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The New Phytologist|January 26, 2011
Carbon reserves and canopy defoliation determine the recovery of Scots pine 4 yr after a drought episodeL Galiano, J Martínez-Vilalta, F LloretOecologia|March 29, 2018
Changes in tree resistance, recovery and resilience across three successive extreme droughts in the northeast Iberian PeninsulaX Serra-Maluquer, M Mencuccini, J Martínez-VilaltaTree Physiology|December 16, 2006
Plant size, not age, regulates growth and gas exchange in grafted Scots pine treesD Vanderklein, J Martínez-Vilalta, S Lee, et al.Tree Physiology|November 26, 2016
Isohydric species are not necessarily more carbon limited than anisohydric species during droughtN Garcia-Forner, C Biel, R Savé, et al.Tree Physiology|March 1, 2015
The role of defoliation and root rot pathogen infection in driving the mode of drought-related physiological decline in Scots pine (Pinus sylvestris L.)D Aguadé, R Poyatos, M Gómez, et al.Ecology Letters|March 1, 2011
Size-mediated ageing reduces vigour in treesM Mencuccini, J Martínez-Vilalta, D Vanderklein, et al.Oecologia|April 25, 2007
Plasticity in hydraulic architecture of Scots pine across EurasiaR Poyatos, J Martínez-Vilalta, J Cermák, et al.The New Phytologist|August 14, 2009
Hydraulic adjustment of Scots pine across EuropeJ Martínez-Vilalta, H Cochard, M Mencuccini, et al.Proceedings. Biological Sciences|March 12, 2020
Disentangling functional trait variation and covariation in epiphytic lichens along a continent-wide latitudinal gradientP Hurtado, M Prieto, J Martínez-Vilalta, et al.Pageof 1