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A Novel Approach for Deriving LAI of Salt Marsh Vegetation Using Structure From Motion and Multiangular Spectra

机译:一种新颖的含盐沼植被源于运动和多态光谱的新方法

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The leaf area index (LAI) is a structural parameter that plays a major role in modeling the exchange of energy, carbon dioxide, water, and other matter between plants and their surrounding environment. Direct means of measuring LAI are time-intensive and laborious, making indirect LAI retrieval methods desirable. In this study, we developed a method for retrieving structural metrics of erectophile plants that relies on open-source structure from motion software. We achieved this using a novel goniometer system to simultaneously retrieve high-resolution digital imagery and bidirectional spectroscopy measurements of Spartina alterniflora in a laboratory environment during both peak and late growing season. Retrieved LAI metrics correlated well with directional measurements of the Modified Chlorophyll Absorption Ratio Index 2 (MCARI2). Across all planting densities, the magnitude of the MCARI2 exhibited a high degree of variance, which depended on sensor viewing angle. MCARI2 values in the peak growing season were significantly higher. This result suggests that the MCARI2 metric is sensitive to seasonal changes in plant growth and senescence. We observed a high correlation between the LAI(contac)t values and the Total MCARI2 metric for the peak growth state plantings of R-2 = 0.9, suggesting that summing multiple directional measurements of MCARI2 potentially provides a more accurate assessment of LAI and compensates for observed variance in MCARI2 as a function of sensor orientation. Future work will focus on validating the observed effects across a broader range of plant species.
机译:叶面积指数(LAI)是一种结构参数,在植物及其周围环境之间建模能量,二氧化碳,水和其他物质的建模中起主要作用。测量赖的直接手段是延时且艰苦的,使赖莱检索方法是可取的。在这项研究中,我们开发了一种检索勃起植物结构度量的方法,依赖于运动软件的开源结构。我们使用一种新型测筒仪系统实现了这一点,同时在峰值和晚期生长季节期间在实验室环境中同时检索高分辨率数字图像和双向光谱测量。检索到的Lai度量与改性叶绿素吸收比率2(Mcari2)的定向测量相比好。在所有种植密度中,Mcari2的大小表现出高度方差,这取决于传感器视角。峰值生长季节的Mcari2值显着高。该结果表明,Mcari2度量对植物生长和衰老的季节性变化敏感。我们观察到LAI(CONTAC)T值与R-2 = 0.9的峰值生长状态种植的总MCARI2度量之间的高相关性,表明MCARI2的求和概率可能提供更准确的赖斯并补偿观察Mcari2的差异作为传感器方向的函数。未来的工作将专注于验证在更广泛的植物种类上的观察到的效果。

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