• 제목/요약/키워드: Uterine horn

검색결과 78건 처리시간 0.019초

홀스타인 초산우에서 우측 자궁각의 부분무형성 일례 (Segmental Aplasia of the Right Uterine Horn in a Primiparous Holstein Cow)

  • 김일화;강현구;허태영;이혜림;모인필
    • 한국임상수의학회지
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    • 제29권5호
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    • pp.427-430
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    • 2012
  • 번식장애의 병력을 가진 3세 홀스타인 초산우가 분만 후 180일에 직장검사에 의해 자궁축농증으로 예비 진단되었다. 초음파검사 결과, 우측 자궁각의 전반 부분이 액체로 팽만, 자궁각 기저부 결손과 자궁각의 전반 부분은 치밀한 조직 띠에 의해 자궁체에 연결되어 있음을 보여 주었다. 좌측 자궁각은 정상적인 형태를 나타내었다. 사후 육안 검사는 초음파 검사 소견을 확증시켜 주었다. 벽이 얇아진 우측 자궁강 내에 진한 적갈색 점액이 차여 있었으며, 조직 병리 검사에 의해 이 부위에서 자궁소구 및 자궁샘이 관찰되지 않았다. 본 증례는 최종 우측 자궁각의 부분무형성으로 판명되었다.

애완 토끼에서 자궁수종, 자궁축농증, 자궁염전의 병발 증례 (Uterine Torsion Associated with Hydrometra and Pyometra in a Domestic Rabbit)

  • 나상기;최지혜
    • 한국임상수의학회지
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    • 제31권6호
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    • pp.544-546
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    • 2014
  • 식욕 부진과 복부 팽만을 보인 1.5살령의 암컷 토끼가 방사선 검사와 초음파 검사에서 자궁 확장 소견이 확인되었고, 이틀 후 쇼크로 응급 내원하여 탐색적 개복술을 실시하였다. 양측 자궁각이 자궁 경부에서 염전되어 있었고, 양측 자궁각의 내용물에 대한 배양 검사 결과 우측 자궁각은 자궁수종, 좌측 자궁각은 자궁축농증이 발생한 것으로 진단되었다. 질병의 발생 기전에 대해 정확하게 설명하기 어렵지만, 복부 팽만이 4개월간 지속되다가 갑자기 토끼 상태가 악화되어 쇼크로 진행된 점으로 미루어 초기에 자궁수종이 발생하였다가 감염 및 자궁 내 다량의 내용물로 인한 자궁염전이 급성으로 발생한 것으로 판단되었다. 본 증례는 각각의 자궁각에 자궁수종과 자궁축농증이 별도로 발생하고 염전이 동반된 매우 드문 예이다.

과잉배란처치면양에 있어서 수술적방법에 의한 난회수법의 검토 (Studies on Flushing Ova from the Sheep Uterus)

  • 권오경
    • 한국임상수의학회지
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    • 제4권2호
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    • pp.457-461
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    • 1987
  • A comparative study on the two techniques of uterine flushing in superovulated sheep was conducted. The first method was carried out by flushing of the horn through a Foley catheter inserted into the uterine horn (method I ). The second method involved flushing of the horn with the medium injected into uterine tip nea. the utero-tubal junction through a Foley catheter inserted into uterine horn(method II). Superovulation was carried out on day 8 of the estrous cycle by a FSH-PG method. Ova were flushed on 6 or 7 days after mating. The recovery rates in methods I and II were 68.0%(51/75) and 43.6%(17/39), respectively(p<0.05). It indicated that method I is effective technique for flushing of the sheep ova from the uterus.

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Sodium Carboxymethylcellulose를 이용한 개의 자궁 유착 방지 (Prevention of Uterine Adhesion by Sodium Carboxymethylcellulose in Dogs)

  • 강윤호;정종태;연성찬
    • 한국임상수의학회지
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    • 제17권2호
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    • pp.381-387
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    • 2000
  • Efficacy of a 1% solution of sodium carboxymethylcellulose (SCMC) infu7ed into the peritoneal cavity of dogs was evaluated for prevention of intraperitoneal adhesion, resulting from operations of the reproductive tract. Saline-treated deles (n = 5) were controls that underwent ventral midline celiotomy, and adhesions were cleated by incision and scraping about 5 cm segment of each uterine horn. Saline (7 ml/kg of body weight) was then infused into the peritoneal cavity. Others (n = 5) were treaded similarly to the saline-treated dogs. except that 1% SCMC :solution (7mH/kg of body weight) was infused into the peritoneal cavity. This group was studied to determine whether SCHC would prevent the adhesions in the peritoneal cavity, especially in the uterine horn model. Abdominal adhesions were evaluated and an adhesion severity score was assigned to each dog on the basis of severity of adhesions. At the time of necropsy. the mean adhesion score in the saline treated group was $2.65{\pm}0.22.$ In contrast, adhesion formation in the SCMC treated group was less ($mean score =1.70{\pm}0.26$). Statistic71 analysis was performed using the grouped t-test and paired t-test. A significanlty lower adhesion score was observed in dogs given SCMC than in the saline treated group (P<0.01). In summary, SCMC significantly reduced adhesion formation in the dog uterine horn model. The results of this study suggest that application of 1% SCMC solution, following various reproductive pelvic surgery, will present the adhesions.

