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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Remote sensing of chlorophyll a, chlorophyll b, chlorophyll a+b, and total carotenoid content in eucalyptus leaves
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Remote sensing of chlorophyll a, chlorophyll b, chlorophyll a+b, and total carotenoid content in eucalyptus leaves

机译:遥感桉树叶片中的叶绿素a,叶绿素b,叶绿素a + b和总类胡萝卜素含量

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Algorithms based on reflectance band ratios have been developed for the remote estimation of chlorophyll a, chlorophyll b, chlorophyll a+b, and total carotenoid content of Eucalyptus leaves. Reflectance spectra over the 400-2500 nm range with a spectral resolution of 2 nm and the content of chlorophylls a, b, a+b, and total carotenoids were determined for leaves from several Eucalyptus species covering a wide range of chlorophyll a content (0.0121-0.0435 mg/cm(2)). Maximum sensitivity of reflectance to variation in pigment content was found in the green wavelength region at 550 nn and at 708 nun in the far-red wavelengths. The reflectance in the main pigment absorption regions in the blue (400-500 nm) and red (660-690 nm) wavelengths proved to be insensitive to variation in pigment content. The ratio R672/(R550XR708) correlated best with chlorophyll a, chlorophyll a+b, and total carotenoid contents. The ratio R672/R550 correlated best with chlorophyll b content. Reflectance ratios involving near infrared bands such as R750/R550 and R750/R700 did not correlate well with pigment content. This was due to the differential scattering effects of the wide range of young and mature leaf samples. A method was developed for adjusting all spectra to the same level of scatter. The near-infrared-based reflectance ratios from the scatter adjusted spectra showed high sensitivity to pigment content. The ratio R860/(R550XR708) from the scatter adjusted spectra correlated best with chlorophyll a, chlorophyll a+b, and total carotenoid contents, while R860/R550 correlated best with chlorophyll b content. The newly developed algorithms were tested on a validation data set and allowed accurate estimates of leaf pigment content. The pigment contents estimated by the ratios from untransformed spectra, R672/(R550XR708) and R672/R550, were found to be not significantly different from the estimates obtained using the scatter-adjusted reflectance ratios, R860/(R550XR708) and R860/R550. (C) Elsevier Science Inc., 1998. [References: 35]
机译:已经开发了基于反射带比率的算法,用于远程估计桉树叶的叶绿素a,叶绿素b,叶绿素a + b和总类胡萝卜素含量。在400-2500 nm范围内的反射光谱中,光谱分辨率为2 nm,测定了几种桉树种类的叶片中叶绿素a,b,a + b和总类胡萝卜素的含量,涵盖了广泛的叶绿素a含量(0.0121 -0.0435 mg / cm(2))。在远红外波长的550 nn和708 nun的绿色波长区域中发现反射率对颜料含量变化的最大灵敏度。在蓝色(400-500 nm)和红色(660-690 nm)波长的主要颜料吸收区域中的反射率被证明对颜料含量的变化不敏感。 R672 /(R550XR708)之比与叶绿素a,叶绿素a + b和总类胡萝卜素含量相关性最好。 R672 / R550之比与叶绿素b含量最相关。 R750 / R550和R750 / R700等近红外波段的反射率与颜料含量没有很好的相关性。这是由于各种年轻和成熟叶片样品的差异散射效应所致。开发了一种将所有光谱调整到相同散射水平的方法。来自散射调整光谱的基于近红外的反射比显示出对颜料含量的高灵敏度。散射调整光谱中的比率R860 /(R550XR708)与叶绿素a,叶绿素a + b和总类胡萝卜素含量最相关,而R860 / R550与叶绿素b含量最相关。新开发的算法在验证数据集上进行了测试,并可以准确估算叶片色素含量。发现由未转化光谱的比率R672 /(R550XR708)和R672 / R550估计的颜料含量与使用散射调整的反射率比率R860 /(R550XR708)和R860 / R550获得的估计值没有显着差异。 (C)Elsevier Science Inc.,1998年。[参考:35]

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