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ABSTRACT

The impacts of improved agricultural technologies on smallholder households in Africa are well documented in the literature. However, the literature on the welfare impacts of aquaculture technologies, especially in the context of smallholder households, is very scanty. This paper applies the propensity score matching technique to household survey data to examine the impact of improved feed technology on fish income and poverty in Kenya. After controlling for observable household characteristics, the results indicate that improved feed technology increases aquaculture income and reduces poverty among fish farming households. Specifically, the income effect of the technology is 23–37%, with resultant poverty reduction effect of 19–23% points. Evidence from the study indicates that the likelihood of adopting improved feed in Kenya will surge with improved extension service delivery, access to government subsidized feed, and easy market access for purchasing improved feed and sale of mature fish.  相似文献   
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This study employs double‐hurdle model and propensity score‐matching techniques to examine the determinants and extent of adoption and the welfare impacts of improved fish feed technology in Ghana using cross‐sectional data of fish‐farming households. The study focuses on the Ashanti, Brong Ahafo, and western regions of Ghana. The results show that the quantity of improved feed used on‐farm is far below what is technically recommended for maximum yield. The analysis provides evidence that the adoption of improved feed technology increases fish income, as well as reduces poverty among fish‐farming households in the study area. In order to spur the adoption and intensity of the technology, complementary factors such as improving education, delivery of extension services and credit facilities, expansion of area under fish farming, and reduction in the price of improved feed are recommended.  相似文献   
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1. Currently there remains contradictory information on the localisation and possible role of alkaline phosphatase (AP) in the chicken and Japanese quail oviducts. 2. Using turkeys with a hard-shelled egg in their uteri, vaginal and uterovaginal junction mucosae were stretched and fixed as whole mounts prior to the histochemical localisation of AP activity. 3. Scattered AP reactive cells were observed in the vaginal and uterovaginal junction surface epithelia and intense AP reactivity of the sperm-storage tubule (SST) epithelium, localised to its apical border. 4. We suggest that such AP reactivity in hens in egg production may reflect cell differentiation and proliferation in the vagina and SST and possibly a mechanism for the transfer of lipid from the SST epithelia to resident sperm.  相似文献   
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