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首页> 外文期刊>Annali di Botanica >DEVELOPMENT OF FLUORESCENCE INDICES TO MINIMISE THE EFFECTS OF CANOPY STRUCTURAL PARAMETERS
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DEVELOPMENT OF FLUORESCENCE INDICES TO MINIMISE THE EFFECTS OF CANOPY STRUCTURAL PARAMETERS

机译:开发荧光指数以最小化冠层结构参数的影响

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Remote Sensing of Sun-Induced Chlorophyll Fluorescence is a research field of growing interest with the potential to provide an improved tool for monitoring plant status and photosynthetic function. The new satellite mission of European Space Agency (the FLuorescence EXplorer, FLEX) will provide the possibility to estimate canopy fluorescence from space at global level. However, remote sensing techniques allow measurement of the emitted fluorescence flux but do not provide a direct assessment of the fluorescence yield, which is the key variable linked to the physiological status of the plant. In this study, we investigate the impact of canopy structure on chlorophyll fluorescence by analysing the fluorescence emission in a thinning experiment in a corn field. It is shown that fluorescence and apparent fluorescence yield are well related with leaf area index and vegetation fractional cover, but when fluorescence is divided for a spectral vegetation index (considered as a proxy of structural parameters) the correlation is lost. This means that fluorescence indexes should be considered to take into account spatial and temporal variability of biophysical parameters for satellite studies and promising for plant status applications.
机译:太阳诱导的叶绿素荧光遥感是一个日益受到关注的研究领域,有潜力提供一种改进的工具来监测植物的状态和光合功能。欧洲航天局的新卫星任务(FLuorescence EXplorer,FLEX)将提供在全球范围内估算空间冠层荧光的可能性。但是,遥感技术可以测量发射的荧光通量,但不能直接评估荧光产量,而荧光产量是与植物生理状态相关的关键变量。在这项研究中,我们通过分析玉米田间伐试验中的荧光发射来研究冠层结构对叶绿素荧光的影响。结果表明,荧光和表观荧光产量与叶面积指数和植被覆盖度密切相关,但是当将荧光划分为光谱植被指数(被视为结构参数的代表)时,这种相关性就消失了。这意味着在进行卫星研究时应考虑荧光指数,以考虑到生物物理参数的时空变化,并有望用于植物状况应用。

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