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The aim of this study was to evaluate the effects of thyroxine administration on morphometric parameters, expression of vascular endothelial growth factor (VEGF) and vascularization in the uterus and placenta and reproductive parameters in gilts at 70 days of gestation. At 150 days of age, i.e., before first heat, 20 gilts were randomly divided into two experimental groups: treated (n = 10) and control (n = 10). The treated group received a daily dose of 400 μg of l ‐thyroxine (T4) in their diet until slaughter and the control group received only typical meals. Before artificial insemination, blood was collected to determine plasma total T4. The gilts were inseminated in the second oestrus and slaughtered at 70 days of gestation. The foetal thyroid follicular epithelium height, number, size and weight of foetuses; foetal myogenesis, corpora lutea number, embryonic mortality rate, uterine weight, placental weight and placental fluid volume were measured. Histomorphometric and immunohistochemical analysis of uterus and placenta were determined. The averages of all variables were compared by the Student’s t‐test. The gilts treated with thyroxine showed significant increase of plasma total T4. At 70 days of gestation, the heights of the trophoblastic epithelium, endometrial epithelium and endometrial gland epithelium were significantly higher in the group treated with T4. The expression of cytoplasmatic and nuclear VEGF in trophoblastic cells and the number of blood vessels per field in endometrial stroma were significantly higher in the gilts treated with T4. No other significant differences between groups were obtained with respect to other parameters (p > 0.05). We conclude that oral administration of T4 up to 70 days of pregnancy in gilts affects the morphometric parameters, the expression of placental VEGF and the uterine vascularization but does not affect reproductive parameters in gilts during early gestation.  相似文献   
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Blood samples from birds of prey, 95 Strigiformes and 190 Falconiformes, were examined for the presence of haematozoan parasites. The birds had been admitted to a raptor recovery centre in Catalonia, north-east Spain. Parasites were counted in positive smears. A second blood sample was obtained from 99 birds at least seven days after their arrival at the centre. Haematozoa were detected in all seven species of Strigiformes and in nine of 19 species of Falconiformes. The overall prevalences in the two groups were significantly different, 30.5 per cent and 46.3 per cent in the nocturnal and diurnal raptors, respectively. Eleven species of haematozoan parasites were identified. The genus most commonly detected in members of the nocturnal Strigiformes was Leucocytozoon, followed by Haemoproteus, Plasmodium and Trypanosoma. In the diurnal Falconiformes only Leucocytozoon and Haemoproteus were detected. The highest infection rates were found in Accipiter nisus (sparrow hawks), Accipiter gentilis (goshawks) and Athene noctua (little owls). Relapses were detected in 9 per cent of the birds sampled twice. The highest intensity of infection (6.2 per cent) was observed in a Buteo buteo (buzzard) infected with Haemoproteus.  相似文献   
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Disease and health management in Asian aquaculture   总被引:8,自引:0,他引:8  
Asia contributes more than 90% to the world's aquaculture production. Like other farming systems, aquaculture is plagued with disease problems resulting from its intensification and commercialization. This paper describes the various factors, providing specific examples, which have contributed to the current disease problems faced by what is now the fastest growing food-producing sector globally. These include increased globalization of trade and markets; the intensification of fish-farming practices through the movement of broodstock, postlarvae, fry and fingerlings; the introduction of new species for aquaculture development; the expansion of the ornamental fish trade; the enhancement of marine and coastal areas through the stocking of aquatic animals raised in hatcheries; the unanticipated interactions between cultured and wild populations of aquatic animals; poor or lack of effective biosecurity measures; slow awareness on emerging diseases; the misunderstanding and misuse of specific pathogen free (SPF) stocks; climate change; other human-mediated movements of aquaculture commodities. Data on the socio-economic impacts of aquatic animal diseases are also presented, including estimates of losses in production, direct and indirect income and employment, market access or share of investment, and consumer confidence; food availability; industry failures. Examples of costs of investment in aquatic animal health-related activities, including national strategies, research, surveillance, control and other health management programmes are also provided. Finally, the strategies currently being implemented in the Asian region to deal with transboundary diseases affecting the aquaculture sector are highlighted. These include compliance with international codes, and development and implementation of regional guidelines and national aquatic animal health strategies; new diagnostic and therapeutic techniques and new information technology; new biosecurity measures including risk analysis, epidemiology, surveillance, reporting and planning for emergency response to epizootics; targeted research; institutional strengthening and manpower development (education, training and extension research and diagnostic services).  相似文献   
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