• Title/Summary/Keyword: trans-cervical insemination

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Intra-uterine Insemination with Frozen Canine Semen Using Vaginal Endoscope (개에서 동결정액의 경관내 주입을 통한 인공수정)

  • 정동희;최윤주;임상현;김용준
    • Journal of Veterinary Clinics
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    • v.18 no.1
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    • pp.44-47
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    • 2001
  • Semen were collected from 9 male dogs and frozen by liquid nitrogengas. Frozen semen were thawed at 7$0^{\circ}C$ for 8 seconds. About $2{\timss}10^8$ sperm per insemination were inseminated to 10 bitches (3 Retrievers, 4 Chihuahuas, 1 Yorkshire Terriers, 1 Maltese, and 1 Poodle) at three and six days after the estimated peak of luteinizing hormone. For small breed dogs, uretero-renoscope (Kahl Storz, Germany, 12.5 Fr) was used for trans-cervical insemination, whereas cystoscope(Kahl Storz, Germany, 22Fr) was used for large breeds (Retrievers). Pregnancy was diagnosed by ultrasonography at 30 days after insemination. All of 3 Retrievers (100.0%) and 3 bitches of 7 small breed dogs (42.9%) were conceived (60.0% in total). This result indicated that trans-cervical insemination using endoscope is an effective method for AI with frozen semen not only for large breed dogs such as Retriever but also for small breeds.

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Effect of time and depth of insemination on fertility of Bharat Merino sheep inseminated trans-cervical with frozen-thawed semen

  • Kumar, Davendra;Naqvi, Syed Mohammed Khursheed
    • Journal of Animal Science and Technology
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    • v.56 no.3
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    • pp.8.1-8.6
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    • 2014
  • Background: Artificial insemination (AI) can serve as a powerful tool to the sheep owners for making rapid genetic progress of their flock. The AI in sheep is mostly performed using fresh semen with two reasons i) lambing rate following trans-cervical AI with frozen semen is limited by the inability of frozen-thawed sperm to transit the cervix and ii) the need of circumventing the cervical barrier through laparoscope aided intrauterine AI. Therefore, AI with frozen-thawed semen is not as widespread in sheep as it is in other domestic species. However, to get maximum benefits through the use of AI, frozen-thawed semen is a prerequisite because instead of high fertility, the short shelf life of fresh semen coupled with a limitation on the number of insemination doses achievable per unit time restricts the widespread use of individual sires. Therefore, in order to enhance lambing rate, a total of 240 trans-cervical artificial inseminations with frozen-thawed semen were performed in Bharat Merino ewes during autumn season either once in the evening (G-I, 10 h after onset of estrus, n = 100) or twice (G-II, 14 h and 22 h after onset of estrus, n = 140) i.e. once in the morning and again in the evening. Results: The pregnancy rate (proportion of pregnant ewes confirmed by ultrasonography at day 40) and lambing rate (proportion of ewes lambed) were higher in G-II as compared to G-I (26.4 vs 20% and 19.3 vs 10%, respectively). The difference in lambing rates was statistically (P < 0.05) significant. The depth of insemination within cervico-uterine tract had no significant effect on pregnancy and lambing rates. Conclusions: The results indicate that lambing rate in sheep following TCAI with frozen-thawed semen was significantly influenced by time of inseminations. Two inseminations after 14 and 22 h of onset of estrus enhanced the lambing rates of Bharat Merino sheep as compare to single insemination after 10 h of onset of estrus. The TCAI technique with frozen-thawed ram semen is promising and may serve as a valuable tool for genetic improvement of sheep breeds. Research efforts are going on worldwide to overcome the poor fertility following TCAI with frozen-thawed semen.

Natural vs synchronized estrus: determinants of successful pregnancy in ewes using frozen-thawed Suffolk semen

  • Rahman, Md. Mahbubur;Naher, Nazmun;Isam, Md. Mofijul;Hasan, Moinul;Naznin, Farhana;Bhuiyan, Mohammad Musharraf Uddin;Bari, Farida Yeasmin;Juyena, Nasrin Sultana
    • Journal of Animal Reproduction and Biotechnology
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    • v.35 no.2
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    • pp.183-189
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    • 2020
  • The pregnancy rate in indigenous ewes inseminated with frozen-thawed Suffolk semen following natural and synchronized estrus was determined. The serum Progesterone and Estrogen concentration and vaginal electrical resistance (VER) of ewes at the time of Artificial Insemination (AI) were observed as successful pregnancy determinants. 21 healthy ewes were selected for this experiment during January-April, 2017. 10 ewes were inseminated in natural estrus. Whereas, 11 ewes were inseminated after estrus synchronization using intravaginal sponges containing 60 mg medroxyprogesterone acetate. Trans-cervical Al (TCAI) was performed in all ewes within 12-16 hours of observed heat. Prostaglandin E1 analogue impregnated vaginal sponge was used for cervical relaxation 6-8 hours before insemination. Pregnancy was diagnosed through trans-abdominal ultrasonography after 40 days of AI. The pregnancy rate of ewes in synchronized estrus was higher (54.5%) than in natural estrus (30%). Higher serum Progesterone level (0.90 ± 0.02 ng/mL) and significantly (p < 0.001) lower VER (257.78 ± 10.11 ohm) were observed at the time of AI in ewes becoming pregnant. Results suggest that higher Progesterone concentration and lower VER could be considered as pregnancy indicators. Oestrous synchronization could be implemented to increase the pregnancy rate in ewes.

Ram semen preserved at 0℃ with soybean lecithin Tris-based extender substituted for egg yolk

  • Zhao, Jian-qing;Xiao, Guo-liang;Zhu, Wen-liang;Fang, Di;Li, Na;Han, Chun-mei;Gao, Qing-hua
    • Animal Bioscience
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    • v.34 no.2
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    • pp.192-197
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    • 2021
  • Objective: The present study evaluated the preservation of ram semen at 0℃ using soybean lecithin with a Tris-fructose extender. Methods: Semen was collected by artificial vagina ejaculation from six rams with proven fertility. High quality ejaculates were diluted by soybean lecithin (0.25%, 0.5%, 0.75%, 1.0%, 1.25%) using Tris-fructose extender and control (Tris-fructose egg yolk extender), respectively. The ejaculates were diluted to a concentration of 5×108 sperm/mL, followed by cooling to 0℃ in 90 min and maintaining the temperature for 12 days. The diluted semen samples were examined and recorded for sperm progressive motility, acrosome integrity at 0, 24, 72, 144, 216, 288 h, respectively. Two hundred and twenty-three ewes were inseminated for 216 h with optimal soybean lecithin concentrated semen or control via trans-cervical insemination. Results: The results showed that there were no differences in sperm progressive motility at 0, 24, 72, and 144 h (p>0.05). After 216 h, the sperm progressive motility in the control group and 0.5% concentration groups was significantly higher when compared to 0.25% concentration (p<0.05). The 0.5% concentration group demonstrated the highest survival rate and had no difference with the control group (p>0.05). At 216 h, the sperm progressive motility of all groups was still above 50%. The acrosome integrity of all groups was decreased with prolongation of storage time, but there was no difference at each time point (p>0.05). There was no significant difference in the lambing rate and pregnancy rate between the 0.5% concentration group and the control group (p>0.05). Conclusion: These results suggest that ram sperm is capable of fertilization after preservation at 0℃ with 0.5% of soybean lecithin in Tris-based extender substituted for egg yolk and produce normal offspring after insemination.