Aboelghar, M., Arafat, S., Saleh, A., Naeem, S., Shirbeny, M. & Belal, A., 2010. Retrieving leaf area index from SPOT4 satellite data. The Egyptian Journal of Remote Sensing and Space Science, 13, 121-127. doi:10.1016/j.ejrs.2010.06.001.
Alshaikh, A.Y., 2015. Space applications for drought assessment in Wadi-Dama (West Tabouk), KSA. The Egyptian Journal of Remote Sensing and Space Science, 18(1), S43-S53.
Bajgiran, P.R., Darvishsefat, A.A., Khalili, A. & Makhdoum, M.F., 2008. Using AVHRR-based vegetation indices for drought monitoring in the Northwest of Iran. Journal of Arid Environments, 72(6), 1086-1096.
Belal, A.A., El–Ramady, H.R., Mohamed, E.S., & Saleh, A.M., 2014. Drought risk assessment using 295 remote sensing and GIS techniques, Arabian Journal of Geosciences, 7, 35-53. doi:10.1007/s12517-012- 0707-2.
Bevan, S.L., Los, S.O. & North, P.R.J., 2014. Response of vegetation to the 2003 European drought was mitigated by height, Biogeosciences, 11, 2897-2908. doi:10.5194/bg-11-2897-2014. Bhuiyan, C., 2008. Desert Vegetarian during Droughts: Response and Sensitivity, the International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Vol. XXXVII. Part B 8: 907- 912.
Bihamta, M.R. & Zare Chahouki, M.A., 2010. Principles of statistics for the natural resources science, University of Tehran Press, 2 nd edition, 228 p.
DEWFORA “Improved Drought Early Warning and Forecasting to Strengthen Preparedness and Adaptation to Droughts in Africa”, 2012. Methods for mapping drought vulnerability at different spatial scales, A 7th Framework Programme Collaborative Research Project.
Dutta, D., Arnab, K., Patel, N.R., Saha, S.K. & Siddiqui, A.R., 2015. Assessment of agricultural drought in Rajasthan (India) using remote sensing derived Vegetation Condition Index (VCI) and Standardized Precipitation Index (SPI), The Egyptian Journal of Remote Sensing and Space Sciencedoi, 10.1016/j.ejrs.2015.03.006.
Egidijus, R., Stonevicius, E., Kilpys, J., Maciulyte, V. & Valiukas, D., 2017, Drought identification in the Eastern Baltic region using NDVI, Manuscript under review for journal Earth System Dynamic.
Gebrehiwot, T., Van der Veen, A. & Maathuis, B., 2011. Spatial and temporal assessment of drought in the Northern highlands of Ethiopia. International Journal of Applied Earth Observation and Geoinformation, 13(3), 309-321.
Higginbottom, T.P. & Symeonakis, E., 2014. Assessing land degradation and desertification using vegetation index data: Current frameworks and future directions. Remote Sensing, 6(10), 9552-9575.
Jain, S.K., Keshri, R., Goswami, A. & Sarkar, A., 2010. Application of meteorological and vegetation indices for evaluation of drought impact: a case study for Rajasthan, India. Natural hazards, 54(3), 643-656.
Khan, S., Gabriel, H.F. & Rana, T., 2008. Standard precipitation index to track drought and assess impact of rainfall on watertables in irrigation areas, Irrig Drainage Syst, 159-177, online at: Springer Science + Business Media.
B.V. Khosravi, H., Haydari, E., Shekoohizadegan, S. & Zareie, S., 2016. Assessment the Effect of Drought on Vegetation in Desert Area using Landsat Data, The Egyptian Journal of Remote Sensing and Space Sciences, 1-10. Kogan, F., 2002. World droughts in the new millennium from AVHRR‐based vegetation health indices.
Eos, Transactions American Geophysical Union, 83(48), 557-563. Lillesand, T.M. & Kiefer, R.W., 1994. Remote Sensing and Image Interpretation, 3rd.
Ed., John Wiley and Sons, Inc., Toronto. Lotsch, A., Friedl, M.A., Anderson, B.T. & Tucker, C.J., 2003. Coupled vegetation‐precipitation variability observed from satellite and climate records. Geophysical Research Letters, 30(14).
Mahmodzadeh, A.H., Saghafian, B. & Mokhtari, A., 2008. Investigation of Correlation between SPI and NDVI in Fereydoun Shahr, Third Conference on Water Resources Management. University of Tabriz. Faculty of Civil Engineering: 8 p.
Mondal, S., Jeganathan, C., Sinha, N.K., Rajan, H., Roy, T. & Kumar, P., 2014. Extracting seasonal cropping patterns using multi-temporal vegetation indices from IRS LISS-III data in Muzaffarpur District of Bihar, India. The Egyptian Journal of Remote Sensing and Space Science, 17(2), 123-134.
Mosaedi, A., Khalilizadeh, M. & Mohammadi, A., 2008. Meteorological Drought Monitoring at Golestan Province, Journal of Agricultural Sciences and Natural Resources, 15(2).
Moulin, S., Bondeau, A. & Delecolle, R., 1998. Combining agricultural crop models and satellite observations: from field to regional scales. International Journal of Remote Sensing, 19(6), 1021-1036.
Nicholson, S.R., Davenport, M.L. & Malo, A.R., 1990. A Comparison of the Vegetation Response to Rainfall in the Sahel and East Africa, Using Normalized Difference Vegetation Index from NOAA AVHRR. Climate Change, 17(2&3), 209-241.
Ozelkan, E., Chen, G. & Ustundag, B.B., 2016. Multiscale object-based drought monitoring and comparison in rainfed and irrigated agriculture from Landsat 8 OLI imagery. International Journal of Applied Earth Observation and Geoinformation, 44, 159-170.
Svakumar, M.V.K., 2005. Natural Disasters and Extreme Events in Agriculture, Chapter 1of the Book titled: Impacts of Natural Disasters in Agriculture, Rangeland and Forestry: An Overview. Published by Springer Berlin Heidelberg New York.
Steinemann, A.C., Hayes, M.J. & Cavalcanti, L.F.N., 2005. Drought indicators and triggers. In Drought and Water Crises: Science, Technology, and Management Issues, Wilhite DA (ed). CRC Press: Boca Raton, 71-92.
Sun, Y., Solomon, S., Dai, A. & Portmann, R.W., 2006. How often does it rain?. Journal of climate, 19(6), 916-934.
Verbesselt, J., Hyndman, R., Newnham, G. & Culvenor, D., 2010. Detecting trend and seasonal changes in satellite image time series. Remote sensing of Environment, 114(1), 106-115.
Zhang, X., Friedl, M.A., Schaaf, C.B., Strahler, A.H. & Liu, Z., 2005. Monitoring the response of vegetation phenology to precipitation in Africa by coupling MODIS and TRMM instruments. Journal of Geophysical Research: Atmospheres, 110(D12).