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An international network to monitor the structure, composition and dynamics of Amazonian forests (RAINFOR)
ArticleAbstract: The Amazon basin is likely to be increasingly affected by environmental changes: higher temperaturesPalabras claves:AMAZON, basal area, carbon, Climate, Long-term monitoring, Permanent plot, soil, Tropical ForestAutores:Arroyo L.P., Baker T.R., David A. Neill, de Almeida S.S., Frederiksen T., Grace J., Higuchi N., Killeen T.J., Laurance W.F., Leaño C., Lewis S.L., Lloyd J.J., Malhi Y., Meir P., Monteagudo A., Panfil S.N., Patino S., Phillips O.L., Pitman N.C.A., Quesada C.A., Renato Valencia, Rudas-Ll. A., Saleska S.R., Salomao R.P., Silva N., Silveira M., Sombroek W.G., Vargas P.N., Vasquez-Martínez R., Vieira I.C.G., Vinceti B., Wright J.Fuentes:scopusAnt mutualism increases long-term growth and survival of a common amazonian tree
ArticleAbstract: How ecological context shapes mutualistic relationships remains poorly understood. We combined long-Palabras claves:Age-structured populations, Ant-plant interactions, Duroia hirsuta, mutualism, Myrmelachista schumanni, OntogenyAutores:D. Donoso Vargas, David A. Donoso, Liliana Jaramillo, Olivier J. Dangles, Renato Valencia, Selene Báez, Simon A. Queenborough, V Baez JacomeFuentes:rraaescopusDamage to living trees contributes to almost half of the biomass losses in tropical forests
ArticleAbstract: Accurate estimates of forest biomass stocks and fluxes are needed to quantify global carbon budgetsPalabras claves:canopy turnover, carbon fluxes, forest biomass, forest disturbance, ForestGEO, global carbon budget, terrestrial laser scanning, tree damage, Tree mortality, Tropical forestsAutores:Aguilar S., Bunyavejchewin S., Castaño N., Chang-Yang C.H., Davies S.J., Duque A., Gabriel Arellano, Krishna Moorthy S.M., McMahon S.M., Mitre D., Nasardin M., Pérez R., Renato Valencia, Sun I.F., Verbeeck H., Yao T.L., Zuleta D.Fuentes:scopusDemographic composition, not demographic diversity, pbkp_redicts biomass and turnover across temperate and tropical forests
ArticleAbstract: The growth and survival of individual trees determine the physical structure of a forest with importPalabras claves:aboveground biomass, carbon residence time, forest dynamics, ForestGEO, size-dependent survival, Species richness, tree demographyAutores:Anderson-Teixeira K.J., Bourg N.A., Bt. Mohamad M., Bunyavejchewin S., Butt N., Cao M., Cárdenas López D., Chang-Yang C.H., Chen Y.Y., Chuyong G.B., Dattaraja H.S., Davies S.J., Duque A., Ewango C.E.N., Fernando E.S., Fisher R.A., Fletcher C.D., Foster R.B., Hao Z., Hart T.B., Hsieh C.F., Hubbell S.P., Itoh A., Johnson D.J., Kenfack D., Koven C.D., Larson A.J., Lutz J.A., Makana J.R., Malhi Y., Marthews T.R., Mcmahon S.M., McShea W.J., Morecroft M.D., Needham J.F., Norden N., Parker G.G., Renato Valencia, Shringi A., Sukumar R., Sun I.F., Suresh H.S., Tan S., Thomas D.W., Thompson J., Uriarte M., Yao T.L., Yap S.L., Yuan Z., Yuehua H., Zimmerman J.K., Zuleta D.Fuentes:googlescopusDemography of Oenocarpus bataua and implications for sustainable harvest of its fruit in western Amazon
