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Proceedings of the National Academy of Sciences of the United States of America|December 15, 2011
The roles of hydraulic and carbon stress in a widespread climate-induced forest die-offWilliam R L Anderegg, Joseph A Berry, Duncan D Smith, et al.Plant, Cell & Environment|October 21, 2016
Predicting stomatal responses to the environment from the optimization of photosynthetic gain and hydraulic costJohn S Sperry, Martin D Venturas, William R L Anderegg, et al.The New Phytologist|June 23, 2016
Pragmatic hydraulic theory predicts stomatal responses to climatic water deficitsJohn S Sperry, Yujie Wang, Brett T Wolfe, et al.The New Phytologist|July 13, 2018
A stomatal control model based on optimization of carbon gain versus hydraulic risk predicts aspen sapling responses to droughtMartin D Venturas, John S Sperry, David M Love, et al.The New Phytologist|February 18, 2020
Plant responses to rising vapor pressure deficitCharlotte Grossiord, Thomas N Buckley, Lucas A Cernusak, et al.The New Phytologist|July 6, 2019
Conifers depend on established roots during drought: results from a coupled model of carbon allocation and hydraulicsD Scott Mackay, Philip R Savoy, Charlotte Grossiord, et al.Ecology Letters|June 27, 2013
An empirical assessment of tree branching networks and implications for plant allometric scaling modelsLisa Patrick Bentley, James C Stegen, Van M Savage, et al.Nature|September 21, 2018
Hydraulic diversity of forests regulates ecosystem resilience during droughtWilliam R L Anderegg, Alexandra G Konings, Anna T Trugman, et al.Plos One|October 13, 2017
Plant water potential improves prediction of empirical stomatal modelsWilliam R L Anderegg, Adam Wolf, Adriana Arango-Velez, et al.Ecology Letters|April 25, 2018
Woody plants optimise stomatal behaviour relative to hydraulic riskWilliam R L Anderegg, Adam Wolf, Adriana Arango-Velez, et al.Pageof 7