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Scott R Saleska

Showing results (11-20 of 57) with videos related to

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Plos One|November 17, 2016
Synergistic Ecoclimate Teleconnections from Forest Loss in Different Regions Structure Global Ecological ResponsesElizabeth S Garcia, Abigail L S Swann, Juan C Villegas, et al.
The New Phytologist|June 28, 2019
Leaf reflectance spectroscopy captures variation in carboxylation capacity across species, canopy environment and leaf age in lowland moist tropical forestsJin Wu, Alistair Rogers, Loren P Albert, et al.
Global Change Biology|February 21, 2023
The role of ecosystem transpiration in creating alternate moisture regimes by influencing atmospheric moisture convergenceAnastassia M Makarieva, Andrei V Nefiodov, Antonio Donato Nobre, et al.
Proceedings of the National Academy of Sciences of the United States of America|April 9, 2014
Changes in peat chemistry associated with permafrost thaw increase greenhouse gas productionSuzanne B Hodgkins, Malak M Tfaily, Carmody K McCalley, et al.
Ecology Letters|July 6, 2017
Variations of leaf longevity in tropical moist forests predicted by a trait-driven carbon optimality modelXiangtao Xu, David Medvigy, Stuart Joseph Wright, et al.
Global Change Biology|April 21, 2017
Differences in xylem and leaf hydraulic traits explain differences in drought tolerance among mature Amazon rainforest treesThomas L Powell, James K Wheeler, Alex A R de Oliveira, et al.
Ecology Letters|May 13, 2015
Linking canopy leaf area and light environments with tree size distributions to explain Amazon forest demographyScott C Stark, Brian J Enquist, Scott R Saleska, et al.
Systematic and Applied Microbiology|January 9, 2019
Discovery and ecogenomic context of a global Caldiserica-related phylum active in thawing permafrost, Candidatus Cryosericota phylum nov., Ca. Cryosericia class nov., Ca. Cryosericales ord. nov., Ca. Cryosericaceae fam. nov., comprising the four species Cryosericum septentrionale gen. nov. sp. nov., Ca. C. hinesii sp. nov., Ca. C. odellii sp. nov., Ca. C. terrychapinii sp. novMiguel A Martinez, Ben J Woodcroft, Julio C Ignacio Espinoza, et al.
Proceedings of the National Academy of Sciences of the United States of America|November 17, 2011
Reduced impact logging minimally alters tropical rainforest carbon and energy exchangeScott D Miller, Michael L Goulden, Lucy R Hutyra, et al.
The New Phytologist|May 29, 2025
Seasonal and intracanopy shifts in the fates of absorbed photons in central Amazonian forests: implications for leaf fluorescence and photosynthesisLeonardo G Ziccardi, David Kramer, Nathan Gonçalves, et al.
Pageof 6

Showing results (11-20 of 57) with videos related to

Sort By:
Pageof 6
Plos One|November 17, 2016
Synergistic Ecoclimate Teleconnections from Forest Loss in Different Regions Structure Global Ecological ResponsesElizabeth S Garcia, Abigail L S Swann, Juan C Villegas, et al.
The New Phytologist|June 28, 2019
Leaf reflectance spectroscopy captures variation in carboxylation capacity across species, canopy environment and leaf age in lowland moist tropical forestsJin Wu, Alistair Rogers, Loren P Albert, et al.
Global Change Biology|February 21, 2023
The role of ecosystem transpiration in creating alternate moisture regimes by influencing atmospheric moisture convergenceAnastassia M Makarieva, Andrei V Nefiodov, Antonio Donato Nobre, et al.
Proceedings of the National Academy of Sciences of the United States of America|April 9, 2014
Changes in peat chemistry associated with permafrost thaw increase greenhouse gas productionSuzanne B Hodgkins, Malak M Tfaily, Carmody K McCalley, et al.
Ecology Letters|July 6, 2017
Variations of leaf longevity in tropical moist forests predicted by a trait-driven carbon optimality modelXiangtao Xu, David Medvigy, Stuart Joseph Wright, et al.
Global Change Biology|April 21, 2017
Differences in xylem and leaf hydraulic traits explain differences in drought tolerance among mature Amazon rainforest treesThomas L Powell, James K Wheeler, Alex A R de Oliveira, et al.
Ecology Letters|May 13, 2015
Linking canopy leaf area and light environments with tree size distributions to explain Amazon forest demographyScott C Stark, Brian J Enquist, Scott R Saleska, et al.
Systematic and Applied Microbiology|January 9, 2019
Discovery and ecogenomic context of a global Caldiserica-related phylum active in thawing permafrost, Candidatus Cryosericota phylum nov., Ca. Cryosericia class nov., Ca. Cryosericales ord. nov., Ca. Cryosericaceae fam. nov., comprising the four species Cryosericum septentrionale gen. nov. sp. nov., Ca. C. hinesii sp. nov., Ca. C. odellii sp. nov., Ca. C. terrychapinii sp. novMiguel A Martinez, Ben J Woodcroft, Julio C Ignacio Espinoza, et al.
Proceedings of the National Academy of Sciences of the United States of America|November 17, 2011
Reduced impact logging minimally alters tropical rainforest carbon and energy exchangeScott D Miller, Michael L Goulden, Lucy R Hutyra, et al.
The New Phytologist|May 29, 2025
Seasonal and intracanopy shifts in the fates of absorbed photons in central Amazonian forests: implications for leaf fluorescence and photosynthesisLeonardo G Ziccardi, David Kramer, Nathan Gonçalves, et al.
Pageof 6