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scopus(8)
Competition influences tree growth, but not mortality, across environmental gradients in Amazonia and tropical Africa
ArticleAbstract: Competition among trees is an important driver of community structure and dynamics in tropical foresPalabras claves:climatic water deficit, competition, forest dynamics, Mortality , neighborhood effects, soil fertility, trait-based models, tree growth, Tropical Forest, Wood densityAutores:Affum-Baffoe K., Alvarez-Dávila E., Andrade A.S., Aragao L.E.O.C., Araujo-Murakami A., Baker T.R., Bánki O.S., Brienen R.J.W., Camargo J.L.C., Comiskey J.A., David A. Neill, Djuikouo Kamdem M.N., Fauset S., Feldpausch T.R., Killeen T.J., Laurance S.G.W., Laurance W.F., Lewis S.L., Lovejoy T.E., Malhi Y., Marimon B.S., Marimon-Junior B.H., Marshall A.R., Phillips O.L., Pitman N.C.A., Poorter L., Reitsma J.M., Rozendaal D.M.A., Silveira M., Sonke B., Sunderland T.C.H., Taedoumg H.E., Ter Steege H., Terborgh J.W., Umetsu R.K., Van Der Heijden G.M.F., Vanderwel M.C., Vargas P.N., Vilanova-Torre E., Vincent A. Vos, White L.J.T., Willcock S., Zemagho L.Fuentes:scopusAn 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:scopusFast demographic traits promote high diversification rates of Amazonian trees
ArticleAbstract: The Amazon rain forest sustains the world's highest tree diversity, but it remains unclear why somePalabras claves:DIVERSITY, Generation time, Traits, Tropical Forest, TurnoverAutores:Alexiaides M., Alvarez-Dávila E., Anthony Di Fiore, Araujo A., Arets E.J.M.M., Arroyo L.P., Aymard G.A.C., Baker T.R., Bonal D., Brienen R.J.W., Chave J., David A. Neill, de Andrade A.S., De Oliveira A.C.A., Dexter K.G., Do Amaral I.L., Eler E.S., Feldpausch T.R., Ferreira L.V., Gloor M., Higuchi N., Honorio E.N., Huamantupa-Chuquimaco I., Killeen T.J., Laurance S.G.W., Laurance W.F., Leaño C., Lewis S.L., López-González G., Magallon S., Malhi Y., María Cristina Peñuela Mora, Marimon B.S., Marimon-Junior B.H., Monteagudo-Mendoza A., Pennington R.T., Phillips O.L., Pitman N.C.A., Prieto A., Quesada C.A., Ramírez F., Ramirez-Angulo H., Rudas A., Ruschell A.R., Salomao R.P., Silva J.N.N., Silveira M., Simon M.F., Spironello W.R., Steege H.T., Terborgh J.W., Toledo M., Torres-Lezama A., Van Der Heijden G.M.F., Vasquez R.V., Vieira I.C.G., Vilanova-Torre E., Vincent A. VosFuentes:scopusIndividual-based modeling of amazon forests suggests that climate controls productivity while traits control demography
ArticleAbstract: Climate, species composition, and soils are thought to control carbon cycling and forest structure iPalabras claves:AMAZON, Carbon cycle, Climate, forest dynamics, Functional traits, leaf economics spectrum, Tropical Forest, Vegetation modelAutores:Alvarez-Dávila E., Anthony Di Fiore, Arroyo L.P., Asner G.P., Baker T.R., Barroso J.G., Brienen R.J.W., Brown I.F., Christoffersen B.O., Cornejo Valverde F., da Silva W.C., David A. Neill, Dávila N., del Aguila-Pasquel J., Doughty C.E., Erwin T.L., Fauset S., Feldpausch T.R., Fyllas N.M., Galbraith D.R., Girardin C.A.J., Gloor M., Goodman R.C., Gutierrez A.P., Honorio E.N., Huamantupa-Chuquimaco I., Malhi Y., Monteagudo A., Pallqui Camacho N.C., Patrick Bentley L., Peacock J., Phillips O.L., Pitman N.C.A., Prieto A., Quesada C.A., Restrepo Z., Rudas A., Salinas Revilla N., Shenkin A., Silva-Espejo J.E., Silveira M., Stropp J., Terborgh J.W., Van Der Heijden G.M.F., Vargas P.N., Vasquez R.V., Vieira S.A.Fuentes:scopusMethods to estimate aboveground wood productivity from long-term forest inventory plots
