Publications Library
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.
03-2-3-08_FSBrief68.pdf0_.pdf (605.94 KB)

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.
. 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.
. Long and Short-Term Effects of Fire on Soil Charcoal of a Conifer Forest in Southwest Oregon. Forests. 2012;2012(3):17. Available at: http://www.mdpi.com/1999-4907/3/2/353/pdf.
. The Long-Term Effects of Wildfire and Post-Fire Vegetation on Sierra Nevada Forest Soils. Forests. 2012;3(2):19. Available at: http://www.mdpi.com/1999-4907/3/2/398/pdf.
. Long-term perspective on wildfires in the western USA. National Academy of Sciences; 2012:9. Available at: http://www.pnas.org/content/109/9/E535.
A Land Manager's Guide for Creating Fire-resistant Forests. Oregon State University Extension & the Northwest Fire Science Consortium; 2013:14.
A Land Managers Guide for Creating Fire-resistant Forests .pdf (1.84 MB)
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Latent resilience in ponderosa pine forest: effects of resumed frequent fire. Ecological Applications. 2013;23(6):7.
latent resilience in p pine.pdf (13.78 MB)
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Lessons Learned from Waldo Canyon: FAC mitigation assessment team report. Insurance Institute for Business & Home Safety; 2013:48.
Waldo-Canyon-Rpt-FINAL.pdf (4.9 MB)
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Living in a tinderbox: wildfire risk perceptions and mitigating behaviors. International Journal of Wildland Fire. 2013;On-line early.
. Landsat time series and lidar as predictors of live and dead basal area across five bark beetle-affected forests 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.
. 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.
FEM-HRV.pdf (934.26 KB)
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Large airtanker use and outcomes in suppressing wildland fires in the United States. International Journal of Wildland Fire. 2014;On-line early.
. . Landscape Disturbance Dynamics. Second. ( ). New York: Springer; 2015:53.
. Limitations and utilisation of Monitoring Trends in Burn Severity products for assessing wildfire severity in the USA International Journal of Wildland Fire. 2015;Online early.
. Local Ecological Knowledge and Fire Management: What Does the Public Understand? Journal of Forestry. 2015;113.
LocalEcologicalKnowledge.pdf (187.57 KB)
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Location, timing and extent of wildfire vary by cause of ignition International Journal of Wildland Fire. 2015;24.
. Long-term dead wood changes in a Sierra Nevada mixed conifer forest: habitat and fire hazard implications. Forest Ecology and Management. 2015;339.
. Long-term effects of wildfire on greater sage-grouse - integrating population and ecosystem concepts for management in the Great Basin. ( ).; 2015:42.
. Long-term effects on distribution of forest biomass following different harvesting levels in the northern Rocky Mountains Forest Ecology and Management. 2015;358.
. Long-Term Growth of Sierra Nevada Mixed Conifer in Response to Mechanized Thinning, Slash Mastication, and Prescribed Fire Forest Research. 2015;S3:001.
. Low-severity fire increases tree defense against bark beetle attacks Ecology. 2015;96.
. Living on a flammable planet: interdisciplinary, cross-scalar and varied cultural lessons, prospects and challenges Philosophical Transactions of the Royal Society B. 2016;371(1696).
. Local and regional smoke impacts from prescribed fires Natural Hazards and Earth System Services. 2016;16.
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