Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Toriyama, Jumpei
Ohta, Seiich
Araki, Makoto
Kanzaki, Mamoru
Khorn, Saret
Pith, Phearak
Lim, Sopheap
and
Pol, Sopheavuth
2008.
Comparison of soil physical properties in evergreen and deciduous forests in central Cambodia.
Journal of Forest Research,
Vol. 13,
Issue. 1,
p.
15.
Leigh, E.G.
2008.
Encyclopedia of Ecology.
p.
3629.
Scholten, Melissa
Donahue, Jacklyn
Shaw, Nancy L.
and
Serpe, Marcelo D.
2009.
Environmental regulation of dormancy loss in seeds of Lomatium dissectum (Apiaceae).
Annals of Botany,
Vol. 103,
Issue. 7,
p.
1091.
Markesteijn, Lars
Iraipi, José
Bongers, Frans
and
Poorter, Lourens
2010.
Seasonal variation in soil and plant water potentials in a Bolivian tropical moist and dry forest.
Journal of Tropical Ecology,
Vol. 26,
Issue. 5,
p.
497.
Andersen, Kelly M.
Turner, Benjamin L.
and
Dalling, James W.
2010.
Soil‐based habitat partitioning in understorey palms in lower montane tropical forests.
Journal of Biogeography,
Vol. 37,
Issue. 2,
p.
278.
Wagner, Fabien
Hérault, Bruno
Stahl, Clément
Bonal, Damien
and
Rossi, Vivien
2011.
Modeling water availability for trees in tropical forests.
Agricultural and Forest Meteorology,
Vol. 151,
Issue. 9,
p.
1202.
Endara, María J.
and
Jaramillo, Jaime L.
2011.
The Influence of Microtopography and Soil Properties on the Distribution of the Speciose Genus of Trees, Inga (Fabaceae:Mimosoidea), in Ecuadorian Amazonia.
Biotropica,
Vol. 43,
Issue. 2,
p.
157.
Chong, C.W.
Pearce, D.A.
Convey, P.
and
Tan, I.K.P.
2012.
The identification of environmental parameters which could influence soil bacterial community composition on the Antarctic Peninsula - a statistical approach.
Antarctic Science,
Vol. 24,
Issue. 3,
p.
249.
Maréchaux, Isabelle
Bartlett, Megan K.
Sack, Lawren
Baraloto, Christopher
Engel, Julien
Joetzjer, Emilie
Chave, Jérôme
and
Kitajima, Kaoru
2015.
Drought tolerance as predicted by leaf water potential at turgor loss point varies strongly across species within an Amazonian forest.
Functional Ecology,
Vol. 29,
Issue. 10,
p.
1268.
Wolfe, Brett T.
and
Goldstein, Guillermo
2017.
Retention of stored water enables tropical tree saplings to survive extreme drought conditions.
Tree Physiology,
Vol. 37,
Issue. 4,
p.
469.
Leigh, Egbert G.
2019.
Encyclopedia of Ecology.
p.
684.
Méndez‐Toribio, Moisés
Ibarra‐Manríquez, Guillermo
Paz, Horacio
Lebrija‐Trejos, Edwin
and
Chen, Han
2020.
Atmospheric and soil drought risks combined shape community assembly of trees in a tropical dry forest.
Journal of Ecology,
Vol. 108,
Issue. 4,
p.
1347.
Cheng, Yanyan
Leung, L. Ruby
Huang, Maoyi
Koven, Charles
Detto, Matteo
Knox, Ryan
Bisht, Gautam
Bretfeld, Mario
and
Fisher, Rosie A.
2022.
Modeling the Joint Effects of Vegetation Characteristics and Soil Properties on Ecosystem Dynamics in a Panama Tropical Forest.
Journal of Advances in Modeling Earth Systems,
Vol. 14,
Issue. 1,
Collins, Colton
Wardle, David A.
and
Andersen, Kelly M.
2022.
Palm Species Traits Determine Soil Nutrient Effects on Seedling Performance.
Frontiers in Forests and Global Change,
Vol. 5,
Issue. ,
Ward, Sheila E
Brokaw, Nicholas
Walling, Stanley
and
Cortes-Rincon, Marisol
2023.
Tree species on environmental gradients in subtropical forest of northwest Belize, in the Maya Lowlands.
Progress in Physical Geography: Earth and Environment,
Vol. 47,
Issue. 2,
p.
249.
Wood, Jeffrey D.
Gu, Lianhong
Hanson, Paul J.
Frankenberg, Christian
and
Sack, Lawren
2023.
The ecosystem wilting point defines drought response and recovery of a Quercus‐Carya forest.
Global Change Biology,
Vol. 29,
Issue. 7,
p.
2015.