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Thoroughbred 씨암말에서 난산과 연관된 자궁각 중첩 예 (Intussusception of the uterine horn associated with dystocia in a Thoroughbred broodmare)

  • 양재혁;양영진;김희석;강태영;;임윤규
    • 대한수의학회지
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    • 제44권1호
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    • pp.121-124
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    • 2004
  • Horses that have been retired from racing or imported from abroad are retired as broodmares. Whether at private farms or government institutes they are bred to stallions with the aim of improving fertility and enhancing the breed. Accidental deaths as a result of surgical or obstetrical complications lead to decreased productivity and economic losses to the horse breeding industry. Intussusception of the uterine horn is a frequent complication of the equine and bovine species, but rarely seen in other species. The most common causes are thought to be tearing of the placenta which is suspended from the uterus and ovaries and the weight of the placenta. Expulsion of the embryonic membranes is also thought to be a contributing factor. If symptoms are minor and treatment affected quickly, the problem will likely resolve itself. In more severe cases the uterus will prolapse completely. This case study was observed in a Thoroughbred broodmare. After treatment of dystocia, the broodmare could not stand up. She became dehydrated, collapsed, suffered colic and was euthanised. In this case was observed serious swelling vulva and perineal region by morphology, and there was seldom ascites and unusual view in thoracic and abdominal cavity after opening abdomen. However, intussusception of uterine horn involuted left uterine horn into the uterine body was observed.

Spontaneous Uterine Rupture in a Greyhound Bitch during Parturition

  • Park, Chul-Ho;Oh, Ki-Seok;Son, Chang-Ho
    • 한국수정란이식학회지
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    • 제29권4호
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    • pp.393-395
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    • 2014
  • A 6-year old, Greyhound bitch was presented with vaginal hemorrhage and dystocia. Physical examination revealed severe vaginal hemorrhage, abdominal pain, pale mucous membranes and the presence of solid structures to abdominal palpation. A hematological test revealed a marked hemorrhagic anemia, and abdominal radiography and ultrasonographic examination showed two dead fetuses in the uterus. Median laparotomy revealed a rupture of the left uterine horn adjacent to the bifurcation, region of weakened uterine wall in the right uterine horn, blood clots and uterine fluids in abdominal cavity without septic peritonitis. The bitch underwent ovariohysterectomy and recovered without complication.

도살빈우의 번식장애사례 조사연구 (Investigational Studies on Reproductive Failures of Slaughtered Cows)

