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2022
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)
Goldstein D, Kennedy EB. Mapping the ethical landscape of wildland fire management: setting an agendum for research and deliberation on the applied ethics of wildland fire. International Journal of Wildland Fire. 2022;Online.PDF icon Goldstein and Kennedy_2022_IJWF_Mapping the ethical landscape of wildland fire management.pdf (900.38 KB)
Wollstein K, O’Connor C, Gear J, Hoagland R. Minimize the bad days: Wildland fire response and suppression success. Rangelands. 2022;8(47).PDF icon Wollstein et al_2022_Minimize the bad days_Wildland fire response and suppression success.pdf (1.21 MB)
Thompson MP, O’Connor CD, Gannon BM, et al. Potential operational delineations: new horizons for proactive, risk-informed strategic land and fire management. Fire Ecology. 2022;18.PDF icon Thompson et al_2022_FireEcol_PODs as New horizons for proactive risk-informed strategic land and fire mgmt.pdf (7.5 MB)
Thompson MP, O’Connor CD, Gannon BM, et al. Potential operational delineations: new horizons for proactive, risk-informed strategic land and fire management. Fire Ecology. 2022;18.PDF icon Thompson et al_2022_FireEcol_PODs as New horizons for proactive risk-informed strategic land and fire mgmt.pdf (7.5 MB)
Miller RK, Richter F, Theodori M, Gollner MJ. Professional wildfire mitigation competency: a potential policy gap. International Journal of Wildland Fire. 2022;31(7).PDF icon Miller et al 2022_Professional wildfire mitigation competancy_A potential policy gap.pdf (783.41 KB)
Bowring SPK, Jones MW, Ciais P, Guenet B. Pyrogenic carbon decomposition critical to resolving fire’s role in the Earth system. Nature Geoscience. 2022;15:135–142.PDF icon Bowring et al_2022_Pyrogenic Carbon in the Earth System.pdf (2.11 MB)
Miller BAlan, Yung L, Wyborn C, et al. Re-Envisioning Wildland Fire Governance: Addressing the Transboundary, Uncertain, and Contested Aspects of Wildfire. Fire. 2022;5(49).PDF icon Miller et al 2022_Re-Envisioning_Wildland_Fire_Governance_Addressing.pdf (1.96 MB)
Hoffman KM, Christianson ACardinal, Dickson-Hoyle S, et al. The right to burn: barriers and opportunities for Indigenous-led fire stewardship in Canada. FACETS. 2022;7:464–481.PDF icon Hoffman et al_2022_The right to Burn_Barriers and opps for Indgenous-led fire stewardship in Canada.pdf (1.89 MB)
Gang JE, Jia W, Herniter IA. Sand and fire: applying the sandpile model of self-organised criticality to wildfire mitigation. International Journal of Wildland Fire. 2022;Online.PDF icon Gang et al_2022_IJWF_Sand and Fire_applying sandpile model of self organised criticality to wildfire mitigation.pdf (3.56 MB)
Grimm KE, Thode AE, Wolfson BSatink, Brown LE. Scientist Engagement with Boundary Organizations and Knowledge Coproduction: A Case Study of the Southwest Fire Science Consortium. Fire. 2022;%(43).PDF icon Grimm et al_2022_Scientist Engagement with Boundary Orgs and Knowledge Coproduction-Case Study of SW Fire Science Consortium.pdf (775.58 KB)
Graw RL, Anderson BA. Strategies to reduce wildfire smoke in frequently impacted communities in south-western Oregon. International Journal of Wildland Fire. 2022;31(12).PDF icon WF22071.pdf (4.69 MB)
Laughlin MM, Harvey BJ, Bakker JD, et al. Trends in forest structure restoration need over three decades with increasing wildfire activity in the interior Pacific Northwest US. Forest Ecology and Management. 2022;527. Available at: https://doi.org/10.1016/j.foreco.2022.120607.PDF icon Trends-in-forest-structure-restoration-need-over-three-dec_2023_Forest-Ecolo.pdf (5.61 MB)
Linley GD, Jolly CJ, Doherty TS, et al. What do you mean, ‘megafire’?. Global Ecology and Biogeography . 2022;31:1906–1922.PDF icon Linley et al_2022_Global ecol and biogeog_What do you mean Megafire.pdf (3.72 MB)
Linley GD, Jolly CJ, Doherty TS, et al. What do you mean, ‘megafire’?. Global Ecology and Biogeography . 2022;31:1906–1922.PDF icon Linley et al_2022_Global ecol and biogeog_What do you mean Megafire.pdf (3.72 MB)
2023
Parisien M-A, Barber QE, Bourbonnais ML, et al. Abrupt, climate-induced increase in wildfires in British Columbia since the mid-2000s. Nature. 2023;4(309). Available at: https://www.nature.com/articles/s43247-023-00977-1.PDF icon s43247-023-00977-1.pdf (5.58 MB)
Masri S, Shenoi EAnne, Garfin DRose, Wu J. Assessing Perception of Wildfires and Related Impacts among Adult Residents of Southern California. International Journal of Environmental Research and Public Health. 2023;20(1).PDF icon Assessing Perception of Wildfires and Related Impacts among Adult Residents of Southern California.pdf (1.84 MB)
Stephens SL, Steel ZL, Collins BM, et al. Climate and fire impacts on tree recruitment in mixed conifer forests in Northwestern Mexico and California. Ecological Applications. 2023. Available at: https://esajournals.onlinelibrary.wiley.com/doi/epdf/10.1002/eap.2844.PDF icon Ecological Applications - 2023 - Stephens - Climate and fire impacts on tree recruitment in mixed conifer forests in.pdf (3.74 MB)
Johnson MM, Garcia-Menendez F. A comparison of smoke modelling tools used to mitigate air quality impacts from prescribed burning. International Journal of Wildland Fire. 2023.PDF icon A comparison of smoke modelling tools used to mitigate air quality impacts from prescribed burning.pdf (2.71 MB)
McFayden CB, Johnston LM, Woolford DG, et al. A Conceptual Framework for Knowledge Exchange in a Wildland Fire Research and Practice Context. Applied Data Science. 2023. Available at: https://link.springer.com/chapter/10.1007/978-3-031-29937-7_12.
Kane JM, Kerhoulas LP, Goff GS. Conifer encroachment increases foliar moisture content in a northwestern California oak woodland. International Journal of Wildland Fire. 2023. Available at: https://www.publish.csiro.au/wf/pdf/WF22184.PDF icon Conifer encroachment increases foliar moisture content in a northwestern California oak woodland.pdf (1.1 MB)
Parks SA, Holsinger LM, Blankenship K, et al. Contemporary wildfires are more severe compared to the historical reference period in western US dry conifer forests. Forest Ecology and Management. 2023;544.
Hubert MM, Schweitzer JA, Giam X, Papeş M. Contrasting effects of urbanization and fire on understory plant communities in the natural and wildland–urban interface. Ecosphere. 2023;14(5).PDF icon Ecosphere - 2023 - Hubert - Contrasting effects of urbanization and fire on understory plant communities in the natural and.pdf (1.48 MB)
MacDonald G, Wall T, Enquist CAF, et al. Drivers of California’s changing wildfires: a state-of-the-knowledge synthesis. International Journal of Wildland Fire. 2023.PDF icon Drivers of California’s changing wildfires- a state-of-the-knowledge synthesis.pdf (3.08 MB)
McDanold JS, Linn RR, Jonko AK, et al. DUET - Distribution of Understory using Elliptical Transport: A mechanistic model of leaf litter and herbaceous spatial distribution based on tree canopy structure. Ecological Modelling. 2023;483.

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