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Jan U H Eitel

Biographic Data

ID6442458
NAMEJan U H Eitel
GIVEN NAMESJan U H
FAMILY NAMEEitel
SIGNATUREEITEL J U H
AFFILIATIONSUniversity of Idaho
ORCID0000-0003-1903-3833
VERIFIEDYes
TOTAL WORKS3
TOTAL CITATIONS0
AUTHOR COUNT3
EDITOR COUNT0
FIRST PUBLICATION YEAR2018
LATEST PUBLICATION YEAR2021
H-INDEX0
  • Estimating integrated measures of forage quality for herbivores by fusing optical and structural remote sensing data

    Open Access•Jyoti S Jennewein, Jan U H Eitel et al.•ARTICLE•Environmental Research Letters•2021

    Northern herbivore ranges are expanding in response to a warming climate. Forage quality also influences herbivore distributions, but less is known about the effects of climate change on plant biochemical properties. Remote sensing could enable landscape-scale estimations of forage quality, which is of interest to wildlife managers. Despite the importance of integrated forage quality metrics like digestible protein (DP) and digestible dry matter …

  • Spatial covariation between solar-induced fluorescence and vegetation indices from Arctic-Boreal landscapes

    Open Access•Andrew J Maguire, Jan U H Eitel et al.•ARTICLE•Environmental Research Letters•2021

    The Arctic-Boreal Zone (ABZ) is characterized by spatially heterogeneous vegetation composition and structure, leading to challenges for inferring patterns in vegetation productivity. A mechanistic understanding of the patterns and processes underlying spectral remote sensing observations is necessary to overcome these challenges. Solar-induced chlorophyll fluorescence (SIF), near-infrared reflectance of vegetation (NIRv), and chlorophyll/caroten…

  • Integrating snow science and wildlife ecology in Arctic-boreal North America

    Open Access•Natalie T Boelman, Glen E Liston et al.•ARTICLE•Environmental Research Letters•2018

    Snow covers Arctic and boreal regions (ABRs) for approximately 9 months of the year, thus snowscapes dominate the form and function of tundra and boreal ecosystems. In recent decades, Arctic warming has changed the snowcover's spatial extent and distribution, as well as its seasonal timing and duration, while also altering the physical characteristics of the snowpack. Understanding the little studied effects of changing snowscapes on its wildlife…

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  • Integrating snow science and wildlife ecology in Arctic-boreal North America

    Open Access•Natalie T Boelman, Glen E Liston et al.•ARTICLE•Environmental Research Letters•2018

    Snow covers Arctic and boreal regions (ABRs) for approximately 9 months of the year, thus snowscapes dominate the form and function of tundra and boreal ecosystems. In recent decades, Arctic warming has changed the snowcover's spatial extent and distribution, as well as its seasonal timing and duration, while also altering the physical characteristics of the snowpack. Understanding the little studied effects of changing snowscapes on its wildlife…

  • Estimating integrated measures of forage quality for herbivores by fusing optical and structural remote sensing data

    Open Access•Jyoti S Jennewein, Jan U H Eitel et al.•ARTICLE•Environmental Research Letters•2021

    Northern herbivore ranges are expanding in response to a warming climate. Forage quality also influences herbivore distributions, but less is known about the effects of climate change on plant biochemical properties. Remote sensing could enable landscape-scale estimations of forage quality, which is of interest to wildlife managers. Despite the importance of integrated forage quality metrics like digestible protein (DP) and digestible dry matter …

  • Spatial covariation between solar-induced fluorescence and vegetation indices from Arctic-Boreal landscapes

    Open Access•Andrew J Maguire, Jan U H Eitel et al.•ARTICLE•Environmental Research Letters•2021

    The Arctic-Boreal Zone (ABZ) is characterized by spatially heterogeneous vegetation composition and structure, leading to challenges for inferring patterns in vegetation productivity. A mechanistic understanding of the patterns and processes underlying spectral remote sensing observations is necessary to overcome these challenges. Solar-induced chlorophyll fluorescence (SIF), near-infrared reflectance of vegetation (NIRv), and chlorophyll/caroten…

Climate change (3 works) · Environmental Science (3 works) · Geography (3 works) · Remote sensing (3 works) · Arctic (2 works) · Boreal (2 works) · Climate change and permafrost (2 works) · Ecology (2 works) · Enhanced vegetation index (2 works) · Forestry (2 works)

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