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We model future changes in land biogeochemistry and biogeography across East Africa. East Africa is one of few tropical regions where general circulation model (GCM) future climate projections exhibit a robust response of strong future warming and general annual-mean rainfall increases. Eighteen ...


Doherty, R.M.Stich, S.Smith, B.Lewis, S.L.Thornton, Philip K.[A green future for East Africa: implications of future climate and atmospheric CO2 content on regional carbon cycling and biogeography]A green future for East Africa: implications of future climate and atmospheric CO2 content on regional carbon cycling and biogeography

We model future changes in land biogeochemistry and biogeography across East Africa. East Africa is one of few tropical regions where general circulation model (GCM) future climate projections exhibit a robust response of strong future warming and general annual-mean rainfall increases. Eighteen ...


Doherty, R.M.Sitch, S.Smith, B.Lewis, S.L.Thornton, Philip K.[Implications of future climate and atmospheric CO2 content for regional biogeochemistry, biogeography and ecosystem services across East Africa]Implications of future climate and atmospheric CO2 content for regional biogeochemistry, biogeography and ecosystem services across East Africa

Mathematical proofs show that rate estimates, for example of mortality and recruitment, will decrease with increasing census interval when obtained from censuses of non-homogeneous populations. This census interval effect could be confounding or perhaps even driving conclusions from comparative s...


