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Publications Citing Wildfires Data
List of peer-reviewed publications that cite using Wildfires data.
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| Title | Year Sort ascending | Author | Topic | Dataset |
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| Fires Drive Long-Term Environmental Degradation in the Amazon Basin | Silva Junior, Carlos Antonio da, Lima, Mendelson, Teodoro, Paulo Eduardo, Oliveira-Junior, Jose Francisco de, Rossi, Fernando Saragosa, Funatsu, Beatriz Miky, Butturi, Weslei, Lourenconi, Thais, Kraeski, Aline, Pelissari, Tatiane Deoti, Moratelli, Francielli Aloisio, Arvor, Damien, Luz, Iago Manuelson dos Santos, Teodoro, Larissa Pereira Ribeiro, Dubreuil, Vincent, Teixeira, Vinicius Modolo | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | ||
| Exploring the Spatio-Temporal characteristics of vegetative wildfire damage and recovery in the African World Natural Heritage Sites | Chengling, Tang, Lizhen, Lu | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | ||
| Forest aboveground biomass in the southwestern United States from a MISR multi-angle index, 20002015 | Chopping, Mark, Wang, Zhuosen, Schaaf, Crystal, Bull, Michael A., Duchesne, Rocio R. | Biomass, Carbon, Evergreen Vegetation, Shrubland/Scrub, Grasslands, Forests, Canopy Characteristics, Deciduous Vegetation, LIDAR WAVEFORM, Plant Diseases/Disorders/Pests, Fire Occurrence, Burned Area, Droughts, Land Use/Land Cover, Litter Characteristics, Bidirectional Reflectance Factor, Reflectance |
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| How much of a pixel needs to burn to be detected by satellites? A spectral modeling experiment based on ecosystem data from Yellowstone National Park, USA | Riet, Mats, Veraverbeke, Sander | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | ||
| How wildfires increase sensitivity of Amazon forests to droughts | Le Roux, Renan, Wagner, Fabien, Blanc, Lilian, Betbeder, Julie, Gond, Valery, Dessard, Helene, Funatzu, Beatriz, Bourgoin, Clement, Cornu, Guillaume, Herault, Bruno, Montfort, Frederique, Sist, Plinio, Begue, Agnes, Dubreuil, Vincent, Laurent, Francois, Messner, Francois, Fadhil Hasan, Ali, Arvor, Damien | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | ||
| Hospitalization Due to Fire-Induced Pollution in the Brazilian Legal | Campanharo, Wesley Augusto, Morello, Thiago, Christofoletti, Maria A. M., Anderson, Liana O. | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area, Aerosol Optical Depth/Thickness, Land Surface Temperature, Emissivity |
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| Forest fire action on vegetation from the perspective of trend analysis in future climate change scenarios for a Brazilian savanna region | Miranda, Jonathan da Rocha, Silva, Rosane Gomes da, Juvanhol, Ronie Silva | Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Land Surface Temperature, Emissivity, Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area, Precipitation, Precipitation Amount, Precipitation Rate, Snow, Rain |
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| Forest structure and individual tree inventories of northeastern Siberia along climatic gradients | Miesner, Timon, Herzschuh, Ulrike, Pestryakova, Luidmila A., Wieczorek, Mareike, Zakharov, Evgenii S., Kolmogorov, Alexei I., Davydova, Paraskovya V., Kruse, Stefan | Forests, Infrared Imagery, Burned Area, Reforestation | ||
| Fuel-specific aggregation of active fire detections for rapid mapping of forest fire perimeters in Mexico | Briones-Herrera, Carlos Ivan, Vega-Nieva, Daniel Jose, Briseno-Reyes, Jaime, Monjaras-Vega, Norma Angelica, Lopez-Serrano, Pablito Marcelo, Corral-Rivas, Jose Javier, Alvarado, Ernesto, Arellano-Perez, Stefano, Jardel Pelaez, Enrique J., Perez Salicrup, Diego Rafael, Jolly, William Matthew | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | ||
