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Specim IQ: Evaluation of a New, Miniaturized Handheld Hyperspectral Camera and Its Application for Plant Phenotyping and Disease Detection

Sensors · 2 Feb 2018 · 10.3390/s18020441

Abstract

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.

Plant phenotyping relevance

携帯型ハイパースペクトルカメラの導入、測定パイプライン、既存装置との性能比較を中心に扱い、植物の病害・ストレス状態を評価するため、植物フェノタイピング手法として適格。

abstractThe present study introduces the novel hyperspectral camera Specim IQ from Specim (Oulu, Finland).
abstractThis 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.
abstractCase 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.

Code and data availability

The supplied blocks describe the Specim IQ sensor evaluation, Arabidopsis mutant case study, and barley powdery mildew case study, but contain no public phenotype datasets, hyperspectral image deposits, author analysis code, or trained models with availability statements or URLs. The only URL present is the CC BY 4.0.0

No evidence-backed public reproduction asset is currently recorded.

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