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Keane RE, Dickinson LJ (2007) The Photoload sampling technique: estimating surface fuel load-
ings using downward looking photographs. USDA Forest Service Rocky Mountain Research
Station General Technical Report RMRS-GTR-190, 44 pp
Keane RE (2008) Surface fuel litterfall and decomposition in the northern Rocky Mountains,
USA. USDA Forest Service Rocky Mountain Research Station, Research Paper RMRS-RP-70.
Fort Collins, Colorado USA, 22 pp
Keane R, Gray K, Bacciu V, Leirfallom S (2012) Spatial scaling of wildland fuels for six forest and
rangeland ecosystems of the northern Rocky Mountains, USA. Landscape Ecol 27(8):1213-
1234. doi:10.1007/s10980-012-9773-9
Keane RE, Gray K (2013) Comparing three sampling techniques for estimating fine woody down
dead biomass. Int J Wildland Fire 22(8):1093-1107. doi: http://dx.doi.org/10.1071/WF13038
Lutes DC, Keane RE, Caratti JF, Key CH, Benson NC, Sutherland S, Gangi LJ (2006) FIREMON:
Fire effects monitoring and inventory system. USDA Forest Service Rocky Mountain Research
Station, General Technical Report RMRS-GTR-164-CD. Fort Collins, CO USA
Lutes DC, Keane RE, Caratti JF (2009) A surface fuels classification for estimating fire effects. Int
J Wildland Fire 18:802-814
Nappi A, Drapeau P, Savard JPL (2004) Salvage logging after wildfire in the boreal forest: is it
becoming a hot issue for wildlife? For Chron 80(1):67-74. doi:10.5558/tfc80067-1
Ottmar RD, Sandberg DV, Riccardi CL, Prichard SJ (2007) An overview of the fuel characteristic
classification system—quantifying, classifying, and creating fuelbeds for resource planning.
Can J Forest Res 37:2383-2393
Pyne SJ, Andrews PL, Laven RD (1996) Introduction to wildland fire, 2nd edn. Wiley, New York
Reinhardt E, Keane RE, Brown JK (1997) First order fire effects model: FOFEM 4.0 user's
guide. USDA Forest Service, Intermountain Research Station General Technical Report IN-
TGTR-344, 65 pp
Riccardi CL, Ottmar RD, Sandberg DV, Andreu A, Elman E, Kopper K, Long J (2007a) The fu-
elbed: a key element of the fuel characteristic classification system. Can J For Res 37:2394-2412
Riccardi CL, Prichard SJ, Sandberg DV, Ottmar RD (2007b) Quantifying physical characteristics of
wildland fuels using the Fuel Characteristic Classification System. Can J For Res 37:2413-2420
Rothermel RC (1993) Mann Gulch fire: a race that couldn't be won. U.S. Department of Agri-
culture, Forest Service, Intermountain Research Station, General Technical Report INT-299.
Ogden, UT USA, 10 pp
Shetler G, Turetsky MR, Kane E, Kasischke E (2008) Sphagnum mosses limit total carbon
consumption during fire in Alaskan black spruce forests. Can J For Res 38(8):2328-2336.
doi:10.1139/x08-057
Soil Classification Working Group (1998) The Canadian System of Soil Classification. Agriculture
and Agri-Food Canada, Soil Classification Working Group, 3rd ed. The Canadian System of
Soil Classification, 187 p
Soil Survey Staff (2006) Keys to Soil Taxonomy, 10th ed. U.S. Department of Agriculture Natural
Resource Conservation Service, Washington, DC, USA
Stephens SL, Finney M, Schentz H (2004) Bulk density and fuel loads of ponderosa pine and white
fir forest floors: Impacts of leaf morphology. Norhtwest Sci 78(2):93-104
Sylvester TW, Wein RW (1981) Fuel characteristics of arctic plant species and simulated plant com-
munity flammability by Rothermel's model. Can J Bot 59(5):898-907. doi:10.1139/b81-125
Ulanova NG (2000) The effects of windthrow on forests at different spatial scales: a review. For
Ecol Manage 135(1-3):155-167. doi:http://dx.doi.org/10.1016/S0378-1127(00)00307-8
Woodall CW, Nagel LM (2007) Downed woody fuel loading dynamics of a large-scale blow-
down in northern Minnesota, U.S.A. For Ecol Manage 247(1-3):194-199 doi:http://dx.doi.
org/10.1016/j.foreco.2007.04.040
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