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Determinants of biased sex ratios and inter-sex costs of reproduction in dioecious tropical forest trees
ArticleAbstract: Estimates of the sex ratio and cost of reproduction in plant populations have implications for resouPalabras claves:Dioecious, INVESTMENT, Myristicaceae, reproduction, Sex-ratio, Tropical Forest, YasuniAutores:Burslem D.F.R.P., Garwood N.C., Renato Valencia, Simon A. QueenboroughFuentes:scopusCTFS-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: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:scopusField methods for sampling tree height for tropical forest biomass estimation
ArticleAbstract: Quantifying the relationship between tree diameter and height is a key component of efforts to estimPalabras claves:above-ground biomass estimation, Allometry, carbon stocks, Forest inventory, forest structure, sample sizeAutores:Arets E.J.M.M., Ashton P.S., Baker T.R., Banin L.F., Bastin J.F., Berry N.J., Bogaert J., Boot R.G.A., Brearley F.Q., Brienen R.J.W., Burslem D.F.R.P., Chave J., Chudomelová M., Dančsák M., De Cannière C., Ewango C.E.N., Feldpausch T.R., Hédl R., Hubau W., Lewis S.L., Lloyd J.J., López-González G., Makana J.R., Malhi Y., Marimon B.S., Marimon-Junior B.H., Martinez R.V., Metali F., Moore S., Nagy L., Pendry C.A., Phillips O.L., Qie L., Ramirez-Angulo H., Reitsma J.M., Rutishauser E., Salim K.A., Sanchez A.C., Sonke B., Sukri R.S., Sullivan M.J.P., Sunderland T.C.H., Svátek M., Torre E.V., Umunay P.M., Vargas P.N., Vernimmen R.R.E., Vincent A. Vos, Vleminckx J.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:scopusMultispecies coexistence of trees in tropical forests: Spatial signals of topographic niche differentiation increase with environmental heterogeneity
ArticleAbstract: Neutral and niche theories give contrasting explanations for the maintenance of tropical tree speciePalabras claves:Cross-pair overlap distribution, Neutral theory, niche differentiation, Spatial pattern, Species coexistence, Tropical ForestAutores:Bao L., Brockelman W.Y., Brown C., Burslem D.F.R.P., Cao M., Chang L.W., Dattaraja H.S., Davies S.J., Gunatilleke C.V.S., Gunatilleke I.A.U.N., Huang J., Illian J.B., Kassim A.R., laFrankie J.V., Law R., Lian J., Lin L., Ma K., Mi X., Nathalang A., Noor S., Ong P.S., Renato Valencia, Su S.H., Sukumar R., Sun I.F., Suresh H.S., Tan S., Thompson J., Uriarte M., Yap S.L., Ye W.Fuentes:googlescopusNeighborhood and community interactions determine the spatial pattern of tropical tree seedling survival
ArticleAbstract: Factors affecting survival and recruitment of 3531 individually mapped seedlings of Myristicaceae wePalabras claves:Autologistic regression, Community compensatory trend (CCT), ECUADOR, Myristicaceae, Seedling, Spatial Autocorrelation, Species coexistence, Tropical Forest, YasuniAutores:Burslem D.F.R.P., Garwood N.C., Renato Valencia, Simon A. QueenboroughFuentes:scopusHabitat niche partitioning by 16 species of Myristicaceae in Amazonian Ecuador
ArticleAbstract: The distribution and spatial pattern of plants in tropical forests have important implications for hPalabras claves:COEXISTENCE, Lowland tropical rain forest, species diversity, YasuniAutores:Burslem D.F.R.P., Garwood N.C., Renato Valencia, Simon A. QueenboroughFuentes:scopusTropical forest wood production: A cross-continental comparison
ArticleAbstract: Summary: Tropical forest above-ground wood production (AGWP) varies substantially along environmentaPalabras claves:AMAZON, Asia, carbon, Dipterocarpaceae, Dynamics, growth, Plant-soil interactions, Productivity, soil nutrients, Tropical ForestAutores:Abu Salim K., Baker T.R., Banin L.F., Burslem D.F.R.P., Chao K.J., David A. Neill, Davies S.J., Keeling H.C., Lewis S.L., Lloyd J.J., López-González G., Monteagudo-Mendoza A., Nilus R., Phillips O.L., Pitman N.C.A., Quesada C.A., Tan S., Vasquez R.V.Fuentes:scopusSpatial patterns reveal negative density dependence and habitat associations in tropical trees
ArticleAbstract: Understanding how plant species coexist in tropical rainforests is one of the biggest challenges inPalabras claves:Environmental heterogeneity, Inhomogeneous K function, Janzen-Connell hypothesis, Negative density dependence, Species coexistence, Tropical rain forestAutores:Bagchi R., Brown P.E., Burslem D.F.R.P., Diggle P.J., Gunatilleke C.V.S., Gunatilleke I.A.U.N., Henrys P.A., Kassim A.R., Law R., Noor S., Renato ValenciaFuentes:googlescopus