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MOD2SEA: A Coupled Atmosphere-Hydro-Optical Model for the Retrieval of Chlorophyll-a from Remote Sensing Observations in Complex Turbid Waters., , , and . Remote Sensing, 8 (9): 722 (2016)Bi-hemispherical Canopy Reflectance Model with Surface Heterogeneity Effects for the Estimation of LAI and fAPAR from MODIS White-Sky Spectral Albedo Data.. Remote. Sens., 13 (10): 1976 (2021)A Spectral Fitting Model for Chlorophyll Fluorescence Retrieval at Global Scale., , , , and . IGARSS (1), page 180-183. IEEE, (2009)Assessing Temporal Stability for Coarse Scale Satellite Moisture Validation in the Maqu Area, Tibet., , , and . Sensors, 13 (8): 10725-10748 (2013)Evaluation of Tidal Effect On Water Constituent Variations Using Optical Observations And Tide Gauge Records in the Dutch Wadden Sea., , and . IGARSS, page 132-135. IEEE, (2018)Progress on the development of an integrated canopy fluorescence model., , , , , , , , , and 3 other author(s). IGARSS, page 601-603. IEEE, (2003)Estimation of Vegetation Functioning in a Drought Episode from Optical and Thermal Remote Sensing., , and . IGARSS, page 7652-7655. IEEE, (2018)Retrieving Photosynthetic Capacity Parameter from Leaf Photochemical Reflectance and Chlorophyll Fluorescence., , , and . IGARSS, page 5991-5994. IEEE, (2018)Uncertainty and Sensitivity Analysis of a Remote-Sensing-Based Penman-Monteith Model to Meteorological and Land Surface Input Variables., , , , and . Remote. Sens., 13 (5): 882 (2021)Very high spectral resolution imaging spectroscopy: The Fluorescence Explorer (FLEX) mission., , , , , , , , , and . IGARSS, page 264-267. IEEE, (2016)