ArticleAbstract: Oenocarpus bataua is the seventh most abundant tree in the Amazon and one of the most used palms inPalabras claves:ARECACEAE, geographic distribution, integral projection models, NTFP, Population ecology, Wild foodsAutores:Balslev H., Daniela Cevallos, Galeano G., Isaza C., Martorell C., Renato ValenciaFuentes:googlescopusCTFS-ForestGEO: A worldwide network monitoring forests in an era of global change
ArticleAbstract: Global change is impacting forests worldwide, threatening biodiversity and ecosystem services includPalabras claves:Biodiversity, Center for Tropical Forest Science (CTFS), Climate Change, Demography, Forest dynamics plot, Forest Global Earth Observatory (ForestGEO), Long-term monitoring, Spatial AnalysisAutores:Abu Salim K., Almeyda Zambrano A., Alonso A., Anderson-Teixeira K.J., Baltzer J.L., Basset Y., Bennett A.C., Bourg N.A., Broadbent E.N., Brockelman W.Y., Bunyavejchewin S., Burslem D.F.R.P., Butt N., Cao M., Cárdenas López D., Chuyong G.B., Clay K., Cordell S., Dattaraja H.S., Davies S.J., den Ouden J., Deng X., Detto M., Du X., Duque Montoya A.J., Erikson D.L., Ewango C.E.N., Fischer G.A., Fletcher C.D., Foster R.B., Giardina C.P., Gilbert G.S., Gonzalez-Akre E.B., Gunatilleke N., Gunatilleke S., Hao Z., Hargrove W.W., Hart T.B., Hau B.C.H., He F., Hoffman F.M., Howe R.W., Hubbell S.P., Inman-Narahari F.M., Jansen P.A., Jiang M., Johnson D.J., Kanzaki M., Kassim A.R., Kenfack D., Kibet S., Kinnaird M.F., Korte L., Kral K., Kumar J., Larson A.J., Li X., Li Y.D., Liu S., Lum S.K.Y., Lutz J.A., Ma K., Maddalena D.M., Makana J.R., Malhi Y., Marthews T.R., Mat Serudin R., Mcmahon S.M., McShea W.J., Memiaghe H.R., Mi X., Mizuno T., Morecroft M.D., Muller-Landau H.C., Myers J.A., Novotny V., Oliveira A.A., Ong P.S., Orwig D.A., Ostertag R., Parker G.G., Phillips R.P., Renato Valencia, Sack L., Sainge M.N., Sang W., Sri-ngernyuang K., Sukumar R., Sun I.F., Sungpalee W., Suresh H.S., Tan S., Thomas D.W., Thomas S.C., Thompson J., Turner B.L., Uriarte M., Vallejo M.I., Vicentini A., Wright S.J.Fuentes:googlescopusCanopy structure and forest understory conditions in a wet Amazonian forest—No change over the last 20 years
OtherAbstract: Climate change is altering forest dynamics in the tropics, with large potential impacts on forest stPalabras claves:canopy openness, climate change impacts, equilibrium canopy height, forest dynamics, transition matrix model, understory light, Yasuní National Park, EcuadorAutores:Nabe-Nielsen J., Renato ValenciaFuentes:googlescopusGlobal importance of large-diameter trees
ArticleAbstract: Aim: To examine the contribution of large-diameter trees to biomass, stand structure, and species riPalabras claves:forest biomass, forest structure, large-diameter trees, latitudinal gradient, resource inequality, Smithsonian ForestGEOAutores:Allen D., Alonso A., Anderson-Teixeira K.J., Andrade A.S., Baltzer J.L., Becker K.M.L., Blomdahl E.M., Bourg N.A., Bunyavejchewin S., Burslem D.F.R.P., Cansler C.A., Cao K., Cao M., Cárdenas López D., Chang L.W., Chao K.J., Chao W.C., Chiang J.M., Chu C., Chuyong G.B., Clay K., Condit R.S., Cordell S., Dattaraja H.S., Davies