301
Views
20
CrossRef citations to date
0
Altmetric
Original Articles

Estimating post‐fire organic soil depth in the Alaskan boreal forest using the Normalized Burn Ratio

&
Pages 3845-3853 | Received 10 Sep 2006, Accepted 11 Nov 2007, Published online: 14 Jun 2008

References

  • Chander , G. and Markham , B. 2003 . Revised Landsat‐5 TM radiometric calibration procedures and postcalibration dynamic ranges. . IEEE Transactions on Geoscience and Remote Sensing , 41 : 2674 – 2677 .
  • Chuvieco , E. , Rianno , D. , Danson , F. M. and Martin , P. 2006 . Use of a radiative transfer model to simulate the postfire spectral response to burn severity. . Journal of Geophysical Research , 111 : 1 – 15 .
  • Cocke , A. E. , Fule , P. Z. and Crouse , J. E. 2005 . Comparison of burn severity assessments using differenced Normalized Burn Ratio and ground data. . International Journal of Wildland Fire , 14 : 189 – 198 .
  • Daughtry , C. S. T. 2001 . Discriminating crop residues from soil by shortwave infrared reflectance. . Agronomy Journal , 93 : 125 – 131 .
  • Epting , J. , Verbyla , D. and Sorbel , B. 2005 . Evaluation of remotely sensed indices for assessing burn severity in interior Alaska using Landsat TM and ETM+. . Remote Sensing of Environment , 96 : 328 – 339 .
  • Harden , J. W. , Manies , K. L. , Turetsky , M. R. and Neff , J. C. 2006 . Effects of wildfire and permafrost on soil organic matter and soil climate in interior Alaska. . Global Change Biology , 12 : 2391 – 2403 .
  • Howard , S. M. and Lacasse , J. M. 2004 . An evaluation of gap‐filled Landsat SLC‐off imagery for wildland burn severity mapping. . Photogrammetric Engineering and Remote Sensing , 70 : 877 – 880 .
  • Johnstone , J. F. and Chapin , F. S. III. 2006 . Effects of soil burn severity on post‐fire tree recruitment in boreal forest. . Ecosystems , 9 : 14 – 31 .
  • Johnstone , J. F. and Kasischke , E. S. 2005 . Stand‐level effects of soil burn severity on postfire regeneration in a recently burned black spruce forest. . Canadian Journal of Forest Research , 35 : 2151 – 2163 .
  • Key , C. H. and Benson , N. 2005 . “ Landscape assessment: ground measure of severity: the composite burn index, and remote sensing of severity, the normalized burn ratio. ” . In FIREMON: Fire Effects Monitoring and Inventory System , LA1 – LA51 . Ogden, UT : USDA Forest Service . USDA Forest Service General Technical Report RMS‐GTR‐164
  • KotLiar , N. B. , Haire , S. L. and Key , C. H. 2003 . 277 – 280 . Lessons from the fires of 2000: post‐fire heterogeneity in ponderosa pine forests. USDA Forest Service Proceedings RMRS‐P‐29, Ogden, UT: USDA Forest Service
  • Miller , J. D. and Thode , A. E. 2007 . Quantifying burn severity in a heterogeneous landscape with a relative version of the delta Normalized Burn Ratio (dNBR). . Remote Sensing of Environment , 109 : 66 – 80 .
  • Miyanishi , K. and Johnson , E. A. 2002 . Process and patterns of duff consumption in the mixedwood boreal forest. . Canadian Journal of Forest Research , 32 : 1285 – 1295 .
  • Murphy , K. A. , Reynolds , J. H. and Koltun , J. 2006 . “ How well does the national burn severity mapping methodology work on national wildlife refuge lands in Alaska? ” . In Proceedings of the 3rd International Fire Ecology and Management Congress San Diego, CA, USA
  • Nilson , T. and Peterson , U. 1994 . Age dependence of forest reflectance: analysis of main driving factors. . Remote Sensing of Environment , 48 : 319 – 331 .
  • Patterson , M. W. and Yool , S. R. 1998 . Mapping fire‐induced vegetation mortality using Landsat Thematic Mapper data: a comparison of linear transformation techniques. . Remote Sensing of Environment , 65 : 132 – 142 .
  • Ping , C. L. , Micaelson , G. J. , Packee , E. C. , Stiles , C. A. , Swanson , D. K. and Yoshikawa , K. 2005 . Soil catena sequences and fire ecology in the boreal forest of Alaska. . Soil Science Society of America Journal , 69 : 1761 – 1772 .
  • Roy , D. P. , Boschetti , L. and Trigg , S. N. 2006 . Remote sensing of fire severity: assessing the performance of the Normalized Burn Ratio. . IEEE Geoscience and Remote Sensing Letters , 3 : 112 – 116 .
  • Silva , J. M. N. , Cadima , J. F. C. L. , Pereira , J. M. C. and Gregoire , J. M. 2004 . Assessing the feasibility of a global model for multi‐temporal burned area mapping using SPOT‐VEGETATION data. . International Journal of Remote Sensing , 25 : 4889 – 4913 .
  • Sorbel , B. and Allen , J. 2005 . Space‐based burn severity mapping in Alaska's national parks. . Alaska Park Science , 4 : 4 – 11 .
  • Swanson , D. 1996 . Susceptibility of permafrost soils to deep thaw after forest fires in interior Alaska, USA, and some ecologic implications. . Arctic and Alpine Research , 28 : 217 – 227 .
  • van Wagtendonk , J. W. , Root , R. R. and Key , C. C. 2004 . Comparison of AVIRIS and Landsat ETM+ detection capabilities for burn severity. . Remote Sensing of Environment , 92 : 397 – 408 .
  • Viereck , L. A. , Dyrness , C. T. , VanCleve , K. and Foote , M. J. 1983 . Vegetation, soils, and forest productivity in selected forest types of interior Alaska. . Canadian Journal of Forest Research , 13 : 703 – 720 .
  • Wang , G. G. 2003 . Early regeneration and growth dynamics of Populus tremuloides suckers in relation to fire severity. . Canadian Journal of Forest Research , 33 : 1998 – 2006 .
  • White , J. D. , Ryan , K. C. , Key , C. C. and Running , S. W. 1996 . Remote sensing of forest fire severity and vegetation recovery. . International Journal of Wildland Fire , 6 : 125 – 136 .
  • Yoshikawa , K. , Bolton , W. R. , Romanovsky , V. E. , Fukuda , M. and Hinzman , M. 2003 . Impacts of wildfire on the permafrost in the boreal forests of interior Alaska. . Journal of Geophysical Research , 108 : D1:8148

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.