  • 이용빈;임경순
    • 한국가축번식학회지
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    • 제6권1호
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    • pp.19-30
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    • 1982
  • 1. The cows slaughtered at age of 3, 4, 6, 7, 8, and 9 years old were 1.5, 1.5, 15.0, 62.5 and 4.4% respectively. 2. The cows slaughtered at 351-450kg and more than 500kg were 60 and 28% respectively. 3. Best, very good, good and bad cows in nutritional condition were 1.6, 25.8, 62.9, and 9.7% respectively. Among the six cows which were bad nutrition, the two were with severe endometritis, the three were normal in genital function and one was on 70 days of pregnancy. 4. Holstein cows(55.2%) showed higher reproductive failure than the Korean cows(33.3%). 5. The slaughted ratio of the Korean cattle and Holstein cows was 36 and 64% respectively. 6. Pregnant cows were about 16% among the slaughtered one. 7. Reproductive failures were composed of 46% in uterus, 32% in ovaries, 8% in udder, 6% in oviduct, 4% in cervix of uterine, 2% in vagina and 2% inmummified fetus. 8. Forty six percentages of uterine diseases were as follows; horn, 13%, body of uterus, 32% and ovary diseases were 32%, that is, 12% of ovary atrophy, 8% of ovarycyst and 6% of lutealcyst. 9. The cows of reproductive failures were commonly infected with 1.6 kinds of diseases. 10. According to classification, six type of ovaries were as follows; normal, 58%, ovary-cyst, 11%, luteum cyst, 4%, coexistence of follicles and corpus luteum, 16%, weak function of ovaries, 10% and ovarian atrophy, 1%. 11. Major axis, minor axis and thickness of right ovary were larger than those of left one both in Korean cattle and Holstein cows. Holstein cow had generally larger size of ovary than these of the Korean cattle.. 12. The left and right oviducts showed no difference in length, but Holstein had longer oviduct than Korean cow. 13. There was no difference in the length of uterine horn between right and left in the Korean cows, but the right was longer than the left in Holstein cows. 14. Holstein had longer horn and body of uterine than the Korean cows. 15. The weight of right ovary was heavier than that of left in both breeds, but there was no differences in weight of left ovary between two breeds and right ovary of Holstein breed was heavier than that of the Korean cow. 16. The weight of right oviduct and uterine born was heavier than that of the left, and Holstein had heavier oviducts and uterine horns than the Korean cows. 17. Holstein had heavier uterine body and cervix of uterine than the Korean cows. 18. The length of reproductive systems of Korean cow is as follows; Major and minor diameter and thickness ofovary are 3.6${\pm}$0.7, 2.3${\pm}$0.4 and 1.6${\pm}$1.4 cm in left and 3.7${\pm}$0.6, 2.5${\pm}$0.5 and 1.8${\pm}$0.5 cm in right. Oviduct is 28.4${\pm}$3.1 cm in left and 27.8${\pm}$3.3 cm in right. Uterine horn is 27.4${\pm}$4.5 cm in left and 27.7${\pm}$4.9 cm in right. Uterine body and cervix are 3.4${\pm}$1.1 and 6.5${\pm}$1.7 cm. 19. The length of female reproductive systems ofHolstein cow is as follows; Major and minor diameter and thickness of ovary are 3.9${\pm}$1.3, 2.3${\pm}$0.5, and 1.5${\pm}$0.6 cm in left and 4.0${\pm}$0.8, 2.8${\pm}$0.6 and 1.8${\pm}$0.6 cm in right. Oviduct is 29.4${\pm}$4.2 cm in left and 29.3${\pm}$4.1 cm in right. Uterine horn is 30.2${\pm}$7.4 cm in left and 32.6${\pm}$8.4 cm in right. Uterine body and cervix are 4.5${\pm}$2.5 and 7.8${\pm}$2.9 cm. 20. The weight of reproductive systems of Korean cow is as follows; Ovary is 8.4${\pm}$4.1 g in left and 9.3${\pm}$3.6g in right. Oviduct is 1.5${\pm}$0.5 g in left and 1.6${\pm}$0.5 g in right. Uterine horn is 109${\pm}$27 g left and 118${\pm}$32 g in right. Uterine body and cervix are 30.4${\pm}$14.1 and 76.7${\pm}$38.4g. 21. The weight of reproductive systems of Holstein cow is as follows; Ovary is 8.2${\pm}$3.1 g in left and 12.5${\pm}$5.6 g in right. Oviduct is 1.7${\pm}$0.6 g in left and 1.9${\pm}$0.9 g in right. Uterine horn is 199${\pm}$14.2 g in left and 221${\pm}$111.2g in right. Uterine body and cervix are 58.2${\pm}$46.5 and 126.7${\pm}$103.3 g.

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Asymptomatic Uterine Rupture Caused by Trauma in a Small-Sized Non-Gravid Dog

  • Ye-Eun Kim;Sang-Hyun Nam;Won-Jong Lee;Chang-Hwan Moon;Geum-Lan Hong;Ju-Young Jung;Jae-Min Jeong;Hae-Beom Lee;Seong-Mok Jeong;Dae-Hyun Kim
    • 한국임상수의학회지
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    • 제41권2호
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    • pp.112-116
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    • 2024
  • Uterine rupture is uncommon in small animals and can be caused by trauma, infection, dead fetus, or inappropriate obstetric techniques. A 4-year-old, intact female mixed-breed dog weighing 3 kg presented for elective ovariohysterectomy with a history of a motor vehicle accident two months previously. The patient showed no clinical signs of uterine abnormalities or evidence of pregnancy during physical examination. Clinical examinations, radiography, and ultrasonography revealed no significant findings. During ovariohysterectomy, a completely transected left uterine horn and dome-shaped ends were identified. The uterine layers were everted such that the endometrium could be seen outside the uterine horn. The dog recovered without post-operative complications and was discharged the following day. This report describes a rare case of an asymptomatic uterine rupture caused by trauma in a non-gravid dog.

