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Hyperspectral Analysis of Leaf Pigments and Nutritional Elements in Tallgrass Prairie Vegetation

机译:高草草原植被叶片色素和营养成分的高光谱分析

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Understanding the spatial distribution of forage quality is important to address critical research questions in grassland science. Due to its efficiency and accuracy, there has been a widespread interest in mapping the canopy vegetation characteristics using remote sensing methods. In this study, foliar chlorophylls, carotenoids, and nutritional elements across multiple tallgrass prairie functional groups were quantified at the leaf level using hyperspectral analysis in the region of 470–800 nm, which was expected to be a precursor to further remote sensing of canopy vegetation quality. A method of spectral standardization was developed using a form of the normalized difference, which proved feasible to reduce the interference from background effects in the leaf reflectance measurements. Chlorophylls and carotenoids were retrieved through inverting the physical model PROSPECT 5. The foliar nutritional elements were modeled empirically. Partial least squares regression was used to build the linkages between the high-dimensional spectral predictor variables and the foliar biochemical contents. Results showed that the retrieval of leaf biochemistry through hyperspectral analysis can be accurate and robust across different tallgrass prairie functional groups. In addition, correlations were found between the leaf pigments and nutritional elements. Results provided insight into the use of pigment-related vegetation indices as the proxy of plant nutrition quality.
机译:了解草料质量的空间分布对于解决草地科学中的关键研究问题很重要。由于其效率和准确性,使用遥感方法绘制冠层植被特征已引起广泛关注。在这项研究中,使用高光谱分析在470-800 nm范围内,在叶片水平上定量了多个高草草原功能组之间的叶绿素,类胡萝卜素和营养元素,这有望进一步遥感冠层植被质量。使用归一化差异的形式开发了一种光谱标准化方法,证明了减少叶片反射率测量中背景效应的干扰是可行的。通过倒置物理模型PROSPECT 5可以获取叶绿素和类胡萝卜素。根据经验对叶面的营养成分进行建模。偏最小二乘回归用于建立高维光谱预测变量与叶生化含量之间的联系。结果表明,通过高光谱分析对叶片生化的检索在不同的草丛草原功能组之间可以是准确而稳健的。另外,在叶色素和营养元素之间发现相关性。结果提供了对使用色素相关植被指数作为植物营养质量指标的见解。

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