Vegetation demographics in Earth System Models: A review of progress and priorities RA Fisher, CD Koven, WRL Anderegg, BO Christoffersen, MC Dietze, ...
Global change biology 24 (1), 35-54, 2018
628 2018 Multidimensional tropical forest recovery L Poorter, D Craven, CC Jakovac, MT Van Der Sande, L Amissah, ...
Science 374 (6573), 1370-1376, 2021
340 2021 Evolutionarily stable strategy carbon allocation to foliage, wood, and fine roots in trees competing for light and nitrogen: an analytically tractable, individual-based model … R Dybzinski, C Farrior, A Wolf, PB Reich, SW Pacala
The American Naturalist 177 (2), 153-166, 2011
226 2011 Demographic trade-offs predict tropical forest dynamics N Rüger, R Condit, DH Dent, SJ DeWalt, SP Hubbell, JW Lichstein, ...
Science 368 (6487), 165-168, 2020
186 2020 Organizing principles for vegetation dynamics O Franklin, SP Harrison, R Dewar, CE Farrior, Å Brännström, ...
Nature plants 6 (5), 444-453, 2020
171 2020 Dominance of the suppressed: Power-law size structure in tropical forests CE Farrior, SA Bohlman, S Hubbell, SW Pacala
Science 351 (6269), 155-157, 2016
142 2016 Resource limitation in a competitive context determines complex plant responses to experimental resource additions CE Farrior, D Tilman, R Dybzinski, PB Reich, SA Levin, SW Pacala
Ecology 94 (11), 2505-2517, 2013
131 2013 Scaling from individual trees to forests in an Earth system modeling framework using a mathematically tractable model of height-structured competition ES Weng, S Malyshev, JW Lichstein, CE Farrior, R Dybzinski, T Zhang, ...
Biogeosciences 12 (9), 2655-2694, 2015
120 2015 Competition for water and light in closed-canopy forests: a tractable model of carbon allocation with implications for carbon sinks CE Farrior, R Dybzinski, SA Levin, SW Pacala
The American Naturalist 181 (3), 314-330, 2013
110 2013 Decreased water limitation under elevated CO2 amplifies potential for forest carbon sinks CE Farrior, I Rodriguez-Iturbe, R Dybzinski, SA Levin, SW Pacala
Proceedings of the National Academy of Sciences 112 (23), 7213-7218, 2015
68 2015 Optimal stomatal drought response shaped by competition for water and hydraulic risk can explain plant trait covariation Y Lu, RA Duursma, CE Farrior, BE Medlyn, X Feng
New Phytologist 225 (3), 1206-1217, 2020
66 2020 Predicting vegetation type through physiological and environmental interactions with leaf traits: evergreen and deciduous forests in an earth system modeling framework E Weng, CE Farrior, R Dybzinski, SW Pacala
Global change biology 23 (6), 2482-2498, 2017
61 2017 Increased forest carbon storage with increased atmospheric CO 2 despite nitrogen limitation: A game‐theoretic allocation model for trees in competition for nitrogen and light R Dybzinski, CE Farrior, SW Pacala
Global Change Biology 21 (3), 1182-1196, 2015
50 2015 How are nitrogen availability, fine‐root mass, and nitrogen uptake related empirically? Implications for models and theory R Dybzinski, A Kelvakis, J McCabe, S Panock, K Anuchitlertchon, ...
Global Change Biology 25 (3), 885-899, 2019
31 2019 Competition alters predicted forest carbon cycle responses to nitrogen availability and elevated : simulations using an explicitly competitive, game-theoretic … E Weng, R Dybzinski, CE Farrior, SW Pacala
Biogeosciences 16 (23), 4577-4599, 2019
27 2019 Interspecific vs intraspecific patterns in leaf nitrogen of forest trees across nitrogen availability gradients R Dybzinski, CE Farrior, S Ollinger, SW Pacala
New Phytologist 200 (1), 112-121, 2013
22 2013 Nothing in evolution makes sense except in the light of biology MOB Reiskind, ML Moody, DI Bolnick, CT Hanifin, CE Farrior
Bioscience 71 (4), 370-382, 2021
21 2021 The function‐dominance correlation drives the direction and strength of biodiversity–ecosystem functioning relationships MS Crawford, KE Barry, AT Clark, CE Farrior, J Hines, E Ladouceur, ...
Ecology Letters 24 (9), 1762-1775, 2021
20 2021 Demographic synthesis for global tree species conservation B Ohse, A Compagnoni, CE Farrior, SM McMahon, R Salguero-Gómez, ...
Trends in Ecology & Evolution 38 (6), 579-590, 2023
16 2023 Theory predicts plants grow roots to compete with only their closest neighbours CE Farrior
Proceedings of the Royal Society B 286 (1912), 20191129, 2019
15 2019