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Original Articles

Assessment of Vegetation Response to Drought in Nebraska Using Terra-MODIS Land Surface Temperature and Normalized Difference Vegetation Index

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Pages 432-455 | Published online: 15 May 2013

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Di Wu, John J. Qu & Xianjun Hao. (2015) Agricultural drought monitoring using MODIS-based drought indices over the USA Corn Belt. International Journal of Remote Sensing 36:21, pages 5403-5425.
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Ali Levent Yagci, Liping Di & Meixia Deng. (2015) The effect of corn–soybean rotation on the NDVI-based drought indicators: a case study in Iowa, USA, using Vegetation Condition Index. GIScience & Remote Sensing 52:3, pages 290-314.
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Sharmistha Swain, BrianD. Wardlow, Sunil Narumalani, DonaldC. Rundquist & MichaelJ. Hayes. (2013) Relationships between vegetation indices and root zone soil moisture under maize and soybean canopies in the US Corn Belt: a comparative study using a close-range sensing approach. International Journal of Remote Sensing 34:8, pages 2814-2828.
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Nicholas Cuba, John Rogan, Zachary Christman, ChristopherA. Williams, LauraC. Schneider, Deborah Lawrence & Marco Millones. (2013) Modelling dry season deciduousness in Mexican Yucatán forest using MODIS EVI data (2000–2011). GIScience & Remote Sensing 50:1, pages 26-49.
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WilliamH. Cooke, GeorgyV. Mostovoy, ValentineG. Anantharaj & W.Matt Jolly. (2012) Wildfire Potential Mapping over the State of Mississippi: A Land Surface Modeling Approach. GIScience & Remote Sensing 49:4, pages 492-509.
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C. E. Buckland, R. M. Bailey & D. S. G. Thomas. (2019) Using artificial neural networks to predict future dryland responses to human and climate disturbances. Scientific Reports 9:1.
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Glenn McGregor. (2015) Climatology in support of climate risk management. Progress in Physical Geography: Earth and Environment 39:4, pages 536-553.
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A. AghaKouchak, A. Farahmand, F. S. Melton, J. Teixeira, M. C. Anderson, B. D. Wardlow & C. R. Hain. (2015) Remote sensing of drought: Progress, challenges and opportunities. Reviews of Geophysics 53:2, pages 452-480.
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Jason A. Otkin, Martha C. Anderson, Christopher Hain & Mark Svoboda. (2014) Examining the Relationship between Drought Development and Rapid Changes in the Evaporative Stress Index. Journal of Hydrometeorology 15:3, pages 938-956.
Crossref
Jason A. Otkin, Martha C. Anderson, Christopher Hain, Iliana E. Mladenova, Jeffrey B. Basara & Mark Svoboda. (2013) Examining Rapid Onset Drought Development Using the Thermal Infrared–Based Evaporative Stress Index. Journal of Hydrometeorology 14:4, pages 1057-1074.
Crossref
Di Wu, John J. Qu, Xianjun Hao & Jack Xiong. (2013) The 2012 agricultural drought assessment in Nebraska using MODIS satellite data. The 2012 agricultural drought assessment in Nebraska using MODIS satellite data.

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