• Title/Summary/Keyword: fundic and cardiac regions

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An immunohistochemical study of the endocrine cells in the stomach of the Korean hedgehog(Erinaceus korean us) (고슴도치 위점막의 내분비세포에 관한 면역조직화학적 연구)

  • Lee, Jae-hyun;Lee, Hyeung-sik;Lee, Nam-soo;Kim, Jong-beom
    • Korean Journal of Veterinary Research
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    • v.31 no.1
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    • pp.19-26
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    • 1991
  • The gastric endocrine cells of the Korean hedgehog, Erinaceus korean us were studied immunohistochemically. Seven kinds of endocrine cells-, gastrin-, somatostatin-, 5-HT-, glucagon-, BPP-, motiIin-and GIP-immunoreactive cells- were identified in this study. The chracteristic findings of the regional distribution and relative frequency of them were examined. Gastrin-immunoreactive cells were very numerously detected only in the pyloric region. Somatostatin-immunoreactive cells were more numerous in the pyloric region than in the cardiac and fundic regions. 5-HT-immunoreactive cells were more numerous in the cardiac and pyloric regions than in the tundic one. Glucagon-immunoreactive cells were found few or rarely in the fundic and pyloric regions. BPP-imunoreactive cells were numerously distributed in the pyloric region, moderately in the fundic region and few in the cardiac region. Motilin-immunoreactive cells were found rarely or few in the fundic and pyloric regions. GIP-immnuoreactive Cells were detected onIy in the pyloric region.

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An electron microscopic study on endocrine cells in the cardiac and fundic regions of the Korean hedgehog(Erinaceus koreanus) (한국산 고슴도치 분문부와 위저부의 내분비세포에 관한 전자현미경적 연구)

  • Lee, Jae-hyun;Lee, Hyeung-sik;Lee, Nam-soo;Kim, Jong-beom
    • Korean Journal of Veterinary Research
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    • v.30 no.4
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    • pp.373-381
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    • 1990
  • Endocrine cells in the cardiac and fundic regions of the Korean hedgehog were studied ultrastructurally. Five types of endocrine cells classified as EC, ECL, $D_1$. G and A-like cells were identified in these regions. EC cells contained pleomorphic granules, 170~500nm in diameter, with high electron density and highly dense bodies in a dense matrix. ECL cells were characterized by the presence of round or oval granules, 220~450nm in diameter, with high electron density. Some granules of ECL cells showed a small amounts of contents or empty. $D_1$ cells contained round and relatively small granules, 140~400nm in diameter, with low to moderate electron density. G cells were characterized by the presence of round or oval granules, 200~400nm in diameter, with moderate electron density. Some granules of these cells showed a narrow halo between the limiting membrane and the granular matrix. A-like cells contained round granules, 170~260nm in diameter, With high electron density. The granules of these cells showed homogeneous matrix surrounded by the tight membrane.

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Pathological Studies on the Esophagogastric Ulcers in Swine (돼지의 위궤양(胃潰瘍)에 관한 병리학적(病理學的) 연구(硏究))

  • Kang, Mun-Il;Rim, Bong-Ho;Lee, Chung-Gil
    • Korean Journal of Veterinary Research
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    • v.22 no.1
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    • pp.53-58
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    • 1982
  • Stomachs from 3,354 fattening pigs were examined at slaughter during the period from September 1980 to August 1981. Pigs of both sexes and $Landrace{\times}Hampshire$ crossbreds were included in the present studies, and they weighed about 60-120kg. Gross pathologic alterations of the stomach were classified as normal, epitnelial change, erosion, ulcer and scar formation. Representative tissue sections were taken from the stomach lesions at random and fixed in 10% buffered formalin. Cut sections were stained with hematoxylin and eosin, and examined histopathologically. The results obtained in the present studies were as follows. 1. In the seasonal prevalence of gastric ulceration, severe ulceration with erosion was shown during the Autumn and Winter, whereas mild ulceration was mainly shown during the Spring and Summer. 2. Of the 3,354 stomachs of the pigs, 20.8% were found to be normal. Of the rest, 40% had epithelial changes, followed by erosion (24.7%), ulcer (13.6%) and scar formation (0.9%), respectively. 3. In the prevalence of ulcers in the different regions of the stomach, the fundic region had the highest rate (61.6%) of ulceration, followed by cardiac (21.7%), esophageal (15.0%) and pyloric region (1.7%). 4. The principal gross changes were severe epithelial changes with keratotic proliferation in the esophageal region, and in the fundic region severe folding of the stomach wall was covered with bloody mucous exudates. 5. Main histopathological changes were inflammatory cell infiltrations in most cases, hemorrhages in acute ulcers and prominent proliferation of granulation tissues in chronic ulcers.

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Ontogenetic Development of the Digestive System in Chub Mackerel Scomber japonicus Larvae and Juveniles

  • Park, Su-Jin;Lee, So-Gwang;Gwak, Woo-Seok
    • Fisheries and Aquatic Sciences
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    • v.18 no.3
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    • pp.301-309
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    • 2015
  • Chub mackerel, Scomber japonicus, larvae and juveniles were reared from hatching to 35 days after hatching (DAH), and the development of their digestive systems was histologically investigated. The larvae were initially fed on rotifers and Artemia nauplii starting around 19 DAH, and thereafter on Artemia nauplii, fish eggs, and a formulated feed mixture. The primitive digestive system differentiated at 3 DAH; the digestive tract was distinctively divided into the buccopharyngeal cavity, esophagus, stomach, air bladder, intestines, and rectum. The gastric gland and pyloric caeca first appeared at 5 and 7 DAH, respectively. The stomach was divided into cardiac, fundic, and pyloric regions in the preflexion phase. The number of gastric glands and pyloric caeca, as well as the volume of the gastric blind sac increased markedly, with development continuing into the juvenile stage. The precocious development of the digestive system during the larval period might be related to the early appearance of piscivory, which is able to support high growth potential. The organogenesis results obtained for this precocial species represent a useful tool to aid our understanding of the physiological requirements of larvae and juveniles to ensure optimal welfare and growth under aquaculture conditions, which will improve current rearing practices of this scombrid species.