1. Arino, O., Piccolini, I., Kasischke, E., Siegert, F., Chuvieco, E., Martin, M.P., Li, Z., Fraser, R., Eva, H., Stroppiana, D., Pereira, J., Silva, J.M.N., Roy, D., and Barbosa, P.M. Methods of Mapping Burned Surfaces in Vegetation Fires, in Global and Regional Vegetation Fire Monitoring from Space: Planning a Coordinated International Effort, Ahern, F.J., Goldammer, J.G. and Justice, C.O., Eds., Netherlands: The Hague SPB Academic Publishing. 2001, pp. 227–255.
2. Bowman, D., Zhang, Y., Walsh, A., and Williams, R.J., Experimental Comparison of Four Remote Sensing Techniques to Map Tropical Savanna Fire-Scars Using Landsat-TM Imagery, International Journal of Wildland Fire, 2003, no. 12, pp. 341–348.
3. Brooks, M.L., D’Antonio, C.M., Richardson, D.M., Grace, J.B., Keeley, J.E., Di-Tomaso, J.M., Hobbs, R.J., Pellant, M., and Pyke, D., Effects of invasive alien plants on fire regimes, Bioscience, 2004, no. 54, pp. 677–688.
4. Buvaev, D.A., Investigation of Steppe Fires Spread on the Territory of the Republic of Kalmykia According to the Distant Monitoring Data, Vestnik Kalmytskogo Instituta Sotsial.-Ekonom. i Pravovykh Issledovanii, 2002, no. 2, pp. 168–173.
5. Carmona-Moreno, C., Belward, A., Malingreau, J.P., Hartley, A., Garcia-Alegre, M., Antonovskiy, M., Buchshtaber, V., and Pivovarov, V., Characterizing Interannual Variations in Global Fire Calendar Using Data from Earth Observing Satellites, Global Change Biology, 2005, no. 11, pp. 1537–1555.