S.J., Duque A., Ewango C.E.N., Fischer G.A., Fletcher C.D., Freund J.A., Furniss T.J., Germain S.J., Giardina C.P., Gilbert G.S., Hao Z., Hart T.B., Hau B.C.H., He F., Hector A., Howe R.W., Hsieh C.F., Hu Y.H., Hubbell S.P., Inman-Narahari F.M., Itoh A., Janík D., Johnson D.J., Kassim A.R., Kenfack D., Korte L., Kral K., Larson A.J., Li Y.D., Lin Y.C., Liu S., Lum S.K.Y., Lutz J.A., Ma K., Makana J.R., Malhi Y., Mcmahon S.M., McShea W.J., Memiaghe H.R., Mi X., Morecroft M.D., Musili P.M., Myers J.A., Novotny V., Oliveira A.A., Ong P.S., Orwig D.A., Ostertag R., Parker G.G., Patankar R., Phillips R.P., Renato Valencia, Reynolds G., Sack L., Song G.Z.M., Su S.H., Sukumar R., Sun I.F., Suresh H.S., Swanson M.E., Tan S., Thomas D.W., Thompson J., Uriarte M., Vicentini A., Vrška T., Wang X., Weiblen G.D., Wolf A.T., Wu S.H., Xu H., Yamakura T., Yap S.L., Zimmerman J.K.Fuentes:scopusForestGEO: Understanding forest diversity and dynamics through a global observatory network
ArticleAbstract: ForestGEO is a network of scientists and long-term forest dynamics plots (FDPs) spanning the Earth'sPalabras claves:Capacity strengthening, Demography, forest plots, Network science, species diversity, Tree growth and mortality, Tropical forestsAutores:Abiem I., Abu Salim K., Aguilar S., Allen D., Alonso A., Anderson-Teixeira K.J., Andrade A.S., Ashton P.S., Baker M.E., Baker P.J., Baltzer J.L., Basset Y., Bissiengou P., Bohlman S.A., Bourg N.A., Brockelman W.Y., Bunyavejchewin S., Burslem D.F.R.P., Cao M., Cárdenas López D., Chang L.W., Chang-Yang C.H., Chao K.J., Chao W.C., Chapman H., Chen Y.Y., Chisholm R.A., Chu C., Chuyong G.B., Clay K., Comita L.S., Condit R.S., Cordell S., Dattaraja H.S., Davies S.J., den Ouden J., Detto M., Dick C.W., Du X., Duque A., Ediriweera S., Ellis E.C., Esufali S., Ewango C.E.N., Fernando E.S., Filip J., Fischer G.A., Foster R.B., Gabriel Arellano, Giambelluca T.W., Giardina C.P., Gilbert G.S., Gonzalez-Akre E.B., Gunatilleke C.V.S., Gunatilleke I.A.U.N., Hao Z., Hau B.C.H., He F., Howe R.W., Hubbell S.P., Huth A., Inman-Narahari F.M., Itoh A., Janík D., Jansen P.A., Jiang M., Johnson D.J., Jones F.A., Kanzaki M., Kenfack D., Kiratiprayoon S., Kral K., Krizel L., Lao S., Larson A.J., Li X., Li Y.D., Litton C.M., Liu S., Liu Y., Lum S.K.Y., Luskin M.S., Lutz J.A., Luu H.T., Ma K., Makana J.R., Malhi Y., Martin A., McCarthy C., Mcmahon S.M., McShea W.J., Memiaghe H.R., Mi X., Mitre D., Mohamad M.B., Monks L., Muller-Landau H.C., Ni H., Obiang N.L.E., Oliveira A.A., Renato ValenciaFuentes:scopusEnvironment- and trait-mediated scaling of tree occupancy in forests worldwide
ArticleAbstract: Aim: The relationship between the proportion of sites occupied by a species and the area of a site [Palabras claves:Abundance, Actual evapotranspiration, biodiversity conservation, Nachman model, occupancy–area relationship, scaling, Spatial aggregation, topography, Tree sizeAutores:Bourg N.A., Chang L.W., Chuyong G.B., Du X., Fletcher C.D., Hao Z., Howe R.W., Jetz W., Keil P., Kenfack D., Lin L., Lutz J.A., Ma K., Mi X., Ren H., Renato Valencia, Su S.H., Sun I.F., Thomas D.W., Wang X., Ye W., Zhu L.Fuentes:scopus