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MODIS Sensor Capability to Burned Area Mapping - Assessment of Performance and Improvements Provided by the Latest Standard Products in Boreal Regions., , , and . Sensors, 20 (18): 5423 (2020)Burned Area Mapping in the North American Boreal Forest Using Terra-MODIS LTDR (2001-2011): A Comparison with the MCD45A1, MCD64A1 and BA GEOLAND-2 Products., , , and . Remote Sensing, 6 (1): 815-840 (2014)The Synergy of the 0.05° (~5km) AVHRR Long-Term Data Record (LTDR) and Landsat TM Archive to Map Large Fires in the North American Boreal Region From 1984 to 1998., , , and . IEEE J Sel. Topics in Appl. Earth Observ. and Remote Sensing, 7 (4): 1157-1166 (2014)Mapping Chestnut Stands Using Bi-Temporal VHR Data., , , , and . Remote. Sens., 11 (21): 2560 (2019)Relationship between Sea Regions with High Thermal Variability and Wildfires from 1981 to 2008., , , , , and . IGARSS (1), page 236-239. IEEE, (2009)Estimation of Burned Area in the Northeastern Siberian Boreal Forest from a Long-Term Data Record (LTDR) 1982-2015 Time Series., , , and . Remote. Sens., 10 (6): 940 (2018)Evaluation of a Bayesian Algorithm to Detect Burned Areas in the Canary Islands' Dry Woodlands and Forests Ecoregion Using MODIS Data., , , , and . Remote. Sens., 10 (5): 789 (2018)UAV-Based Disease Detection in Palm Groves of Phoenix canariensis Using Machine Learning and Multispectral Imagery., , , , and . Remote. Sens., 15 (14): 3584 (July 2023)Intercomparison of AVHRR PAL and LTDR Version 2 Long-Term Data Sets for Africa From 1982 to 2000 and Its Impact on Mapping Burned Area., , , and . IEEE Geosci. Remote. Sens. Lett., 6 (4): 738-742 (2009)