• Title/Summary/Keyword: Deformed vertebrae

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Vertebral Column Deformities in Rhynchocypris oxycephalus by Cold Shock Treatment (저온처리에 의한 버들치, Rhynchocypris oxycephalus 척주 기형)

  • Park, In-Seok
    • Journal of fish pathology
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    • v.13 no.2
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    • pp.147-151
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    • 2000
  • Deformed vertebrae by cold shock in Rhynchocypris oxycephalus were discovered. Deformity was externally noticed in the caudal penducle region of R. oxycephalus. Radiographic and histologic investigation confirmed the deformity. Especially, histological investigations provided the fact that extensive fusion between neighbouring vertebrae is caused by removal of endogeneous mineralized tissue. Deformed vertebrae appeared suggesting the direct evidence of vertebral fusion had arisen internally by cold shock in this species.

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Some cases of fused and deformed lumbar vertebrae in equine (말의 요추골유합과 요추골변형의 증례)

  • Kim, Chong-Sup;Kang, Byoung-Il;Koh, Phil-Ok;Cho, Kyu-Woan;Huh, Chan-Kwen;Won, Chung-Kil
    • Korean Journal of Veterinary Research
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    • v.44 no.1
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    • pp.1-5
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    • 2004
  • The fused and deformed lumbar vertebrae (L) of Thoroughbred horses were observed macroscopically. Results revealed five L in two cases, and six L in three cases. In two cases, the last two lumbar vertebrae were fused with each other. One case of the fused lumbar vertebra was observed in a horse with five L and the other in that with six L. In one case, the facet of second last lumbar vertebra was articulated with its anterior lumbar vertebra. On the other hand, four cases had the caudal border on the lateral tip of the lumbar transverse process partially overlapped with the cranial border of the following lumbar transverse process. In these cases, cranial and caudal tubers were formed on the overlapped part of the lumbar transverse process.

Schistosomus reflexus in Korean native calf (한우 송아지의 반전성열체)

  • Kim, Chong-sup;Huh, Chan-kwen;Lee, Jong-hwan;Lee, Jong-han
    • Korean Journal of Veterinary Research
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    • v.36 no.2
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    • pp.289-296
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    • 1996
  • A case of schistosomus reflexes in Korean native female calf was observed macroscopically and radiographically. The results were summarized as follows. 1. The abdominal visceral organs were exposed. 2. The vertebral column bent laterally to the left, and the sacrum approached to the cranium by reflected caudal lumber vertebrae, presenting S-shaped lateral twisting of the vertebrae. 3. The right ribs reflected laterally and dorso-cranially from the 7th rib to 13th rib. The left ribs bent caudally from 8th rib to 13th rib. 4. The length of rudimentary 6th right rib was one half of normal size and the 7th right rib was one third. 5. The sternum was bifid split from the fourth sternebra through the xyphoid cartilage. 6. The diaphragm was intact and thoracic cavity was reduced in size. The lung and heart severely deformed in shape and size. 7. The liver markedly deformed in shape and thickness. 8. The pelvic cavity was reduced in size by compression laterally to the left. 9. The uterus horn, ovary, urinary bladder, and urethra were severely deformed in the shape and position.

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Vertebral abnormality in Hatchery-reared River puffer, Takifugu obscurus fingerlings (인공종묘 생산 황복 (Takifugu obscurus) 치어의 척추 변형에 관하여)

  • Park, Sung-Woo;Kang, Kook-Hee
    • Journal of fish pathology
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    • v.20 no.2
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    • pp.129-137
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    • 2007
  • Skeletal deformity in hatchery-reared river puffer (Takifugu obscurus) fingerlings occurred. The vertebral abnormality was recognized with naked eyes 80 days after hatching. Affected fish had a good appetite but no clinical signs were found except the vertebral abnormality. As more than 90% of the hatchery-reared fish exhibited vertebral abnormality, the fingerlings could not be used for commercial seeds any more. Morphological changes in the vertebrate and the swim bladder were observed with a soft X-ray. Histopathological changes on the caudal muscle around the deformed vertebrae, gill, and spleen were also examined to clarify the cause of the deformity. Spinal curvature occurred between vertebrae 10 and 12, but any malfunction of the swim bladder was not found. The diameters of the muscle fibers around the deformed vertebrae were much smaller and more irregular than those in normal fish, and the gabs between the fiber bundles were greatly enlarged. No evidence of inflammation response was found in the muscle layer. In the hatchery, feed was putting at the position of water inflow, which might attract the fingerings to move toward the feed in spite of incomplete development of their caudal muscle fibers. From these results, it is suggested that the high speed of water current in rearing aquaria might be associated with the development of vertebral abnormality.

A case of fused thoracic vertebrae and deformity of the lumbar vertebrae in equine (말의 흉추골유합과 요추골변형의 1례)

  • Kim, Chong-Sup;Song, Chi-Won;Cho, Gyu-Hyen;Lee, Sang-Rae;Yang, Je-Hoon;Won, Chung-Kil
    • Korean Journal of Veterinary Research
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    • v.43 no.1
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    • pp.5-9
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    • 2003
  • The fused thoracic vertebra and deformity of the lumbar vertebrae in the female Thoroughbred horse were observed macroscopically. The 11th and 12th thoracic vertebrae (T) were partially fused. They were composed of three parts between the spinous process of the 11th and 12th T, left and right caudal articular processes of the 11th T, and left and right cranial articular processes of the 12th T. The vertical surface of cranial articular process of the 11th T and left mamillary process of the 12th T were absent. The left caudal part of the transverse process of the 12th T and left costal fovea of the transverse process of the 12th T were severely deformed. On the other hand, the left transverse process of the first lumbar vertebra (L) was a typical rib-like transverse process and two times longer than the right transverse process of the 2nd L. The right transverse process of 4th L has an oval concave facet on the medial part of caudal border for articulation with the right transverse process of 5th L; the latter has a corresponding convex facet on the medial part of the cranial border in the right transverse process of the 5th L.