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Land cover mapping, change detection and its driving forces quantifying in the Southwestern China from 1990 to 2010., , , and . IGARSS, page 5445-5448. IEEE, (2016)Spatial Downscaling of Gross Primary Productivity Using Topographic and Vegetation Heterogeneity Information: A Case Study in the Gongga Mountain Region of China., , , , and . Remote Sensing, 10 (4): 647 (2018)Subpixel Inundation Mapping Using Landsat-8 OLI and UAV Data for a Wetland Region on the Zoige Plateau, China., , , , and . Remote Sensing, 9 (1): 31 (2017)Comparative analysis of HJ-1, SPOT, and TM data for leaf area index estimation in a mountainous area., , and . IGARSS, page 2782-2785. IEEE, (2013)A Multiscale Assimilation Approach to Improve Fine-Resolution Leaf Area Index Dynamics., , , , , , and . IEEE Trans. Geosci. Remote. Sens., 57 (10): 8153-8168 (2019)RUESVMs: An Ensemble Method to Handle the Class Imbalance Problem in Land Cover Mapping Using Google Earth Engine., , , , and . Remote. Sens., 12 (21): 3484 (2020)Assessing the effects of irrigated agricultural expansions on Lake Urmia using multi-decadal Landsat imagery and a sample migration technique within Google Earth Engine., , , , , , , and . Int. J. Appl. Earth Obs. Geoinformation, (2021)Grassland fractional vegetation cover monitoring using the composited HJ-1A/B time series images and unmanned aerial vehicles: A case study in Zoige wetland, China., , , , , , and . IGARSS, page 7192-7195. IEEE, (2016)Ecosystem mapping in mountainous areas by fusing multi-source data and the related knowledge., , , , and . IGARSS, page 1344-1347. IEEE, (2016)A Cost-Constrained Sampling Strategy in Support of LAI Product Validation in Mountainous Areas., , , , , , , and . Remote. Sens., 8 (9): 704 (2016)