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Laura Gough

Biographic Data

ID5409224
NAMELaura Gough
GIVEN NAMESLaura
FAMILY NAMEGough
SIGNATUREGOUGH L
AFFILIATIONSTowson University
ORCID0000-0002-9312-7910
VERIFIEDYes
TOTAL WORKS7
TOTAL CITATIONS0
AUTHOR COUNT7
EDITOR COUNT0
FIRST PUBLICATION YEAR2011
LATEST PUBLICATION YEAR2023
H-INDEX0
  • Using structure to model function: Incorporating canopy structure improves estimates of ecosystem carbon flux in arctic dry heath tundra

    Open Access•Elizabeth Min, Naeem et al.•ARTICLE•Environmental Research Letters•2023

    Most tundra carbon flux modeling relies on leaf area index (LAI), generally estimated from measurements of canopy greenness using the normalized difference vegetation index (NDVI), to estimate the direction and magnitude of fluxes. However, due to the relative sparseness and low stature of tundra canopies, such models do not explicitly consider the influence of variation in tundra canopy structure on carbon flux estimates. Structure from motion (…

  • Growth rings show limited evidence for ungulates’ potential to suppress shrubs across the Arctic

    Open Access•Katariina E M Vuorinen, Gunnar Austrheim et al.•ARTICLE•Environmental Research Letters•2022

    Global warming has pronounced effects on tundra vegetation, and rising mean temperatures increase plant growth potential across the Arctic biome. Herbivores may counteract the warming impacts by reducing plant growth, but the strength of this effect may depend on prevailing regional climatic conditions. To study how ungulates interact with temperature to influence growth of tundra shrubs across the Arctic tundra biome, we assembled dendroecologic…

  • Examining the development and utilization of infection control policies to safely support adults with intellectual and developmental disabilities in congregate living settings during Covid-19

    Open Access•Matt Freeman, Alainna Crawford et al.•ARTICLE•Canadian Journal of Public Health•2022•References: 15

  • 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…

  • Herbivore absence can shift dry heath tundra from carbon source to sink during peak growing season

    Open Access•Elizabeth Min, Megan Wilcots et al.•ARTICLE•Environmental Research Letters•2020

    In arctic tundra, large and small mammalian herbivores have substantial impacts on the vegetation community and consequently can affect the magnitude of carbon cycling. However, herbivores are often absent from modern carbon cycle models, partly because relatively few field studies focus on herbivore impacts on carbon cycling. Our objectives were to quantify the impact of 21 years of large herbivore and large and small herbivore exclusion on carb…

  • Biomass offsets little or none of permafrost carbon release from soils, streams, and wildfire: An expert assessment

    Open Access•Benjamin W Abbott, Jeremy B Jones et al.•ARTICLE•Environmental Research Letters•2016

    As the permafrost region warms, its large organic carbon pool will be increasingly vulnerable to decomposition, combustion, and hydrologic export. Models predict that some portion of this release will be offset by increased production of Arctic and boreal biomass; however, the lack of robust estimates of net carbon balance increases the risk of further overshooting international emissions targets. Precise empirical or model-based assessments of t…

  • Does NDVI reflect variation in the structural attributes associated with increasing shrub dominance in arctic tundra

    Open Access•Natalie T Boelman, Laura Gough et al.•ARTICLE•Environmental Research Letters•2011

    This study explores relationships between the normalized difference vegetation index (NDVI) and structural characteristics associated with deciduous shrub dominance in arctic tundra. Our structural measures of shrub dominance are stature, branch abundance, aerial per cent woody stem cover (deciduous and evergreen species), and per cent deciduous shrub canopy cover. All measurements were taken across a suite of transects that together represent a …

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  • Does NDVI reflect variation in the structural attributes associated with increasing shrub dominance in arctic tundra

    Open Access•Natalie T Boelman, Laura Gough et al.•ARTICLE•Environmental Research Letters•2011

    This study explores relationships between the normalized difference vegetation index (NDVI) and structural characteristics associated with deciduous shrub dominance in arctic tundra. Our structural measures of shrub dominance are stature, branch abundance, aerial per cent woody stem cover (deciduous and evergreen species), and per cent deciduous shrub canopy cover. All measurements were taken across a suite of transects that together represent a …

  • Biomass offsets little or none of permafrost carbon release from soils, streams, and wildfire: An expert assessment

    Open Access•Benjamin W Abbott, Jeremy B Jones et al.•ARTICLE•Environmental Research Letters•2016

    As the permafrost region warms, its large organic carbon pool will be increasingly vulnerable to decomposition, combustion, and hydrologic export. Models predict that some portion of this release will be offset by increased production of Arctic and boreal biomass; however, the lack of robust estimates of net carbon balance increases the risk of further overshooting international emissions targets. Precise empirical or model-based assessments of 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…

  • Herbivore absence can shift dry heath tundra from carbon source to sink during peak growing season

    Open Access•Elizabeth Min, Megan Wilcots et al.•ARTICLE•Environmental Research Letters•2020

    In arctic tundra, large and small mammalian herbivores have substantial impacts on the vegetation community and consequently can affect the magnitude of carbon cycling. However, herbivores are often absent from modern carbon cycle models, partly because relatively few field studies focus on herbivore impacts on carbon cycling. Our objectives were to quantify the impact of 21 years of large herbivore and large and small herbivore exclusion on carb…

  • Growth rings show limited evidence for ungulates’ potential to suppress shrubs across the Arctic

    Open Access•Katariina E M Vuorinen, Gunnar Austrheim et al.•ARTICLE•Environmental Research Letters•2022

    Global warming has pronounced effects on tundra vegetation, and rising mean temperatures increase plant growth potential across the Arctic biome. Herbivores may counteract the warming impacts by reducing plant growth, but the strength of this effect may depend on prevailing regional climatic conditions. To study how ungulates interact with temperature to influence growth of tundra shrubs across the Arctic tundra biome, we assembled dendroecologic…

  • Examining the development and utilization of infection control policies to safely support adults with intellectual and developmental disabilities in congregate living settings during Covid-19

    Open Access•Matt Freeman, Alainna Crawford et al.•ARTICLE•Canadian Journal of Public Health•2022•References: 15

  • Using structure to model function: Incorporating canopy structure improves estimates of ecosystem carbon flux in arctic dry heath tundra

    Open Access•Elizabeth Min, Naeem et al.•ARTICLE•Environmental Research Letters•2023

    Most tundra carbon flux modeling relies on leaf area index (LAI), generally estimated from measurements of canopy greenness using the normalized difference vegetation index (NDVI), to estimate the direction and magnitude of fluxes. However, due to the relative sparseness and low stature of tundra canopies, such models do not explicitly consider the influence of variation in tundra canopy structure on carbon flux estimates. Structure from motion (…

Climate change and permafrost (6 works) · Ecology (6 works) · Environmental Science (6 works) · Biology (5 works) · Cryospheric studies and observations (5 works) · Ecosystem (4 works) · Tundra (4 works) · Arctic (3 works) · Geography (3 works) · Canopy (2 works)

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