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Greg Fiske

Biographic Data

ID3489309
NAMEGreg Fiske
GIVEN NAMESGreg
FAMILY NAMEFiske
SIGNATUREFISKE G
AFFILIATIONSWoodwell Climate Research Center
ORCID0000-0001-6609-4239
VERIFIEDYes
TOTAL WORKS5
TOTAL CITATIONS0
AUTHOR COUNT5
EDITOR COUNT0
FIRST PUBLICATION YEAR2005
LATEST PUBLICATION YEAR2023
H-INDEX0
  • Scaling waterbody carbon dioxide and methane fluxes in the arctic using an integrated terrestrial-aquatic approach

    Open Access•S Ludwig, Susan M Natali et al.•ARTICLE•Environmental Research Letters•2023

    In the Arctic waterbodies are abundant and rapid thaw of permafrost is destabilizing the carbon cycle and changing hydrology. It is particularly important to quantify and accurately scale aquatic carbon emissions in arctic ecosystems. Recently available high-resolution remote sensing datasets capture the physical characteristics of arctic landscapes at unprecedented spatial resolution. We demonstrate how machine learning models can capitalize on …

  • A global map of mangrove forest soil carbon at 30 m spatial resolution

    Open Access•Jonathan Sanderman, Tomislav Hengl et al.•ARTICLE•Environmental Research Letters•2018

    With the growing recognition that effective action on climate change will require a combination of emissions reductions and carbon sequestration, protecting, enhancing and restoring natural carbon sinks have become political priorities. Mangrove forests are considered some of the most carbon-dense ecosystems in the world with most of the carbon stored in the soil. In order for mangrove forests to be included in climate mitigation efforts, knowled…

  • Soil carbon debt of 12,000 years of human land use

    Open Access•Jonathan Sanderman, Tomislav Hengl et al.•ARTICLE•Proceedings of the National…•2017

    Significance Land use and land cover change has resulted in substantial losses of carbon from soils globally, but credible estimates of how much soil carbon has been lost have been difficult to generate. Using a data-driven statistical model and the History Database of the Global Environment v3.2 historic land-use dataset, we estimated that agricultural land uses have resulted in the loss of 133 Pg C from the soil. Importantly, our maps indicate …

  • Inhibition of Amazon Deforestation and Fire by Parks and Indigenous Lands

    Open Access•Daniel C Nepstad, D NEPSTAD et al.•ARTICLE•Conservation Biology•2006

    Conservation scientists generally agree that many types of protected areas will be needed to protect tropical forests. But little is known of the comparative performance of inhabited and uninhabited reserves in slowing the most extreme form of forest disturbance: conversion to agriculture. We used satellite‐based maps of land cover and fire occurrence in the Brazilian Amazon to compare the performance of large (>10,000 ha) uninhabited (parks) and…

  • Satellite-observed photosynthetic trends across boreal North America associated with climate and fire disturbance

    Open Access•Scott J Goetz, Scott Goetz et al.•ARTICLE•Proceedings of the National…•2005

    We analyzed trends in a time series of photosynthetic activity across boreal North America over 22 years (1981 through 2003). Nearly 15% of the region displayed significant trends, of which just over half involved temperature-related increases in growing season length and photosynthetic intensity, mostly in tundra. In contrast, forest areas unaffected by fire during the study period declined in photosynthetic activity and showed no systematic cha…

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  • Satellite-observed photosynthetic trends across boreal North America associated with climate and fire disturbance

    Open Access•Scott J Goetz, Scott Goetz et al.•ARTICLE•Proceedings of the National…•2005

    We analyzed trends in a time series of photosynthetic activity across boreal North America over 22 years (1981 through 2003). Nearly 15% of the region displayed significant trends, of which just over half involved temperature-related increases in growing season length and photosynthetic intensity, mostly in tundra. In contrast, forest areas unaffected by fire during the study period declined in photosynthetic activity and showed no systematic cha…

  • Inhibition of Amazon Deforestation and Fire by Parks and Indigenous Lands

    Open Access•Daniel C Nepstad, D NEPSTAD et al.•ARTICLE•Conservation Biology•2006

    Conservation scientists generally agree that many types of protected areas will be needed to protect tropical forests. But little is known of the comparative performance of inhabited and uninhabited reserves in slowing the most extreme form of forest disturbance: conversion to agriculture. We used satellite‐based maps of land cover and fire occurrence in the Brazilian Amazon to compare the performance of large (>10,000 ha) uninhabited (parks) and…

  • Soil carbon debt of 12,000 years of human land use

    Open Access•Jonathan Sanderman, Tomislav Hengl et al.•ARTICLE•Proceedings of the National…•2017

    Significance Land use and land cover change has resulted in substantial losses of carbon from soils globally, but credible estimates of how much soil carbon has been lost have been difficult to generate. Using a data-driven statistical model and the History Database of the Global Environment v3.2 historic land-use dataset, we estimated that agricultural land uses have resulted in the loss of 133 Pg C from the soil. Importantly, our maps indicate …

  • A global map of mangrove forest soil carbon at 30 m spatial resolution

    Open Access•Jonathan Sanderman, Tomislav Hengl et al.•ARTICLE•Environmental Research Letters•2018

    With the growing recognition that effective action on climate change will require a combination of emissions reductions and carbon sequestration, protecting, enhancing and restoring natural carbon sinks have become political priorities. Mangrove forests are considered some of the most carbon-dense ecosystems in the world with most of the carbon stored in the soil. In order for mangrove forests to be included in climate mitigation efforts, knowled…

  • Scaling waterbody carbon dioxide and methane fluxes in the arctic using an integrated terrestrial-aquatic approach

    Open Access•S Ludwig, Susan M Natali et al.•ARTICLE•Environmental Research Letters•2023

    In the Arctic waterbodies are abundant and rapid thaw of permafrost is destabilizing the carbon cycle and changing hydrology. It is particularly important to quantify and accurately scale aquatic carbon emissions in arctic ecosystems. Recently available high-resolution remote sensing datasets capture the physical characteristics of arctic landscapes at unprecedented spatial resolution. We demonstrate how machine learning models can capitalize on …

Environmental Science (5 works) · Geography (5 works) · Ecology (3 works) · Agroforestry (2 works) · Arctic (2 works) · Atmospheric sciences (2 works) · Biology (2 works) · Carbon dioxide (2 works) · Carbon sequestration (2 works) · Climate change (2 works)

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