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7th Workshop on Forest Fire Management - EARSeL, European ...

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276<br />

IV - BURNED LAND MAPPING, FIRE SEVERITY DETERMINATION, AND VEGETATION RECOVERY ASSESSMENT<br />

reliable fire severity assessment, implying a big potential for other spectral<br />

indices based change detecti<strong>on</strong> studies in rugged terrain with low sun angle<br />

imagery.<br />

References<br />

Chavez, P., 1996. Image-based atmospheric correcti<strong>on</strong>s - revisited and<br />

improved. Photogrammetric Engineering & Remote Sensing, 62, 1025-<br />

1036.<br />

Key, C. and Bens<strong>on</strong>, N., 2005. Landscape assessment: ground measure of<br />

severity; the Composite Burn Index, and remote sensing of severity, the<br />

Normalized Burn Index. In Lutes, D., Keane, R., Caratti, J., Key, C.,<br />

Bens<strong>on</strong>, N., Sutherland S. and Gangi, L., (Editors). FIREMON: <strong>Fire</strong> effects<br />

m<strong>on</strong>itoring and inventory system (pp. 1-51). USDA <strong>Forest</strong> Service, Rocky<br />

Mountains Research Stati<strong>on</strong>, General Technical Report RMRS-GTR-164-CD<br />

LA.<br />

Roy, D., Boschetti, L. and Trigg, S., 2006. Remote sensing of fire severity:<br />

assessing the performance of the Normalized Burn Ratio. IEEE<br />

Transacti<strong>on</strong>s <strong>on</strong> Geoscience and Remote Sensing, 3, 112-116.<br />

Teillet, P., Guind<strong>on</strong>, B. and Goodenough, D., 1982. On the slope-aspect correcti<strong>on</strong><br />

of multispectral scanner data. Canadian Journal of Remote<br />

Sensing, 8, 84-106.

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