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Nature Communications|October 31, 2023
Increasing atmospheric dryness reduces boreal forest tree growthAriane Mirabel, Martin P Girardin, Juha Metsaranta, et al.Proceedings of the National Academy of Sciences of the United States of America|April 27, 2022
Cold-season freeze frequency is a pervasive driver of subcontinental forest growthMartin P Girardin, Xiao Jing Guo, David Gervais, et al.Ecology and Evolution|November 12, 2021
30 Years of postdisturbance recruitment in a Neotropical forestAriane Mirabel, Eric Marcon, Bruno HéraultEcological Applications : a Publication of the Ecological Society of America|May 21, 2008
Past and future changes in Canadian boreal wildfire activityMartin P Girardin, Manfred MudelseeProceedings. Biological Sciences|January 27, 2012
Key canopy traits drive forest productivityPeter B ReichScience (New York, N.Y.)|December 8, 2009
Elevated CO2 reduces losses of plant diversity caused by nitrogen depositionPeter B ReichAnnals of Botany|January 5, 2011
Multi-trait interactions, not phylogeny, fine-tune leaf size reduction with increasing altitudeRubén Milla, Peter B ReichOecologia|June 1, 2006
Elevated [CO2] and increased N supply reduce leaf disease and related photosynthetic impacts on Solidago rigidaJoachim Strengbom, Peter B ReichProceedings of the National Academy of Sciences of the United States of America|June 24, 2004
Global patterns of plant leaf N and P in relation to temperature and latitudePeter B Reich, Jacek OleksynProceedings. Biological Sciences|June 27, 2007
The scaling of leaf area and mass: the cost of light interception increases with leaf sizeRubén Milla, Peter B ReichPageof 43