| Reassessment of carbon emissions from fires and a new estimate of net carbon uptake in Russian forests in 20012021 | Romanov, Aleksey A., Tamarovskaya, Anastasia N., Gloor, Emanuel, Brienen, Roel, Gusev, Boris A., Leonenko, Egor V., Vasiliev, Alexander S., Krikunov, Elijah E. | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | ||
| Quasi-experimental analysis of new mining developments as a driver of deforestation in Zambia | Morley, Jonathan, Buchanan, Graeme, Mitchard, Edward T. A., Keane, Aidan | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | ||
| Re-examining the assumption of dominant regional wind and fire spread directions | Shmuel, Assaf, Heifetz, Eyal | Burned Area, Fire Dynamics, Fire Occurrence | ||
| Quantifying Post-Fire Changes in the Aboveground Biomass of an Amazonian | Pontes-Lopes, Aline, Dalagnol, Ricardo, Dutra, Andeise Cerqueira, de Jesus Silva, Camila Valeria, de Alencastro Graca, Paulo Mauricio Lima, de Oliveira e Cruz de Aragao, Luiz Eduardo | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | ||
| SatViT: Pretraining Transformers for Earth Observation | Fuller, Anthony, Millard, Koreen, Green, James R. | Dominant Species, Fire Occurrence, Soil Temperature, Burned Area, Soil Moisture/Water Content, Permafrost, Biomass, Vegetation Cover, Forests, Carbon, Terrain Elevation, Plant Characteristics, Vegetation Species, Soil Depth | ||
| Seasonally-decomposed Sentinel-1 backscatter time-series are useful indicators of peatland wildfire vulnerability | Millard, K., Darling, S., Pelletier, N., Schultz, S. | Dominant Species, Fire Occurrence, Soil Temperature, Burned Area, Soil Moisture/Water Content, Permafrost, Biomass, Vegetation Cover, Forests, Carbon, Terrain Elevation, Plant Characteristics, Vegetation Species, Soil Depth | ||
| Madagascar's extraordinary biodiversity: Threats and opportunities | Ralimanana, Helene, Perrigo, Allison L., Smith, Rhian J., Borrell, James S., Faurby, Sren, Rajaonah, Mamy Tiana, Randriamboavonjy, Tianjanahary, Vorontsova, Maria S., Cooke, Robert S. C., Phelps, Leanne N., Sayol, Ferran, Andela, Niels, Andermann, Tobias, Andriamanohera, Andotiana M., Andriambololonera, Sylvie, Bachman, Steven P., Bacon, Christine D., Baker, William J., Belluardo, Francesco, Birkinshaw, Chris, Cable, Stuart, Canales, Nataly A., Carrillo, Juan D., Clegg, Rosie, Clubbe, Colin, Crottini, Angelica, Damasco, Gabriel, Dhanda, Sonia, Edler, Daniel, Farooq, Harith, de Lima Ferreira, Paola, Fisher, Brian L., Forest, Felix, Gardiner, Lauren M., Goodman, Steven M., Grace, Olwen M., Guedes, Thais B., Hackel, Jan, Henniges, Marie C., Hill, Rowena, Lehmann, Caroline E. R., Lowry, Porter P., Marline, Lovanomenjanahary, Matos-Maravi, Pavel, Moat, Justin, Neves, Beatriz, Nogueira, Matheus G. C., Onstein, Renske E., Papadopulos, Alexander S. T., Perez-Escobar, Oscar A., Phillipson, Peter B., Pironon, Samuel, Przelomska, Natalia A. S., Rabarimanarivo, Marina, Rabehevitra, David, Raharimampionona, Jeannie, Rajaonary, Fano, Rajaovelona, Landy R., Rakotoarinivo, Mijoro, Rakotoarisoa, Amedee A., Rakotoarisoa, Solofo E., Rakotomalala, Herizo N., Rakotonasolo, Franck, Ralaiveloarisoa, Berthe A., Ramirez-Herranz, Myriam, Randriamamonjy, Jean Emmanuel N., Randrianasolo, Vonona, Rasolohery, Andriambolantsoa, Ratsifandrihamanana, Anitry N., Ravololomanana, Noro, Razafiniary, Velosoa, Razanajatovo, Henintsoa, Razanatsoa, Estelle, Rivers, Malin, Silvestro, Daniele, Testo, Weston, Torres Jimenez, Maria F., Walker, Kim, Walker, Barnaby E., Wilkin, Paul, Williams, Jenny, Ziegler, Thomas, Zizka, Alexander, Antonelli, Alexandre | Population Density, Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | ||