한우에 있어서 생식기관액 중 지방산 조성과 조성율 (Fatty Acid constituents and Relative Compositions of Reproductive Tract Fluids in Korean Native Cows)

  • 신원집;정진우;최광수;신수길
    • 한국수정란이식학회지
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    • 제15권2호
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    • pp.147-156
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    • 2000
  • To investigate fatty acid constituents and relative compositions in the fluid of the follicles, oviducts, uterine body and uterine body in Korean native cow, the fluids of the reproductive tract were analyzed using gas chromatography. The samples were taken from various reproductive tract of 23 Korean native cows. q. Caprylic acid (C8:0), myristic acid(C14:0), palmitic acid(C16:0), palmitoleic acid(C16:1), stearic acid(C18:0), oleic acid(C18:1), linoleic acid(C18:2), arachidonic acid(C20:4) were found in the reproductive tracts of the cows, which made 8 kinds of fatty acid in total. 2. Palmitic acid, oleic acid, stearic acid were predominant with 35.67%, 24.98% and 17.52%, respectively. while low levels of fatty acids(<5%) were myristic acid, palmitoleic acid and caprylic acid with 1.75%, 1.28% and 2.69%, respectively. 3. Two kinds of polyunsaturated fatty acids, linoleic acid arachidonic acid were found in the reproductive tracts of cows. 4. Palmitic acid among saturated fatty acids and oleic acid among unsaturated fatty acids were the highest level in all of the reproductive tracts. 5. The Highest level of arachidonic acid was found in the uterine horn. 6. The sum of the palmitic acid and oleic acid were 61.72%, 63.72%, 57.66% and 57.65% for the fluid of follicle, oviduct, uterine horn and uterine body of the cows, respectively. 7. The relative compositions of palmitic acid, palmitoleic acid and caprylic acid were higher during the luteal phase than during the follicular phase. 8. The relative compositions of arachidonic acid was higher during the follicular phase in the fluid of uterine horn and uterine body of the cows. 9. The long chain fatty acid, the palmitic acid, stearic acid, oleic acid and linoleic acidshowed higher relative compositions during the follicular phase(86.49%∼95.51%) than during the luteal phase(85.64%∼88.93%).

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한우 정상 자궁의 초음파적 관찰 (The Ultrasonographic Images of Normal Uterus in Korean Native Cow)

  • 박철호;김재홍;문병권;김희수;김방실;이주환;박인철;김종택;서국현;오기석;손창호
    • 한국수정란이식학회지
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    • 제24권3호
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    • pp.159-167
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    • 2009
  • Ultrasonographic examination was performed to observe the ultrasonographic image of Korean native cows' normal uterus in condition of in vitro and in vivo. The experiment was done 28 slaughtered cows' uterus using immersed in water in vitro, and 41 healthy breeding cows taken rectal ultrasonography in vivo. Ultrasonographic examination of uterine was taken on the reference of cross section of intercornual ligaments' cranial. Each uterus on the experiments was compared by estrous cycle and ultrasonographic frequency. The uterine structure using ultrasonography was 5 layers of uterine horn in vivo as well as in vitro. Uterine horn was observed to be distinguished from inside to outside as endometrium to inner echogenic layer, circular muscle layer to slightly echogenic elliptical layer, stratum vasculare to central echogenic layer, longitudinal muscle layer to slightly echogenic arched layer, and perimetrium to outer echogenic layer, respectively. According to the observation of uterus related to estrous cycle and ultrasonographic examination, uterine endometrium in vitro was constantly founded irrespective of estrous cycle and ultrasonographic frequency. On the low frequency, endometrium and circular muscle layer in estrus were prone to distinguished than in diestrus. On the high frequency, endometrium and circular muscle layer were always distinguished regardless of estrous cycle. In vivo, uterine endometrium and circular muscle layer were observed regardless of estrus and ultrasonographic frequency. On the low frequency, stratum vasculare and longitudinal muscle layer were not likely to be distinguished in diestrus, but estrus. On the high frequency, stratum vasculare and longitudinal muscle layer were observed regardless of estrous cycle. Also, every uterine structure was easily distinguished on high frequency than low frequency owing to precision of distinction in layers. The difference of results followed by the experiments conditions between in vitro and in vivo was that uterine endometrium and circular muscle layer in diestrus in vitro were difficult to be distinguished and uterine lumen was observed during whole estrous cycle. In vivo, It was founded that the distinction of stratum vasculare and logitudinal muscle layer in diestrus was complicated and uterine lumen was observed during only estrus. In view of the result so far achieved, normal uterine structure divided in 5 layers on ultrasonography was accorded with microscopic organization, uterine structure was likely to be observed during estrus than diestrus, high frequency checkup than low frequency, and uterine endometrium, circular muscle, stratum vasculare was easily observed regardless of estrous cycle and ultrasonographic frequency.