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叶片水平的多光谱荧光和反射成像及其可能的应用。

Multispectral fluorescence and reflectance imaging at the leaf level and its possible applications.

作者信息

Lenk Sándor, Chaerle Laury, Pfündel Erhard E, Langsdorf Gabriele, Hagenbeek Dik, Lichtenthaler Hartmut K, Van Der Straeten Dominique, Buschmann Claus

机构信息

Botanical Institute 2, University of Karlsruhe, Kaiserstrasse 12, D-76128 Karlsruhe, Germany.

出版信息

J Exp Bot. 2007;58(4):807-14. doi: 10.1093/jxb/erl207. Epub 2006 Nov 21.

Abstract

Images taken at different spectral bands are increasingly used for characterizing plants and their health status. In contrast to conventional point measurements, imaging detects the distribution and quantity of signals and thus improves the interpretation of fluorescence and reflectance signatures. In multispectral fluorescence and reflectance set-ups, images are separately acquired for the fluorescence in the blue, green, red, and far red, as well as for the reflectance in the green and in the near infrared regions. In addition, 'reference' colour images are taken with an RGB (red, green, blue) camera. Examples of imaging for the detection of photosynthetic activity, UV screening caused by UV-absorbing substances, fruit quality, leaf tissue structure, and disease symptoms are introduced. Subsequently, the different instrumentations used for multispectral fluorescence and reflectance imaging of leaves and fruits are discussed. Various types of irradiation and excitation light sources, detectors, and components for image acquisition and image processing are outlined. The acquired images (or image sequences) can be analysed either directly for each spectral range (wherein they were captured) or after calculating ratios of the different spectral bands. This analysis can be carried out for different regions of interest selected manually or (semi)-automatically. Fluorescence and reflectance imaging in different spectral bands represents a promising tool for non-destructive plant monitoring and a 'road' to a broad range of identification tasks.

摘要

在不同光谱波段拍摄的图像越来越多地用于表征植物及其健康状况。与传统的点测量不同,成像可检测信号的分布和数量,从而改善对荧光和反射特征的解读。在多光谱荧光和反射装置中,分别获取蓝色、绿色、红色和远红色荧光以及绿色和近红外区域反射率的图像。此外,用RGB(红、绿、蓝)相机拍摄“参考”彩色图像。介绍了用于检测光合活性、紫外线吸收物质引起的紫外线屏蔽、果实品质、叶片组织结构和病害症状的成像示例。随后,讨论了用于叶片和果实多光谱荧光和反射成像的不同仪器。概述了各种类型的辐照和激发光源、探测器以及图像采集和图像处理组件。采集到的图像(或图像序列)既可以直接针对每个光谱范围(图像在此光谱范围内采集)进行分析,也可以在计算不同光谱波段的比率之后进行分析。这种分析可以针对手动或(半)自动选择的不同感兴趣区域进行。不同光谱波段的荧光和反射成像代表了一种用于植物无损监测的有前途的工具,也是通向广泛识别任务的一条“道路”。

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