INRES-Plant Diseases and Plant Protection, University of Bonn, 53115 Bonn, Germany.
IBG-2, Forschungszentrum Jülich (FZJ), Jülich, 52428 Germany.
Sensors (Basel). 2018 Feb 2;18(2):441. doi: 10.3390/s18020441.
Hyperspectral imaging sensors are promising tools for monitoring crop plants or vegetation in different environments. Information on physiology, architecture or biochemistry of plants can be assessed non-invasively and on different scales. For instance, hyperspectral sensors are implemented for stress detection in plant phenotyping processes or in precision agriculture. Up to date, a variety of non-imaging and imaging hyperspectral sensors is available. The measuring process and the handling of most of these sensors is rather complex. Thus, during the last years the demand for sensors with easy user operability arose. The present study introduces the novel hyperspectral camera Specim IQ from Specim (Oulu, Finland). The Specim IQ is a handheld push broom system with integrated operating system and controls. Basic data handling and data analysis processes, such as pre-processing and classification routines are implemented within the camera software. This study provides an introduction into the measurement pipeline of the Specim IQ as well as a radiometric performance comparison with a well-established hyperspectral imager. Case studies for the detection of powdery mildew on barley at the canopy scale and the spectral characterization of Arabidopsis thaliana mutants grown under stressed and non-stressed conditions are presented.
高光谱成像传感器是监测不同环境中作物或植被的有前途的工具。可以非侵入性地和在不同尺度上评估植物的生理学、结构或生物化学信息。例如,高光谱传感器用于植物表型过程中的胁迫检测或精准农业中。迄今为止,有各种各样的非成像和成像高光谱传感器可供选择。这些传感器的测量过程和操作相当复杂。因此,近年来对具有易于用户操作的传感器的需求增加了。本研究介绍了来自 Specim(芬兰奥卢)的新型高光谱相机 Specim IQ。Specim IQ 是一种带有集成操作系统和控制的手持式推帚系统。基本的数据处理和数据分析过程,如预处理和分类例程,都在相机软件中实现。本研究介绍了 Specim IQ 的测量流程,以及与成熟的高光谱成像仪的辐射性能比较。在冠层尺度上检测大麦白粉病以及在胁迫和非胁迫条件下生长的拟南芥突变体的光谱特征的案例研究。