Lewis, S.L.Phillips, O.L.Sheil, DouglasVinceti, B.Baker, T.R.Brown, S.Graham, A.W.Higuchi, N.Hilbert, D.W.Laurance, W.F.Lejoly, J.Malhi, Y.Monteagudo, A.Vargas, P. NÚÑEzSonke, B.Terborgh, J.W.Martínez, R.V.[Tropical forest tree mortality, recruitment and turnover rates: calculation, interpretation and comparison when census intervals vary]Tropical forest tree mortality, recruitment and turnover rates: calculation, interpretation and comparison when census intervals vary
Parmentier, I.Harrigan, R.J.Buermann, W.Mitchard, E.T.A.Saatchi, S.Malhi, Y.Bongers, F.Hawthorne, W.D.Leal, M.E.Lewis, S.L.Nusbaumer, L.Sheil, DouglasSosef, M.S.M.Affum-Baffoe, K.Bakayoko, A.Chuyong, G.B.Chatelain, C.Comiskey, J.A.Dauby, G.Doucet, J.L.Fauset, S.Gautier, L.Gillet, J.F.Kenfack, D.Kouame, F.N.Kouassi, E.K.Kouka, L.A.Parren, M.P.E.Peh, K.S.H.Reitsma, J.M.Senterre, B.Sonke, B.Sunderland, T.C.H.Swaine, M.D.Tchouto, M.G.P.Thomas, D.Valkenburg, J.L.C.H. vanHardy, O.J.[Predicting alpha diversity of African rain forests: models based on climate and satellite-derived data do not perform better than a purely spatial model]Predicting alpha diversity of African rain forests: models based on climate and satellite-derived data do not perform better than a purely spatial model
Gloor, M.Phillips, O.L.Lloyd, J.J.Lewis, S.L.Malhi, Y.Baker, T.R.López Gonzalez, G.Peacock, J.Almeida, S.Alves de Oliveira, A.C.Álvarez, E.Amaral, I.Arroyo, L.Aymard, G.Banki, O.Blanc, LilianBonal, D.Brando, P.Chao, K.J.Chaves, J.DÁVila, N.Erwin, T.Silva, J.Fiore, A. diFeldpausch, T.R.Freitas, A.Herrera, R.Higuchi, N.Honorio, E.Jiménez, E.Killeen, T.Laurance, W.Mendoza, C.Monteagudo, A.Andrade, A.Neill, D.Nepstad, D.Vargas, P. NÚÑEzPeÑUela, M. C.Cruz, A. PeÑAPrieto, A.Pitman, N.Quesada, C.SalomÃO, R.Silveira, MarcosSchwarz, M.Stropp, J.RamÍRez, F.RamÍRez, H.Rudas, A.Steege, H. terSilva, J.N.M.Torres, A.Terborgh, J.W.Vásquez, R.Heijden, G. van der[Does the disturbance hypothesis explain the biomass increase in basin-wide Amazon forest plot data?]Does the disturbance hypothesis explain the biomass increase in basin-wide Amazon forest plot data?
Lewis, S.L.López Gonzalez, G.Sonke, B.Affum-Baffoe, K.Baker, T.R.Ojo, L.O.Phillips, O.L.Reitsma, J.M.White, L.Comiskey, J.A.Djuikouo K., M.N.Ewango, C.E.N.Feldpausch, T.R.Hamilton, A.L.Gloor, M.Hart, T.Hladik, A.Lloyd, J.Lovett, J.C.Makana, J.R.Malhi, Y.Mbago, F.M.Ndangalasi, H.J.Peacock, J.Peh, K.S.H.Sheil, DouglasSunderland, T.C.H.Swaine, M.D.Taplin, J.Taylor, D.Thomas, S.C.Votere, R.Woll, H.[Increasing carbon storage in intact African tropical forests]Increasing carbon storage in intact African tropical forests
Dexter, K.Smart, B.Baldauf, C.Baker, T.R.Balinga, M.P.Brienen, R.J.W.Fauset, S.Feldpausch, T.R.Silva, L. Ferreira-DaMuledi, J. IlungaLewis, S.L.López Gonzalez, G.Marimon-Junior, B.H.Marimon, B.S.Meerts, P.Page, N.Parthasarathy, N.Phillips, O.L.Sunderland, T.C.H.Theilade, I.Weintritt, J.Affum-Baffoe, K.Araújo, A.Arroyo, L.Begne, S.K.Neves, E. Carvalho-DasCollins, M.Cuni-Sanchez, A.Djuikouo K., M.N.Elias, F.Foli, E.G.Jeffery, K.J.Killeen, T.Malhi, Y.Maracahipes, L.Mendoza, C.Morandi, P.Santos, C. Oliveira-DosParada-Gutierrez, A.Pardo, G.Peh, K.S.H.Salomão, R.P.Silveira, M.Sinatora-Miranda, H.Silk, J.W.F.Sonke, B.Taedoumg, H. E.Toledo, M.Umetsu, R.K.Villaroel, R.G.Vos, V.White, L.J.T.Pennington, R.T.[Floristics and biogeography of vegetation in seasonally dry tropical regions]Floristics and biogeography of vegetation in seasonally dry tropical regions
Lan, Q.Lewis, S.L.Sullivan, M.J.P.López Gonzalez, G.Pickavance, G.C.Sunderland, T.C.H.Ashton, P.Hubau, W.Salim, K.A.Aiba, Shin-IchiroBanin, L.F.Berry, N.Brearley, F.Q.Burslem, D.F.R.P.Dancák, M.Davies, S.J.Fredriksson, G.Hamer, K.C.Hédl, R.Lip, K.K.Kitayama, K.Krisnawati, H.Lhota, S.Malhi, Y.Maycock, C.Metali, F.Mirmanto, E.Nagy, L.Nilus, R.Ong, R.Pendry, C.A.Poulsen, A.D.Primack, R.B.Rutishauser, E.Samsoedin, I.Saragih, B.Sist, P.Slik, J.W.F.Sukri, R.S.Svátek, M.Tan, S.Tjoa, A.Nieuwstadt, M. vanVernimmen, R.R.E.Yassir, I.Kidd, P.S.Fitriadi, M.Ideris, N.K.M.Serudin, R.M.Lim, L.S.A.Saparudin, M.S.Phillips, O.L.[Long-term carbon sink in Borneo's forests halted by drought and vulnerable to edge effects]Long-term carbon sink in Borneo's forests halted by drought and vulnerable to edge effects
Lewis, S.L.Sonke, B.Sunderland, T.C.H.Begne, S.K.López Gonzalez, GHeijden, G.M.F. van derPhillips, O. LAffum-Baffoe, K.Baker, T.R.Banin, L.Bastin, J. F.Beeckman, H.Bogaert, J.Cannière, C. deChezeaux, E.Clark, C.J.Collins, M.Djagbletey, GDjuikouo K., M.N.Droissart, V.Doucet, J.L.Ewango, C.E.N.Fauset, SFeldpausch, T.R.Foli, E.G.Gillet, J.FHamilton, A. CHarris, D. JHart, T.BHaulleville, T. deHladik, AHufkens, KHuygens, DJeanmart, P.Jeffery, K.J.Kearsley, E.Leal, M. ELloyd, J.Lovett, J.CMakana, J.R.Malhi, YMarshall, A. ROjo, L.OPeh, K.S.HPickavance, GPoulsen, J.RReitsma, J.MSheil, D.Simo, MSteppe, KTaedoumg, H. ETalbot, JTaplin, J. R. DTaylor, DThomas, S.C.Toirambe, B.Verbeeck, H.Vleminckx, J.White, L.J.TWillcock, SWoell, HZemagho, L.[Above-ground biomass and structure of 260 African tropical forests]Above-ground biomass and structure of 260 African tropical forests
Jingjing, L.Crowther, T.W.Picard, N.Wiser, S.Mo, Z.Alberti, G.Schulze, Ernst-DetlefMcGuire, A.D.Bozzato, F.Pretzsch, H.Miguel, S. dePaquette, A.Hérault, B.Scherer-Lorenzen, M.Barrett, Christopher B.Glick, H.B.Hengeveld, G.M.Nabuurs, G-J.Pfautsch, S.Viana, H.Vibrans, A.C.Ammer, C.Schall, P.Verbyla, D.Tchebakova, N.Fischer, M.Watson, J.V.Han, Y.H.C.Xiandong, L.Schelhaas, M-J.Huicui, L.Gianelle, D.Parfenova, E.I.Salas, C.Lee, E.Lee, B.Hyun, S.K.Bruelheide, H.Coomes, D.A.Piotto, D.Sunderland, T.C.H.Schmid, B.Gourlet-Fleury, S.Sonké, B.Tavani, R.Jun, Z.Brandl, S.Vayreda, J.Kitahara, F.Searle, E.B.Neldner, V.J.Ngugi, M.R.Baraloto, C.Frizzera, L.Balazy, R.Oleksyn, J.Zawila-Niedzwiecki, T.Bouriaud, O.Bussotti, F.Finér, L.Jaroszewicz, B.Jucker, T.Valladares, F.Jagodzinski, A.M.Peri, P.L.Gonmadje, C.Marthy, W.O'Brien, T.Martin, E.H.Marshall, A.R.Rovero, F.Bitariho, R.Niklaus, P.A.Álvarez Loayza, P.Chamuya, N.Valencia, R.Mortier, F.Wortel, V.Engone-Obiang, N.L.Ferreira, L.V.Odeke, D.E.Vásquez, R.M.Lewis, S.L.Reich, P.B.[Positive biodiversity-productivity relationship predominant in global forests]Positive biodiversity-productivity relationship predominant in global forests

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