Development of a Sentinel-2 burned area algorithm: Generation of a small fire database for sub-Saharan Africa E Roteta, A Bastarrika, M Padilla, T Storm, E Chuvieco Remote sensing of environment 222, 1-17, 2019 | 347 | 2019 |
African burned area and fire carbon emissions are strongly impacted by small fires undetected by coarse resolution satellite data R Ramo, E Roteta, I Bistinas, D Van Wees, A Bastarrika, E Chuvieco, ... Proceedings of the National Academy of Sciences 118 (9), e2011160118, 2021 | 176 | 2021 |
Burned area detection and mapping: Intercomparison of Sentinel-1 and Sentinel-2 based algorithms over tropical Africa MA Tanase, MA Belenguer-Plomer, E Roteta, A Bastarrika, J Wheeler, ... Remote Sensing 12 (2), 334, 2020 | 54 | 2020 |
Landsat and sentinel-2 based burned area mapping tools in google earth engine E Roteta, A Bastarrika, M Franquesa, E Chuvieco Remote Sensing 13 (4), 816, 2021 | 48 | 2021 |
Development of a standard database of reference sites for validating global burned area products M Franquesa, MK Vanderhoof, D Stavrakoudis, IZ Gitas, E Roteta, ... Earth System Science Data 12 (4), 3229-3246, 2020 | 37 | 2020 |
Building a small fire database for Sub-Saharan Africa from Sentinel-2 high-resolution images E Chuvieco, E Roteta, M Sali, D Stroppiana, M Boettcher, G Kirches, ... Science of the total Environment 845, 157139, 2022 | 27 | 2022 |
A preliminary global automatic burned-area algorithm at medium resolution in Google Earth Engine E Roteta, A Bastarrika, A Ibisate, E Chuvieco Remote Sensing 13 (21), 4298, 2021 | 22 | 2021 |
Optimization of A Random Forest Classifier for Burned Area Detection in Chile Using Sentinel-2 Data E Roteta, P Oliva 2020 IEEE Latin American GRSS & ISPRS Remote Sensing Conference (LAGIRS …, 2020 | 11 | 2020 |
BARD: A global and regional validation burned area database M Franquesa, MK Vanderhoof, D Stavrakoudis, I Gitas, E Roteta, ... V5. e-cienciaDatos, 2020 | 7 | 2020 |
Mapping burned areas in Latin America from Landsat-8 with Google Earth Engine A Bastarrika, B Barrett, E Roteta, O Akizu, A Mesanza, L Torre, JA Anaya, ... | 4 | 2018 |
Suitability of band angle indices for burned area mapping in the Maule Region (Chile) P Oliva, R Mansilla, E Roteta, W Pérez-Martínez Frontiers in Forests and Global Change 5, 1052299, 2023 | 1 | 2023 |
Global and continental burned area detection from remote sensing: the FireCCI products M Lucrecia Pettinari, J Lizundia-Loiola, A Khairoun, E Roteta, T Storm, ... EGU General Assembly Conference Abstracts, EGU-1317, 2023 | | 2023 |
Global and continental burned area detection from remote sensing: the FireCCI products ML Pettinari, J Lizundia-Loiola, A Khairoun, E Roteta, T Storm, ... EGU23, 2023 | | 2023 |
Erretako azaleren detekzio automatikoa berezmen espazial ertainarekin eta eskualde-eta mundu-mailan E Roteta Otaegui | | 2022 |
A Preliminary Global Automatic Burned-Area Algorithm at Medium Resolution in Google Earth Engine E Roteta Otaegui, A Bastarrica Izaguirre, A Ibisate González de Matauco, ... MDPI, 2021 | | 2021 |
A Preliminary Global Automatic Burned-Area Algorithm at Medium Resolution in Google Earth Engine. Remote Sens. 2021, 13, 4298 E Roteta, A Bastarrika, A Ibisate, E Chuvieco s Note: MDPI stays neutral with regard to jurisdictional claims in published …, 2021 | | 2021 |
Landsat and Sentinel-2 Based Burned Area Mapping Tools in Google Earth Engine E Roteta Otaegui, A Bastarrica Izaguirre, M Franquesa, E Chuvieco | | 2021 |
Spectral angle indices for burned area detection in Chile using Sentinel-2 data and a Random Forest classifier P Oliva, RF Mansilla, E Roteta AGU Fall Meeting Abstracts 2020, A191-07, 2020 | | 2020 |
Development of a Sentinel-2 burned area algorithm: Generation of a small fire database for sub-Saharan Africa E Roteta Otaegui, A Bastarrika Iriarte, M Padilla, T Storm, E Chuvieco Elsevier, 2019 | | 2019 |
Impacto de la resolución espacial en la detección global de áreas quemadas: comparación de productos de media y baja resolución en África EC Salinero, ML Pettinari, JL Loiola, R Ramo, AB Izaguirre, ER Otaegui Teledetección: hacia una visión global del cambio climático, 119-121, 2019 | | 2019 |