| Madagascar's fire regimes challenge global assumptions about landscape degradation | Phelps, Leanne N., Andela, Niels, Gravey, Mathieu, Davis, Dylan S., Kull, Christian A., Douglass, Kristina, Lehmann, Caroline E. R. | Land Use/Land Cover Classification, Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area, Reflectance, Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps |
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| Mapping native and non-native vegetation in the Brazilian Cerrado using freely available satellite products | Lewis, Kennedy, de V. Barros, Fernanda, Cure, Marcio B., Davies, Christian A., Furtado, Mariana N., Hill, Timothy C., Hirota, Marina, Martins, Demetrius L., Mazzochini, Guilherme G., Mitchard, Edward T. A., Munhoz, Cassia B. R., Oliveira, Rafael S., Sampaio, Alexandre B., Saraiva, Nicholas A., Schmidt, Isabel B., Rowland, Lucy | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | ||
| Mapping causal agents of disturbance in boreal and arctic ecosystems of North America using time series of Landsat data | Zhang, Yingtong, Woodcock, Curtis E., Chen, Shijuan, Wang, Jonathan A., Sulla-Menashe, Damien, Zuo, Zhenpeng, Olofsson, Pontus, Wang, Yetianjian, Friedl, Mark A. | Crop/Plant Yields, Land Use Classes, Landscape Patterns, Cropland, Aquatic Ecosystems, Terrestrial Ecosystems, Vegetation, Soils, Fire Occurrence, Forest Fire Science, Burned Area | ||
| Lightning patterns in the PantanalUntangling natural and anthropogenic-induced wildfires | Menezes, Lucas S., de Oliveira, Aline M., Santos, Filippe L.M., Russo, Ana, de Souza, Rodrigo A.F., Roque, Fabio O., Libonati, Renata | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | ||
| Improved detection of abrupt change in vegetation reveals dominant fractional woody cover decline in Eastern Africa | Abera, Temesgen Alemayehu, Heiskanen, Janne, Maeda, Eduardo Eiji, Hailu, Binyam Tesfaw, Pellikka, Petri K.E. | Reflectance, Anisotropy, Canopy Characteristics, Evergreen Vegetation, Crown, Deciduous Vegetation, Leaf Characteristics, Vegetation Cover, Land Use/Land Cover Classification, Population Density, Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area |
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| Intentions behind common and risky fires in south-eastern Tanzania | Wood, Ellie, Mgaya, Mercy, Andrews, Christopher, Schreckenberg, Kate, Fisher, Janet A, Grundy, Isla, Ryan, Casey M | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | ||
| Impacts of burn severity on short-term postfire vegetation recovery, surface albedo, and land surface temperature in California ecoregions | Rother, David E., De Sales, Fernando, Stow, Doug, McFadden, Joe | Albedo, Anisotropy, Land Surface Temperature, Emissivity, Land Use/Land Cover Classification, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area |
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| Increasing fire frequency and severity will increase habitat loss for a boreal forest indicator species | Palm, Eric C., Suitor, Michael J., Joly, Kyle, Herriges, Jim D., Kelly, Allicia P., Hervieux, Dave, Russell, Kelsey L. M., Bentzen, Torsten W., Larter, Nicholas C., Hebblewhite, Mark | Fire Occurrence, Forest Fire Science, Burned Area | ||
| Increased burned area in the Pantanal over the past two decades | Correa, Danielle Blazys, Alcantara, Enner, Libonati, Renata, Massi, Klecia Gili, Park, Edward | Terrain Elevation, Digital Elevation/Terrain Model (DEM), Topographical Relief Maps, Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area |