range of 0.4-10 mm. The sensor is built in a novel microarthropod trap designed for field conditions. It allows automated, on-line, in situ detection and body length estimation of soil microarthropods. In the opto-electronic sensor the light source is an infrared LED. Two plano-convex optical lenses are placed along the virtual optical axis. One lens on the receiver side is placed between the observation space at 0.5-1 times its focal length from the sensor, and another emitter side lens is placed between the observation space and the light source in the same way. This paper describes the setup and operating mechanism of the sensor and the control unit, and through basic tests it demonstrates its potential in automated detection of soil microarthropods. The sensor may be used for monitoring activities, especially for remote observation activities in soil and insect ecology or pest control.
高效、准确且持续地估算土壤节肢动物密度的方法对于研究土壤生物活性和评估土壤管理措施至关重要。目前,土壤节肢动物是通过人工监测的。这种方法具有侵入性,且耗时耗力。在此,我们描述一种用于检测尺寸范围在0.4 - 10毫米的土壤微型节肢动物的红外光电传感器。该传感器内置于一种专为野外条件设计的新型微型节肢动物诱捕器中。它能够对土壤微型节肢动物进行自动、在线、原位检测以及体长估算。在光电传感器中,光源是一个红外发光二极管。沿着虚拟光轴放置两个平凸透镜。接收侧的一个透镜放置在距离传感器0.5 - 1倍焦距的观测空间之间,发射侧的另一个透镜以相同方式放置在观测空间和光源之间。本文描述了该传感器和控制单元的设置及运行机制,并通过基础测试展示了其在土壤微型节肢动物自动检测方面的潜力。该传感器可用于监测活动,特别是在土壤和昆虫生态学或害虫防治中的远程观测活动。