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References
|
Abate TM, Dessie AB, Mekie TM (2019). Technical efficiency of smallholder farmers in red pepper production in North Gondar zone Amhara regional state, Ethiopia. Journal of Economic Structures 8(1):18. |
|
|
Ahmad N, Sinha DK, Singh KM (2017). Estimating Production Efficiency in Rice Cultivation of Bihar: An Economic Approach. Economic Affairs; New Delhi Publishers 62(3):353-360. |
|
|
Ayieko MA, Ogola HJ, Ayieko IA. (2016). Introducing rearing crickets (gryllids) at household levels: adoption, processing and nutritional values. Journal of Insects as Food and Feed 2(3):203-211. |
|
|
Battese GE, Coelli TJ (1995). A model for technical inefficiency effects in a stochastic frontier production function for panel data. Empirical Economics 20(2):325-332. |
|
|
Bawa M, Songsermpong S, Kaewtapee C, Chanpu W (2020). Effect of Diet on the Growth Performance, Feed Conversion, and Nutrient Content of the House Cricket. Journal of Insect Science 20(2). |
|
|
Biodiversity International Report (2012). Biodiversity International, CGIAR Consortium, Food and Agriculture Organization of the United Nations, International Fund for Agricultural Development, International Food Policy Research Institute, Inter-American Institute for Cooperation on Agriculture, Organisation for Economic Co-operation and Development, United Nations Conference on Trade and Development, United Nations High Level Task Force on Global Food Security, World Food Programme, World Bank, & World Trade Organization. Sustainable Agricultural Productivity Growth and Bridging the Gap for Small-Family Farms: Interagency Report to the Mexican G20 Presidency. World Bank. |
|
|
Bravo-Ureta BE, Jara-Rojas R, Lachaud MA, Moreira LVH, Scheierling SM (2015). Water and farm efficiency: Insights from the frontier literature. |
|
|
Bravo-Ureta BE, Pinheiro AE (1997). Technical, Economic, and Allocative Efficiency in Peasant Farming: Evidence From the Dominican Republic. The Developing Economies 35(1):48-67. |
|
|
Cachia F (2018). Guidelines for the measurement of productivity and efficiency in agriculture. Food Policy 98:101934. 10.13140/RG.2.2.31566.72006 |
|
|
Cornwell C, Schmidt P (2008). Stochastic Frontier Analysis and Efficiency Estimation. In: L. Mátyás & P. Sevestre (Eds.), the Econometrics of Panel Data: Fundamentals and Recent Developments in Theory and Practice pp. 697-726. Springer. |
|
|
Debebe S, Haji J, Goshu D, Edriss AK (2015). Technical, allocative, and economic efficiency among smallholder maize farmers in Southwestern Ethiopia: Parametric approach. Journal of Development and Agricultural Economics 7(8):282-291. |
|
|
Degefa K, Jaleta M, Legesse B (2017). Economic Efficiency of Smallholder Farmers in Maize Production in Bako Tibe District, Ethiopia. Developing Country Studies 7(2):80-86. |
|
|
Dobrowsky DW, Nick V, Colin T, Jennifer P (2013). Technical and allocative efficiency in determining organizational forms in agriculture: A case study of corporate farming. Stellenbosch University. |
|
|
Emmanuel H, Richard M, Willis O (2018). An Economic Analysis of Poultry Production Efficiency and Marketing in Rwanda. Diss. University of Nairobi. |
|
|
Food and Agriculture Organization of the United Nations (FAO) (2017). The future of food and agriculture: Trends and challenges. Food and Agriculture Organization of the United Nations. |
|
|
Food and Agriculture Organization of the United Nations (FAO) (2018). The future of food and agriculture - Alternative pathways to 2050 (Summary version) (P 60). |
|
|
Food and Agriculture Organization of the United Nations (FAO) (2021). Looking at edible insects from a food safety perspective. Challenges and opportunities for the sector. Rome. |
|
|
Farrell MJ (1957). The Measurement of Productive Efficiency. Journal of the Royal Statistical Society. Series A (General) 120(3):253-290. JSTOR. |
|
|
Ferrara G (2020). Stochastic frontier models using R. In Handbook of Statistics 42(9):299-326. Elsevier. |
|
|
Ferrara G, Vidoli F (2017). Semiparametric stochastic frontier models: A generalized additive model approach. European Journal of Operational Research 258(2):761-777. |
|
|
Ferronato N, Torretta V (2019). Waste Mismanagement in Developing Countries: A Review of Global Issues. International Journal of Environmental Research and Public Health 16(6). |
|
|
Flying Food (2014). Optimisation egg laying places | Flying Food Project. Optimisation Egg Laying Places|Flying Food Project. |
|
|
Gebretsadik D (2017). Technical, Allocative and Economic Efficiencies and Sources of Inefficiencies among Large-scale Sesame Producers in Kafta Humera District, Western Zone of Tigray, Ethiopia: Non-parametric approach. International Journal of Scientific and Engineering Research 8(6):2041-2061. |
|
|
Halloran A, Ayieko M, Oloo J, Konyole SO, Alemu MH, Roos N (2020). What determines farmers' awareness and interest in adopting cricket farming? A pilot study from Kenya. International Journal of Tropical Insect Science pp. 1-16. |
|
|