ArticleAbstract: Forest inventory plots are widely used to estimate biomass carbon storage and its change over time.Palabras claves:BIOMASS, carbon, Census interval, diameter, Recruitment, Tropical ForestAutores:Araujo-Murakami A., Arroyo L.P., Baker T.R., Brienen R.J.W., Chao K.J., David A. Neill, Erwin T.L., Feldpausch T.R., Keeling H.C., Killeen T.J., Lewis S.L., López-González G., Malhi Y., Monteagudo A., Parada Gutierrez G.A., Phillips O.L., Pitman N.C.A., Quesada C.A., Silveira M., Stropp J., Talbot J., Van Der Heijden G.M.F., Vanderwel M.C., Vargas P.N.Fuentes:scopusShifting dynamics of climate-functional groups in old-growth Amazonian forests
ArticleAbstract: Background: Climate change is driving ecosystem shifts, which has implications for tropical forest sPalabras claves:Climate trends, forest composition, moisture affiliation, moisture seasonality, Tropical ForestAutores:Andrade A.S., Baker T.R., Butt N., de Almeida S.S., Laurance S.G.W., Laurance W.F., Lewis S.L., López-González G., Luizão R., Malhi Y., Manuel J. Macía, New M., Phillips O.L.Fuentes:scopusVariation in stem mortality rates determines patterns of above-ground biomass in Amazonian forests: implications for dynamic global vegetation models
ArticleAbstract: Understanding the processes that determine above-ground biomass (AGB) in Amazonian forests is importPalabras claves:Allometry, carbon, dynamic global vegetation model, forest plots, Productivity, Tropical ForestAutores:Alvarez-Dávila E., Alves de Oliveira A., Andrade A.S., Anthony Di Fiore, Aragao L.E.O.C., Araujo-Murakami A., Arets E.J.M.M., Arroyo L.P., Aymard G.A.C., Baker T.R., Baraloto C., Barroso J.G., Bonal D., Boot R.G.A., Brienen R.J.W., Camargo J.L.C., Chave J., Christoffersen B.O., Ciais P., Cogollo Á., Cornejo Valverde F., David A. Neill, De Deurwaerder H.P.T., Do Amaral I.L., Fauset S., Feldpausch T.R., Ferreira L.V., Galbraith D.R., Gloor M., Guimberteau M., Higuchi N., Honorio E.N., Johnson M.O., Killeen T.J., Kruijt B., Laurance S.G.W., Laurance W.F., Licona J.C., Lola da Costa A.C., López-González G., Lovejoy T.E., Malhi Y., Marimon B., Marimon B.S., Matos D.C.L., Meir P., Mendoza C., Monteagudo A., Moorcroft P., Pardo G., Penã-Claros M., Phillips O.L., Pitman N.C.A., Poorter L., Prieto A., Quesada C.A., Ramirez-Angulo H., Rammig A., Roopsind A., Rudas A., Salomao R.P., Sampaio G., Silveira M., Stropp J., Ter Steege H., Terborgh J.W., Thomas R.S., Thonicke K., Toledo M., Torres-Lezama A., Van Der Heijden G.M.F., Vasquez R.V., Verbeeck H., Vieira I.C.G., Vilanova-Torre E., Vincent A. Vos, von Randow C., Zhang K.Fuentes:scopusSoil physical conditions limit palm and tree basal area in Amazonian forests
ArticleAbstract: Background: Trees and arborescent palms adopt different rooting strategies and responses to physicalPalabras claves:ecological limiting factors, life-forms, palm-dominated forests, Quantile regression, soil structure, Tropical Forest, vegetation typesAutores:Alexander Parada G., Alvarez-Dávila E., Araujo A., Baker T.R., Bánki O.S., Brienen R.J.W., Chave J., David A. Neill, Emílio T., Feldpausch T.R., Honorio E.N., Killeen T.J., Magnusson W.E., Malhi Y., Monteagudo A., Oblitas Mendoza E.M., Pena-Cruz A., Phillips O.L., Quesada C.A., Ramirez-Angulo H., Regina Capellotto Costa F., Schietti J., Schwarz M., Silveira M., Ter Steege H., Terborgh J.W., Thomas R.S., Torres-Lezama A., Vilanova-Torre E., Volkmer De Castilho C.Fuentes:scopus