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Verity Salmon

Biographic Data

ID7993018
NAMEVerity Salmon
GIVEN NAMESVerity
FAMILY NAMESalmon
SIGNATURESALMON V
AFFILIATIONSOak Ridge National Laboratory
ORCID0000-0002-2188-551X
VERIFIEDYes
TOTAL WORKS3
TOTAL CITATIONS0
AUTHOR COUNT3
EDITOR COUNT0
FIRST PUBLICATION YEAR2018
LATEST PUBLICATION YEAR2021
H-INDEX0
  • Landscape-scale characterization of Arctic tundra vegetation composition, structure, and function with a multi-sensor unoccupied aerial system

    Open Access•Dedi Yang, Bailey D Morrison et al.•ARTICLE•Environmental Research Letters•2021

    The Arctic is experiencing some of the most rapid climate change on Earth, with strong impacts on tundra ecosystems that are characterized by high land-surface and vegetation heterogeneity. Previous studies have explored this complexity using satellite remote sensing, however these typically coarse spatial resolution data have generally missed sub-pixel heterogeneity, leaving critical gaps in our understanding of tundra vegetation dynamics from t…

  • Shallow soils are warmer under trees and tall shrubs across Arctic and Boreal ecosystems

    Open Access•Heather Kropp, M M Loranty et al.•ARTICLE•Environmental Research Letters•2020

    Soils are warming as air temperatures rise across the Arctic and Boreal region concurrent with the expansion of tall-statured shrubs and trees in the tundra. Changes in vegetation structure and function are expected to alter soil thermal regimes, thereby modifying climate feedbacks related to permafrost thaw and carbon cycling. However, current understanding of vegetation impacts on soil temperature is limited to local or regional scales and lack…

  • Divergent patterns of experimental and model-derived permafrost ecosystem carbon dynamics in response to Arctic warming

    Open Access•Christina Schädel, Charles D Koven et al.•ARTICLE•Environmental Research Letters•2018

    In the last few decades, temperatures in the Arctic have increased twice as much as the rest of the globe. As permafrost thaws in response to this warming, large amounts of soil organic matter may become vulnerable to decomposition. Microbial decomposition will release carbon (C) from permafrost soils, however, warmer conditions could also lead to enhanced plant growth and C uptake. Field and modeling studies show high uncertainty in soil and pla…

No prominent works on this page.

  • Divergent patterns of experimental and model-derived permafrost ecosystem carbon dynamics in response to Arctic warming

    Open Access•Christina Schädel, Charles D Koven et al.•ARTICLE•Environmental Research Letters•2018

    In the last few decades, temperatures in the Arctic have increased twice as much as the rest of the globe. As permafrost thaws in response to this warming, large amounts of soil organic matter may become vulnerable to decomposition. Microbial decomposition will release carbon (C) from permafrost soils, however, warmer conditions could also lead to enhanced plant growth and C uptake. Field and modeling studies show high uncertainty in soil and pla…

  • Shallow soils are warmer under trees and tall shrubs across Arctic and Boreal ecosystems

    Open Access•Heather Kropp, M M Loranty et al.•ARTICLE•Environmental Research Letters•2020

    Soils are warming as air temperatures rise across the Arctic and Boreal region concurrent with the expansion of tall-statured shrubs and trees in the tundra. Changes in vegetation structure and function are expected to alter soil thermal regimes, thereby modifying climate feedbacks related to permafrost thaw and carbon cycling. However, current understanding of vegetation impacts on soil temperature is limited to local or regional scales and lack…

  • Landscape-scale characterization of Arctic tundra vegetation composition, structure, and function with a multi-sensor unoccupied aerial system

    Open Access•Dedi Yang, Bailey D Morrison et al.•ARTICLE•Environmental Research Letters•2021

    The Arctic is experiencing some of the most rapid climate change on Earth, with strong impacts on tundra ecosystems that are characterized by high land-surface and vegetation heterogeneity. Previous studies have explored this complexity using satellite remote sensing, however these typically coarse spatial resolution data have generally missed sub-pixel heterogeneity, leaving critical gaps in our understanding of tundra vegetation dynamics from t…

Arctic (3 works) · Climate change and permafrost (3 works) · Cryospheric studies and observations (3 works) · Ecology (3 works) · Ecosystem (3 works) · Environmental Science (3 works) · Tundra (3 works) · Arctic vegetation (2 works) · Atmospheric sciences (2 works) · Biology (2 works)

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