IWMI-Giriraj Amarnath, 'Maximum flood inundation extent derived using MODIS 8-day 500m surface reflectance data for South East Asia (2002169)', IWMI-Giriraj Amarnath, 2015
IWMI-Giriraj Amarnath, 'Maximum flood inundation extent derived using MODIS 8-day 500m surface reflectance data for South East Asia (2003225)', IWMI-Giriraj Amarnath, 2015
IWMI-Giriraj Amarnath, 'Maximum flood inundation extent derived using MODIS 8-day 500m surface reflectance data for South East Asia (2010145)', IWMI-Giriraj Amarnath, 2015
IWMI-Giriraj Amarnath, 'Maximum flood inundation extent derived using MODIS 8-day 500m surface reflectance data for South East Asia (2011041)', IWMI-Giriraj Amarnath, 2015
IWMI-Giriraj Amarnath, 'Maximum flood inundation extent derived using MODIS 8-day 500m surface reflectance data for South East Asia (2013201)', IWMI-Giriraj Amarnath, 2015
IWMI-Giriraj Amarnath, 'Monthly maximum flood inundation extent derived using MODIS 8-day 500m surface reflectance data for South East Asia (2012-Jan)', IWMI-Giriraj Amarnath, 2015
IWMI-Giriraj Amarnath, 'Maximum flood inundation extent derived using MODIS 8-day 500m surface reflectance data for Nigeria (2003129)', IWMI-Giriraj Amarnath, 2015
IWMI-Giriraj Amarnath, 'Maximum flood inundation extent derived using MODIS 8-day 500m surface reflectance data for Nigeria (2003145)', IWMI-Giriraj Amarnath, 2015
IWMI-Giriraj Amarnath, 'Maximum flood inundation extent derived using MODIS 8-day 500m surface reflectance data for Nigeria (2003249)', IWMI-Giriraj Amarnath, 2015
IWMI-Giriraj Amarnath, 'Maximum flood inundation extent derived using MODIS 8-day 500m surface reflectance data for Nigeria (2003297)', IWMI-Giriraj Amarnath, 2015
IWMI-Giriraj Amarnath, 'Maximum flood inundation extent derived using MODIS 8-day 500m surface reflectance data for Nigeria (2005129)', IWMI-Giriraj Amarnath, 2015
IWMI-Giriraj Amarnath, 'Maximum flood inundation extent derived using MODIS 8-day 500m surface reflectance data for Nigeria (2010289)', IWMI-Giriraj Amarnath, 2015
Merrey, D. J.; Murray-Rust, H. 1991. Peoples' participation in the Gal Oya Rehabilitation Project as viewed by the agency personnel. In Singh, K. K. (Ed.). Farmers in the management of irrigation systems. New Delhi, India: Sterling. pp.121-146.
Swamila, M., Philip, D., Akyoo, M., Manda, J., Mwinuka, L., Smethurst, P., Sieber, S. and Kimaro, A. 2022. Profitability of Gliricidia-maize system in selected dryland areas of Dodoma Region, Tanzania. Sustainability 14:53.
Development Research Group, Finance and Private Sector Development Unit (World Bank), 'Global Financial Inclusion (Global Findex) Database 2014 (Guinea)', 2015
Sufian, Farha D; Nico, Gianluigi; Azzarri, Carlo, 'Examining the gender digital divide: A case study from rural Nigeria', International Food Policy Research Institute, Washington, DC, 2023
Feed the Future Innovation Lab for Small Scale Irrigation, 'Report on gender Inclusion in small-scale irrigation', Feed the Future Innovation Lab for Small Scale Irrigation, 2023
Castro, A., Rao, I. and Saravia, M. 2011. Unravelling mysteries of the Quesungal system: An alternative to slash and burn. Paper presented at the 3rd International Forum on Water and Food, Tshwane, South Africa, 14-17 November 2011. Colombo, Sri Lanka: CGIAR Challenge Program on Water and Food.
Nisa, Fakhar un et al. 2023. Genetic insights into crossbred dairy cattle of Pakistan: exploring allele frequency, linkage disequilibrium, and effective population size at a genome-wide scale. Mammalian Genome
Hobson-Peters, J., Arévalo, C., Cheah, W. Y., Blitvich, B. J., Tan, C. S. E., Sandis, A., Araya, L. N., Hernández, J. L., Toye, P., & Hall, R. A. (2011). Detection of Antibodies to West Nile Virus in Horses, Costa Rica, 2004. Vector-Borne and Zoonotic Diseases, 11(8), 1081–1084. https://doi.org/10.1089/vbz.2010.0198
Alamerew, E.A., Demis, C., Asfaw, T., Gemeda, B.A., Asres, F.A., Yitagesu, E., Wondifra, Y., and Areaya, A. 2022. Serological evidence of caprine arthritis encephalitis in North Shewa Zone, Ethiopia: Clinical case analysis. Veterinary Medicine: Research and Reports 13: 287–297.
Murase, Y., Konnai, S., Yamada, S., Githaka, N., Isezaki, M., Ito, T., Takano, A., Ando, S., Kawabata, H., Murata, S. and Ohashi, K. 2015. An investigation of binding ability of Ixodes persulcatus Schulze Salp15 with Lyme disease spirochetes. Insect Biochemistry and Molecular Biology 60: 59–67.
Moll, H.A.J., Staal, S.J. and Ibrahim, M.N.M. 2007. Smallholder dairy production and markets: a comparison of production systems in Zambia, Kenya and Sri Lanka. Agricultural Systems 94(2): 593-603.
International Livestock Centre for Africa, 'Trypanotolerant livestock in West and Central Africa. Volume 2. Country studies -Chapter 16. Gabon', International Livestock Centre for Africa, 1980
Ericksen, P. J., Thornton, P.K. and Nelson, G.C. 2020. Ruminant livestock and climate change in the tropics. IN: McIntire, J. and Grace, D. (eds.). The impact of the International Livestock Research Institute. Nairobi, Kenya: ILRI and Wallingford, UK: CABI: 601-638
Haileslassie, A., Blümmel, M., Clement, F. and Ishaq, S. 2011. Adapting livestock water demand to climate change: Experience from Indo-Ganga Basin of India. IN: Oguge, N.O., E. Omolo, and C. Lumosi, (eds). Climate Change and Natural Resource use in Eastern Africa: Impacts, Adaptation and Mitigation. Proceedings of the 3rd Scientific Conference of the Ecological Society for Eastern Africa. Nairobi, Kenya: Regal Press