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Plant, Cell & Environment|December 6, 2012
Modulation of respiratory metabolism in response to nutrient changes along a soil chronosequenceAri Kornfeld, Owen K Atkin, Kevin L Griffin, et al.Oecologia|January 20, 2005
Respiration characteristics in temperate rainforest tree species differ along a long-term soil-development chronosequenceMatthew H Turnbull, David T Tissue, Kevin L Griffin, et al.The New Phytologist|April 12, 2005
Atmospheric CO2 enrichment alters energy assimilation, investment and allocation in Xanthium strumariumJennifer M Nagel, Xianzhong Wang, James D Lewis, et al.The New Phytologist|August 17, 2005
Sap flow rates and sapwood density are critical factors in within- and between-tree variation in CO2 efflux from stems of mature Dacrydium cupressinum treesWilliam P Bowman, Margaret M Barbour, Matthew H Turnbull, et al.Ecological Applications : a Publication of the Ecological Society of America|October 17, 2021
Model responses to CO2 and warming are underestimated without explicit representation of Arctic small-mammal grazingEdward B Rastetter, Kevin L Griffin, Rebecca J Rowe, et al.Tree Physiology|February 10, 2018
Temperature response of respiration and respiratory quotients of 16 co-occurring temperate tree speciesAngelica E Patterson, Rachel Arkebauer, Crystal Quallo, et al.Tree Physiology|September 25, 2020
Contrasting physiological traits of shade tolerance in Pinus and Podocarpaceae native to a tropical Vietnamese forest: insight from an aberrant flat-leaved pineStephanie C Schmiege, Brendan M Buckley, Dennis Stevenson, et al.Tree Physiology|November 5, 2002
Leaf respiration at different canopy positions in sweetgum (Liquidambar styraciflua) grown in ambient and elevated concentrations of carbon dioxide in the fieldDavid T Tissue, James D Lewis, Stan D Wullschleger, et al.Tree Physiology|April 12, 2012
Urban environment of New York City promotes growth in northern red oak seedlingsStephanie Y Searle, Matthew H Turnbull, Natalie T Boelman, et al.The New Phytologist|January 3, 2013
Respiratory flexibility and efficiency are affected by simulated global change in Arctic plantsAri Kornfeld, Mary Heskel, Owen K Atkin, et al.Pageof 9