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Goulette N. Living with Wildfire: The State of Practice in Western Communities. Hayfork, CA: The Watershed Center; 2012:49. Available at: http://www.thewatershedcenter.com/wp-content/uploads/2012/11/LivingwithFire_StateofPractice_AssessmentFindings_Final_10_12_12.pdf.
Brenkert-Smith H, Chambers C, Gibble K, et al. Living with wildfire in Ashland, Oregon: 2020 Data Report. USDA Forest Service, Rocky Mountian Research Station; 2020. Available at: https://www.fs.fed.us/rm/pubs_series/rmrs/rn/rmrs_rn088.pdf.PDF icon rmrs_rn088.pdf (11.76 MB)
Roos CI. Living on a flammable planet: interdisciplinary, cross-scalar and varied cultural lessons, prospects and challenges Scott AC, ed. Philosophical Transactions of the Royal Society B. 2016;371(1696).
Champ PA, Donovan GH, Barth CM. Living in a tinderbox: wildfire risk perceptions and mitigating behaviors. International Journal of Wildland Fire. 2013;On-line early.
Kolden CA. Limitations and utilisation of Monitoring Trends in Burn Severity products for assessing wildfire severity in the USA Smith AMS, ed. International Journal of Wildland Fire. 2015;Online early.
Orysiak J, Młynarczyk M, Piec R, Jakubiak A. Lifestyle and environmental factors may induce airway and systemic inflammation in firefighters. Environmental Science and Pollution Research. 2022;29:73741–73768.PDF icon Orysiak et al_2022_EnviroScieneandPollResearch_Lifestyle and enviro factors may induce airway and systemic inflammation in firefighters.pdf (1.3 MB)
Campbell MJ. A LiDAR-based analysis of the effects of slope, vegetation density, and ground surface roughness on travel rates for wildland firefighter escape route mapping Dennison PE, ed. International Journal of Wildland Fire. 2017;Online early.
Anon. Lessons of the Hayman fire: weeds, woodpeckers and fire severity. Joint Fire Science Program; 2008. Available at: http://www.firescience.gov/projects/briefs/03-2-3-08_FSBrief68.pdf.PDF icon 03-2-3-08_FSBrief68.pdf0_.pdf (605.94 KB)
Quarles S, Leschak P, Worley K, Brown R, Iskowitz C. Lessons Learned from Waldo Canyon: FAC mitigation assessment team report. Insurance Institute for Business & Home Safety; 2013:48.PDF icon Waldo-Canyon-Rpt-FINAL.pdf (4.9 MB)
Moritz MA. Learning to coexist with wildfire Batllori E, ed. Nature. 2014;515.PDF icon nature13946.pdf (2.79 MB)
Blonder B, Blonder B. The leaf-area shrinkage effect can bias paleoclimate and ecology research. American Journal of Botany. 2012;99(11):8. Available at: http://www.ncbi.nlm.nih.gov/pubmed/23132615.
Larson AJ, Belote TR, Cansler AC, Parks SA, Dietz MS. Latent resilience in ponderosa pine forest: effects of resumed frequent fire. Ecological Applications. 2013;23(6):7.PDF icon latent resilience in p pine.pdf (13.78 MB)
Freeborn PH, MattJolly W, A.Cochrane M, GarethRoberts . Large wildfire driven increases in nighttime fire activity observed across CONUS from 2003–2020. Remote Sensing of Environment. 2022;268. Available at: https://doi.org/10.1016/j.rse.2021.112777.PDF icon Freeborn et al_2022_Remote Sensing Enviro_Large Wildfire Driven Increases in Nighttime Fire Activity Across CONUS 2003-2020.pdf (3.09 MB)
Calkin DE, Stonesifer CS, Thompson MP, McHugh CW. Large airtanker use and outcomes in suppressing wildland fires in the United States. International Journal of Wildland Fire. 2014;On-line early.
Urza AK, Hanberry BB, Jain TB. Landscape‑scale fuel treatment effectiveness: lessons learned from wildland fire case studies in forests of the western United States and Great Lakes region. Fire Ecology. 2023;19(1).PDF icon Urza et al_2023_FireEcol_Landscape‑scale fuel treatment effectiveness- lessons learned from wildland fire case studies in forests of the western United States and Great Lakes region.pdf (1.27 MB)
T. McCarley R. Landscape-scale quantification of fire-induced change in canopy cover following mountain pine beetle outbreak and timber harvest Kolden CA, ed. Forest Ecology and Management. 2017;391.
Davis EJ. Landscapes 101: Understanding Landscape Approaches to Forest Restoration and Management.; 2018:3.PDF icon Go Big or Go Home Brief 1final.pdf (2.06 MB)
Dickinson Y. Landscape restoration of a forest with a historically mixed-severity fire regime: What was the historical landscape pattern of forest and openings?. Forest Ecology and Management. 2014;331.PDF icon FEM-HRV.pdf (934.26 KB)
Turner MG. Landscape Disturbance Dynamics. Second. (Gardner RH, ed.). New York: Springer; 2015:53.
Bright BC. Landsat time series and lidar as predictors of live and dead basal area across five bark beetle-affected forests Hudak AT, ed. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. 2014;7(8). Available at: http://www.treesearch.fs.fed.us/pubs/49638.
Mowery M, Punchard D. Land use planning approaches in the wildland-urban interface: an analysis of four western states. Community Wildfire Planning Center; 2021. Available at: https://www.communitywildfire.org/wp-content/uploads/2021/02/CWPC_Land-Use-WUI-Report_Final_2021.pdf.PDF icon CWPC_Land-Use-WUI-Report_Final_2021.pdf (3.57 MB)
Baker WL. Land surveys show regional variability of historical fire regimes and dry forest structure of the western United States Williams MA, ed. Ecological Applications. 2018;28(2).
Fitzgerald S, Bennett M. A Land Manager's Guide for Creating Fire-resistant Forests. Oregon State University Extension & the Northwest Fire Science Consortium; 2013:14.PDF icon A Land Managers Guide for Creating Fire-resistant Forests .pdf (1.84 MB)

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