The following 18 publications cited the product LBA-ECO LC-07 Wetland Extent, Vegetation, and Inundation: Lowland Amazon Basin.
Year | Citation |
---|---|
2024 | Mupepi, O., T. Marambanyika, M.M. Matsa, and T. Dube. 2024. A systematic review on remote sensing of wetland environments. Transactions of the Royal Society of South Africa. 79(1):67-85. https://doi.org/10.1080/0035919X.2024.2322946 |
2022 | Boulton, C.A., T.M. Lenton, and N. Boers. 2022. Pronounced loss of Amazon rainforest resilience since the early 2000s. Nature Climate Change. 12(3):271-278. https://doi.org/10.1038/s41558-022-01287-8 |
2021 | Arantes, C.C., L. Castello, X. Basurto, N. Angeli, A. Sene-Haper, and D.G. McGrath. 2021. Institutional effects on ecological outcomes of community-based management of fisheries in the Amazon. Ambio. https://doi.org/10.1007/s13280-021-01575-1 |
2021 | Dalagnol, R., F.H. Wagner, L.S. Galvao, A.S. Streher, O.L. Phillips, E. Gloor, T.A.M. Pugh, J.P.H.B. Ometto, and L.E.O.C. Aragao. 2021. Large-scale variations in the dynamics of Amazon forest canopy gaps from airborne lidar data and opportunities for tree mortality estimates. Scientific Reports. 11(1): https://doi.org/10.1038/s41598-020-80809-w |
2021 | Honorio Coronado, E.N., A. Hastie, J. Reyna, G. Flores, J. Grandez, O. Lahteenoja, F.C. Draper, C.M. Akesson, T.R. Baker, R.K. Bhomia, L.E.S. Cole, N. Davila, J. Del Aguila, M. Del Aguila, D. Del Castillo Torres, I.T. Lawson, M. Martin Branas, E.T.A. Mitchard, A. Monteagudo, O.L. Phillips, E. Ramirez, M. Rios, S. Rios, L. Rodriguez, K.H. Roucoux, X. Tagle Casapia, R. Vasquez, C.E. Wheeler, and M. Montoya. 2021. Intensive field sampling increases the known extent of carbon-rich Amazonian peatland pole forests. Environmental Research Letters. 16(7):074048. https://doi.org/10.1088/1748-9326/ac0e65 |
2019 | Antunes, A.C., F. Baccaro, V.L. Caetano Andrade, J.F. Ramos, R. Da Silva Moreira, and A.A. Barnett. 2019. Igapo seed patches: a potentially key resource for terrestrial vertebrates in a seasonally flooded forest of central Amazonia. Biological Journal of the Linnean Society. https://doi.org/10.1093/biolinnean/blz101 |
2019 | Hastie, A., R. Lauerwald, P. Ciais, and P. Regnier. 2019. Aquatic carbon fluxes dampen the overall variation of net ecosystem productivity in the Amazon basin: An analysis of the interannual variability in the boundless carbon cycle. Global Change Biology. 25(6):2094-2111. https://doi.org/10.1111/gcb.14620 |
2019 | Prestes-Carneiro, G., P. Bearez, M.P. Shock, H. Prumers, and C. Jaimes Betancourt. 2019. Pre-Hispanic fishing practices in interfluvial Amazonia: Zooarchaeological evidence from managed landscapes on the Llanos de Mojos savanna. PLOS ONE. 14(5):e0214638. https://doi.org/10.1371/journal.pone.0214638 |
2018 | Bayley, P.B., L. Castello, V.S. Batista, and N.N. Fabre. 2018. Response of Prochilodus nigricans to flood pulse variation in the central Amazon . Royal Society Open Science. 5(6):172232. https://doi.org/10.1098/rsos.172232 |
2018 | Castello, L., L.L. Hess, R. Thapa, D.G. McGrath, C.C. Arantes, V.F. Reno, and V.J. Isaac. 2018. Fishery yields vary with land cover on the Amazon River floodplain. Fish and Fisheries. 19(3):431-440. https://doi.org/10.1111/faf.12261 |
2018 | Luize, B.G., J.L.L. Magalhaes, H. Queiroz, M.A. Lopes, E.M. Venticinque, E.M. Leao de Moraes Novo, and T.S.F. Silva. 2018. The tree species pool of Amazonian wetland forests: Which species can assemble in periodically waterlogged habitats?. PLOS ONE. 13(5):e0198130. https://doi.org/10.1371/journal.pone.0198130 |
2018 | Muscarella, R., C.D. Bacon, S. Faurby, A. Antonelli, S.M. Kristiansen, J.C. Svenning, and H. Balslev. 2018. Soil fertility and flood regime are correlated with phylogenetic structure of Amazonian palm communities . Annals of Botany. https://doi.org/10.1093/aob/mcy196 |
2017 | Luo, X., H.Y. Li, L.R. Leung, T.K. Tesfa, A. Getirana, F. Papa, and L.L. Hess. 2017. Modeling surface water dynamics in the Amazon Basin using MOSART-Inundation v1.0: impacts of geomorphological parameters and river flow representation. Geoscientific Model Development. 10(3):1233-1259. https://doi.org/10.5194/gmd-10-1233-2017 |
2017 | Park, E. and E.M. Latrubesse. 2017. The hydro-geomorphologic complexity of the lower Amazon River floodplain and hydrological connectivity assessed by remote sensing and field control. Remote Sensing of Environment. 198:321-332. https://doi.org/10.1016/j.rse.2017.06.021 |
2016 | Antunes, A.P., R.M. Fewster, E.M. Venticinque, C.A. Peres, T. Levi, F. Rohe, and G.H. Shepard. 2016. Empty forest or empty rivers? A century of commercial hunting in Amazonia. Science Advances. 2(10):e1600936. https://doi.org/10.1126/sciadv.1600936 |
2016 | Ovando, A., J. Tomasella, D.A. Rodriguez, J.M. Martinez, J.L. Siqueira-Junior, G.L.N. Pinto, P. Passy, P. Vauchel, L. Noriega, and C. von Randow. 2016. Extreme flood events in the Bolivian Amazon wetlands. Journal of Hydrology: Regional Studies. 5:293-308. https://doi.org/10.1016/j.ejrh.2015.11.004 |
2016 | Venticinque, E., B. Forsberg, R. Barthem, P. Petry, L. Hess, A. Mercado, C. Canas, M. Montoya, C. Durigan, and M. Goulding. 2016. An explicit GIS-based river basin framework for aquatic ecosystem conservation in the Amazon. Earth System Science Data. 8(2):651-661. https://doi.org/10.5194/essd-8-651-2016 |
2015 | Hess, L.L., J.M. Melack, A.G. Affonso, C. Barbosa, M. Gastil-Buhl, and E.M.L.M. Novo. 2015. Wetlands of the Lowland Amazon Basin: Extent, Vegetative Cover, and Dual-season Inundated Area as Mapped with JERS-1 Synthetic Aperture Radar. Wetlands. 35(4):745-756. https://doi.org/10.1007/s13157-015-0666-y |