Title of article
PROSPECT-4 and 5: Advances in the leaf optical properties model separating photosynthetic pigments
Author/Authors
Feret، نويسنده , , Jean-Baptiste and François، نويسنده , , Christophe and Asner، نويسنده , , Gregory P. and Gitelson، نويسنده , , Anatoly A. and Martin، نويسنده , , Roberta E. and Bidel، نويسنده , , Luc P.R. and Ustin، نويسنده , , Susan L. and le Maire، نويسنده , , Guerric and Jacquemoud، نويسنده , , Stéphane، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2008
Pages
14
From page
3030
To page
3043
Abstract
The PROSPECT leaf optical model has, to date, combined the effects of photosynthetic pigments, but a finer discrimination among the key pigments is important for physiological and ecological applications of remote sensing. Here we present a new calibration and validation of PROSPECT that separates plant pigment contributions to the visible spectrum using several comprehensive datasets containing hundreds of leaves collected in a wide range of ecosystem types. These data include leaf biochemical (chlorophyll a, chlorophyll b, carotenoids, water, and dry matter) and optical properties (directional–hemispherical reflectance and transmittance measured from 400 nm to 2450 nm). We first provide distinct in vivo specific absorption coefficients for each biochemical constituent and determine an average refractive index of the leaf interior. Then we invert the model on independent datasets to check the prediction of the biochemical content of intact leaves. The main result of this study is that the new chlorophyll and carotenoid specific absorption coefficients agree well with available in vitro absorption spectra, and that the new refractive index displays interesting spectral features in the visible, in accordance with physical principles. Moreover, we improve the chlorophyll estimation (RMSE = 9 µg/cm2) and obtain very encouraging results with carotenoids (RMSE = 3 µg/cm2). Reconstruction of reflectance and transmittance in the 400–2450 nm wavelength domain using PROSPECT is also excellent, with small errors and low to negligible biases. Improvements are particularly noticeable for leaves with low pigment content.
Keywords
Leaf optical properties , Radiative transfer model , Hyperspectral data , Prospect , Pigments
Journal title
Remote Sensing of Environment
Serial Year
2008
Journal title
Remote Sensing of Environment
Record number
1575487
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