Discrete Anisotropic Radiative Transfer (DART 5) for Modeling Airborne and Satellite Spectroradiometer and LIDAR Acquisitions of Natural and Urban LandscapesJean‐Philippe Gastellu‐Etchegorry, Thomas Ristorcelli, Tiangang Yin et al.|Remote Sensing|2015Cited by 344
DART: Recent Advances in Remote Sensing Data Modeling With Atmosphere, Polarization, and Chlorophyll FluorescenceJean‐Philippe Gastellu‐Etchegorry, Zina Mitraka, Nicolas Lauret et al.|IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing|2017Cited by 230
Using the Negative Soil Adjustment Factor of Soil Adjusted Vegetation Index (SAVI) to Resist Saturation Effects and Estimate Leaf Area Index (LAI) in Dense Vegetation AreasZhijun Zhen, Jean‐Philippe Gastellu‐Etchegorry, Shengbo Chen et al.|Sensors|2021Cited by 113
DART-Lux: An unbiased and rapid Monte Carlo radiative transfer method for simulating remote sensing imagesYingjie Wang, Jean‐Philippe Gastellu‐Etchegorry, Abdelaziz Kallel et al.|Remote Sensing of Environment|2022Cited by 86
Discrete anisotropic radiative transfer modelling of solar-induced chlorophyll fluorescence: Structural impacts in geometrically explicit vegetation canopiesZbyněk Malenovský, Jean‐Philippe Gastellu‐Etchegorry, Omar Regaieg et al.|Remote Sensing of Environment|2021Cited by 53