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Behavior Modification: Tempering Fire at the Landscape Level. Joint Fire Science Program; 2008:11. Available at: http://www.firescience.gov/projects/briefs/01-1-3-21_FSBrief5.pdf.
Assessing Fuel Treatment Effectiveness After the Tripod Complex Fires. Joint Fire Science Program; 2011:6. Available at: http://www.firescience.gov/projects/briefs/07-1-2-13_FSBrief135.pdf.
The Forest, the Fire and the Fungi: Studying the Effects of Prescribed Burning on Mycorrhizal Fungi in Crater Lake National Park. Joint Fire Science Program; 2009:12. Available at: http://www.firescience.gov/projects/briefs/03-3-2-05_FSBrief38.pdf.
In a Ponderosa Pine Forest, Prescribed Fires Reduce the Likelihood of Scorched Earth. Joint Fire Science Program; 2008:11. Available at: http://www.firescience.gov/projects/briefs/04-2-1-85_FSBrief24.pdf.
Joint Fire Science Program 2019 Progress Report.; 2020. FINAL_JFSP2019ProgressReport_092120.pdf (8.31 MB)
Predicting Dry Lightning Risk Nationwide.; 2012. Available at: http://www.firescience.gov/projects/briefs/07-2-1-42_FSBrief149.pdf.
Ponderosa Pine Biomass Relationships Vary with Site Treatment and Site Productivity. Joint Fire Science Program; 2011:6. Available at: http://www.firescience.gov/projects/briefs/06-3-3-04_FSBrief148.pdf.
Severe Fire Danger Index: A Forecastable Metric to Inform Firefighter and Community Wildfire Risk Management Fire. 2019;2(3).
. Climate-induced variations in global wildfire danger from 1979 to 2013 Nature Commuications. 2015;6.
. . Towards improving wildland firefighter situational awareness through daily fire behaviour risk assessments in the US Northern Rockies and Northern Great Basin International Journal of Wildland Fire. 2017;26(7).
. Return on investment from fuel treatments to reduce severe wildfire and erosion in a watershed investment program in Colorado Journal of Environmental Management. 2017;198(Part 2).
. Megafires: an emerging threat to old-forest species Frontiers in Ecology and the Environment. 2016;14(6).
. Counteracting wildfire misinformation. Frontiers in Ecology and the Environment. 2022;20(7):392-390. Jones et al_2022_Front in Ecol Env_Counteracting wildfire misinformation.pdf (79.58 KB)
More smoke today for less smoke tomorrow? We need to better understand the public health benefits and costs of prescribed fire. International Journal of Wildland Fire. 2022;31(10):918–926. Jones et al_2022_IJWF_More smoke today for less smoke tomorrow_We need to better understand public health benefits and costs of rx fire.pdf (2.41 MB)
. . Effect of repeated burning on plant and soil carbon and nitrogen in cheatgrass (Bromus tectorum) dominated ecosystems Plant and Soil. 2015;386(1).
. Rapid Growth of Large Forest Fires Drives the Exponential Response of Annual Forest-Fire Area to Aridity in the Western United States. Geophysical Research Letters. 2022;49. Juang et al_2022_Rapid growth of large forest fires drives exponential response of annual forest-fire area to aridity in western US.pdf (1.25 MB)
A geographic strategy for cross-jurisdictional, proactive management of invasive annual grasses in Oregon. Rangelands. 2022:173-180. Creutzburg et al_2022_A geog strategy for crossjurisdictional proactive mgmt of invasive annual grasses in OR.pdf (3.52 MB)
Post-fire response of riparian vegetation in a heavily browsed environment Forest Ecology and Management. 2015;338.
. Increasing co-occurrence of fine particulate matter and ground-level ozone extremes in the western United States. Science Advances. 2022;8. Kalashnikov et al_2022_Fine Particulate Matter.pdf (3.24 MB)
. Tamm Review: Are fuel treatments effective at achieving ecological and social objectives? A systematic review Forest Ecology and Management. 2016;375.
. Characterising resource use and potential inefficiencies during large-fire suppression in the western US International Journal of Wildland Fire. 2017;26(7).
. Representing climate, disturbance, and vegetation interactions in landscape models Ecological Modelling. 2015;309-310.
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