Halloran A, Megido RC, Oloo J, Weigel T, Nsevolo P, Francis F (2018a). Comparative aspects of cricket farming in Thailand, Cambodia, Lao People's Democratic Republic, Democratic Republic of the Congo and Kenya. Journal of Insects as Food and Feed 4(2):101-114. |
|
|
Halloran A, Flore R, Vantomme P, Roos N (2018b). Edible Insects in Sustainable Food Systems. Springer International Publishing. |
|
|
Halloran A, Roos N, Hanboonsong Y (2017). Cricket farming as a livelihood strategy in Thailand. The Geographical Journal 183(1):112-124. |
|
|
Highfield (2019). Insect Farming for Fun or Profit. |
|
|
Holleman C, Rembold F, Crespo O, Conti V (2020). The impact of climate variability and extremes on agriculture and food security - An analysis of the evidence and case studies. Background paper for |
|
|
The State of Food Security and Nutrition in the World 2018. FAO Agricultural Development Economics Technical Study No. 4. Rome, FAO. |
|
|
Huis A (2013). Edible insects: Future prospects for food and feed security (No. 171). Food and Agriculture Organization of the United Nations. |
|
|
Kahn L, Cottle D (2014). Beef Cattle Production and Trade. Csiro Publishing. |
|
|
Kamau PN (2019). Technical, Economic and Allocative Efficiency among Maize and Rice Farmers Under Different Land-Use Systems in East African Wetlands [Thesis, Kenyatta University]. |
|
|
Kelemu S, Niassy S, Torto B, Fiaboe K, Affognon H, Tonnang H, Maniania NK, Ekesi S (2015). African edible insects for food and feed: Inventory, diversity, commonalities and contribution to food security. Journal of Insects as Food and Feed 1(2):103-119. |
|
|
Lema TZ, Tessema SA, Abebe FA (2016). Analysis of Technical Efficiency of Rice Production in Fogera District of Ethiopia: A Stochastic Frontier Approach. Ethiopian Journal of Economics 26(2):88-108. |
|
|
Maina FW, Mburu J, Gitau GK, Van LJ (2018). Assessing the Economic Efficiency of Milk Production among Small-Scale Dairy Farmers in Mukurweini Sub-County, Nyeri County, Kenya [University of Nairobi]. |
|
|
Marie ŠP (2014). Parametric and Non-Parametric Calculation of Technical Efficiency: Application on the Czech Local Action Groups. |
|
|
Masuku BB, Masuku MB, Belete A (2014). Economic efficiency of smallholder dairy farmers in Swaziland: An application of the profit function. Journal of Agricultural Studies 2(2):132-146. |
|
|
McCluney KE, Date RC (2008). The effects of hydration on growth of the house cricket, Acheta domesticus. Journal of Insect Science 8(1):1-9. |
|
|
Melissa K (2014). Breeding and Raising the House Cricket. |
|
|
Miech P (2018). Dissertation: Cricket farming - An alternative for producing food and feed in Cambodia. SLU.SE. |
|
|
Morales-Ramos JA, Rojas MG, Dossey AT, Berhow M (2020). Self-selection of food ingredients and agricultural by-products by the house cricket, Acheta domesticus (Orthoptera: Gryllidae): A holistic approach to develop optimized diets. PLOS ONE 15(1):e0227400. |
|
|
Mussa EC (2011). Economic efficiency of smallholder major crops production in the central highlands of Ethiopia. |
|
|
Mutoko M (2015). Analysis of Economic Efficiency in Smallholder Maize Production in Northwestern Kenya. East African Agricultural and Forestry Journal 74(1-2):139-147. |
|
|
Offor E (2010). The Nutritional Requirements of Phytophagous Insects: Why do Insects Feed on Plants? (SSRN Scholarly Paper ID 1535274). Social Science Research Network. |
|
|
Ogunniyi LT, Adepoju AA, Olagunju FI, Ojedokun IK, Ganiyu MO (2014). Efficiency and Livestock Production in Oyo State of Nigeria. Journal of Animal Science Advances 4(1):690-698. |
|
|
Okello DM, Bonabana-Wabbi J, Mugonola B (2019). Farm level allocative efficiency of rice production in Gulu and Amuru districts, Northern Uganda. Agricultural and Food Economics 7(1):19. |
|
|
Orinda MA, Mosi RO, Ayieko MA, Amimo FA (2017). Growth performance of Common house cricket (Acheta domesticus) and field cricket (Gryllus bimaculatus) crickets fed on agro-byproducts. Journal of Insects as Food and Feed 7(3):301-310. |
|
|
Orinda M, Mosi RO, Ayieko M, Amimo FA, Nchimbi HY (2018). Technical Efficiency of Crickets (A. domesticus and G. bimaculatus) Production: A Cobb-Douglas Stochastic Frontier Approach. Journal of Agricultural Economics and Rural Development 4(2):520-528. |
|
|
Shittu AM (2014). Off-farm labour supply and production efficiency of farm household in rural Southwest Nigeria. Agricultural and Food Economics 2(1):8. |
|
|
Sorjonen JM, Valtonen A, Hirvisalo E, Karhapää M, Lehtovaara VJ, Lindgren J, Marnila P, Mooney P, Mäki M, Siljander-Rasi H, Tapio M, Tuiskula-Haavisto M, Roininen H (2019). The plant-based by-product diets for the mass-rearing of Acheta domesticus and Gryllus bimaculatus. Plos One 14(6).e0218830. |
|
|
Umoh GS (2006). Resource use efficiency in urban farming: An application of stochastic frontier production function. International Journal of Agriculture and Biology 8(1): 38-44. |
|
|
Vidoli F, Ferrara G (2015). Analyzing Italian citrus sector by semi-nonparametric frontier efficiency models. Empirical Economics 49(2):641-658. |
|
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