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Plant Physiology|June 7, 2018
Infrared Nanospectroscopy Reveals the Chemical Nature of Pit Membranes in Water-Conducting Cells of the Plant XylemLuciano Pereira, Denisele N A Flores-Borges, Paulo R L Bittencourt, et al.
Tree Physiology|August 27, 2024
PSInet: a new global water potential networkAna Maria Restrepo-Acevedo, Jessica S Guo, Steven A Kannenberg, et al.
Ecology Letters|August 19, 2021
Hydraulic prediction of drought-induced plant dieback and top-kill depends on leaf habit and growth formYa-Jun Chen, Brendan Choat, Frank Sterck, et al.
Plant, Cell & Environment|April 25, 2024
Rootstocks affect the vulnerability to embolism and pit membrane thickness in Citrus scionsMarcela T Miranda, Gabriel S Pires, Luciano Pereira, et al.
The New Phytologist|June 20, 2019
Leaf economics and plant hydraulics drive leaf : wood area ratiosMaurizio Mencuccini, Teresa Rosas, Lucy Rowland, et al.
Journal of Experimental Botany|September 6, 2018
Is xylem of angiosperm leaves less resistant to embolism than branches? Insights from microCT, hydraulics, and anatomyMatthias Klepsch, Ya Zhang, Martyna M Kotowska, et al.
Plant, Cell & Environment|August 29, 2019
The Pneumatron: An automated pneumatic apparatus for estimating xylem vulnerability to embolism at high temporal resolutionLuciano Pereira, Paulo R L Bittencourt, Vinícius S Pacheco, et al.
The New Phytologist|May 4, 2017
Xylem resistance to embolism: presenting a simple diagnostic test for the open vessel artefactJosé M Torres-Ruiz, Hervé Cochard, Brendan Choat, et al.
Tree Physiology|February 24, 2018
Testing the plant pneumatic method to estimate xylem embolism resistance in stems of temperate treesYa Zhang, Laurent J Lamarque, José M Torres-Ruiz, et al.
Plant Physiology|September 11, 2016
Evidence for Hydraulic Vulnerability Segmentation and Lack of Xylem Refilling under TensionGuillaume Charrier, José M Torres-Ruiz, Eric Badel, et al.
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