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Prototyping a global algorithm for systematic fire-affected area mapping using MODIS time series data
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Roy, D.P.1
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2
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21744447011
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Landscape assessment: Remote sensing of severity, the normalized burn ratio; and ground measure of severity, the composite burn index
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D. C. Lutes, R. E. Keane, J. F. Caratti, C. H. Key, N. C. Benson, and L. J. Gangi, Eds. Ogden, UT: USDA Forest Service, Rocky Mountain Res. Station, to be published
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C. H. Key and N. C. Benson, "Landscape assessment: Remote sensing of severity, the normalized burn ratio; and ground measure of severity, the composite burn index," in FIREMON: Fire Effects Monitoring and Inventory System, D. C. Lutes, R. E. Keane, J. F. Caratti, C. H. Key, N. C. Benson, and L. J. Gangi, Eds. Ogden, UT: USDA Forest Service, Rocky Mountain Res. Station, 2005, to be published.
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FIREMON: Fire Effects Monitoring and Inventory System
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Key, C.H.1
Benson, N.C.2
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3
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85046513592
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Characterizing the surface heterogeneity of fire effects using multitemporal reflective wavelength data
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to be published
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Int. J Remote Sens.
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Roy, D.1
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4
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Preparation of a 1:25 000 Landsat map for assessment of burnt area on Etaijima Island
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Evaluating prescribed fires
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Assessment of vegetation change in a fire-altered forest landscape
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Remote sensing of fire severity and vegetation recovery
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White, J.1
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8
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0034688207
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Using Landsat TM data to estimate carbon release from burned biomass in an Alaskan spruce forest complex
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J. L. Michalek, J. E. Colwell, N. H. F. French, E. S. Kasischke, and R. D. Johnson, "Using Landsat TM data to estimate carbon release from burned biomass in an Alaskan spruce forest complex," Int. J. Remote Sens., vol. 21, pp. 329-343, 2000.
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9
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11144232505
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Comparison of AVIRIS and Landsat ETM+ detection capabilities for burn severity
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J. W. van Wagtendonk, R. R. Root, and C. H. Key, "Comparison of AVIRIS and Landsat ETM+ detection capabilities for burn severity," Remote Sens. Environ., vol. 92, no. 3, pp. 397-408, 2004.
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Evaluation of remotely sensed indexes for assessing burn severity in interior Alaska using Landsat TM and ETM+
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Comparison of burn severity assessments using differenced normalized burn ratio and ground data
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Cocke, A.E.1
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Mapping fire-induced vegetation depletion in the peloncillo mountains, Arizona and New Mexico
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Mapping burns and natural reforestation using Thematic Mapper data
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Designing optimal spectral indexes for remote sensing applications
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Potential and limitations of information extraction on the terrestrial biosphere from satellite remote sensing
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Characterizing the spectral-temporal response of burned savannah using in situ spectroradiometry and infrared thermometry
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An in situ study of the effects of surface anisotropy on the remote sensing of burned savannah
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to be published
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S. N. Trigg, D. P. Roy, and S. P. Flasse, "An in situ study of the effects of surface anisotropy on the remote sensing of burned savannah," Int. J. Remote Sens., to be published.
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Trigg, S.N.1
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0036847450
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Atmospheric correction of the MODIS data in the visible to middle infrared: First results
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E. F. Vermote, N. Z. El Saleous, and C. O. Justice, "Atmospheric correction of the MODIS data in the visible to middle infrared: First results," Remote Sens. Environ., vol. 83, pp. 97-111, 2002.
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Vermote, E.F.1
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An enhanced contextual fire detection algorithm for MODIS
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L. Giglio, J. Descloitres, C. O. Justice, and Y. J. Kaufman, "An enhanced contextual fire detection algorithm for MODIS," Remote Sens. Environ., vol. 87, pp. 273-382, 2003.
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Giglio, L.1
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0036846045
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Burned area mapping using multitemporal moderate spatial resolution data - A bi-directional reflectance model-based expectation approach
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D. Roy, P. Lewis, and C. Justice, "Burned area mapping using multitemporal moderate spatial resolution data - A bi-directional reflectance model-based expectation approach," Remote Sens. Environ., vol. 83, pp. 263-286, 2002.
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