• Title/Summary/Keyword: Laparoscopic insemination

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Transcervical or Laparoscopic Insemination of Frozen-thawed Semen in Estrus-synchronized Himalayan Tahrs (Hemitragus jemlahicus)

  • Yong, Hwan-Yul;Park, Jung-Eun;Kim, Min-Ah;Bae, Bok-Soo;Kim, Seung-Dong;Ha, Yong-Hee;Oh, Chang-Sik;Kim, Doo-Hee;Kim, Myoung-Ho;Yoo, Mi-Hyun;Jeong, Yu-Jeong;Ro, Sang-Chul
    • Journal of Embryo Transfer
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    • v.25 no.4
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    • pp.291-295
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    • 2010
  • Four estrus-induced Himalayan tahrs (Hemitragus jemlahicus) were inseminated with frozen-thawed semen by laparoscopic or transcervical insemination techniques with no regard to the site of ovulation in non-breeding season. In June and July, 2009, estrus was synchronized by Eazi-Breed $CIDR^{(R)}$ (Controlled internal drug release; Pfizer Animal Health, New Zealand) insertion for 16 days and PG 600 (PMSG 400IU, hCG 200 IU; Intervet, Netherlands) injection (IM) a day before removing $CIDR^{(R)}$. Forty eight hours later, laparoscopic or transcervical insemination was done to each of two tahrs under anesthetic condition inducted by ketamine (1.5 mg/kg) and medetomidine (0.09 mg/kg). For examination of estradiol and progesterone, blood was collected right before $CIDR^{(R)}$ insertion, PG 600 injection, $CIDR^{(R)}$ removal and insemination. Estradiol levels of four tahrs (No. 1, 2, 3, 4) before $CIDR^{(R)}$ insertion and insemination were 13.3, 8.8, 14.3, 12 pg/ml and 23.5, 25.5, 21.1, 11.5 pg/ml, respectively. Progesterone levels of four tahrs (No. 1, 2, 3, 4) before $CIDR^{(R)}$ insertion and insemination were 1.8, 0.05, 0.63, 0.61 ng/ml and 1.03, 0.37, 1.48, 2.12 ng/ml. Except for No. 4 tahr, cervices showed cervical mucus and opened enough to penetrate with embryo transfer gun sheet usually used for cows. Therefore, No.4 was laparoscopically inseminated together with No. 1. In conclusion, none of four Himalayan tahrs was pregnant. However, we proved that estrus could be induced by CIDR and PG 600 injection in non-breeding season, and laparoscopic or transcervical insemination with frozen-thawed semen could be one of assisted reproductive techniques in Himalayan Tahr.

Effect of varying amounts of linseed oil or saturated fatty acids around insemination on reproductive and blood parameters of ewes

  • Hamed Esmaili;Mohsen Eslami;Hamed Khalilvandi-Behrozyar;Farhad Farrokhi-Ardabili
    • Journal of Animal Science and Technology
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    • v.65 no.5
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    • pp.922-938
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    • 2023
  • The current study was designed to evaluate the effect of sequential low and high dietary linseed oil (LO; as omega-3 enriched fatty acid; FA) before and post insemination, respectively, on different plasma variables of ewes. Fat-tailed Qezel ewes were assigned randomly to be fed a diet enriched with 3% LO (n = 30) or the saturated FA (SFA; n = 30) three weeks before insemination (Day 0). The lipogenic diet supplemented with 6% LO or SFA was fed after insemination until Day +21. The control ewes were fed an isocaloric and isonitrogenous diet with no additional FA during the study. Estrus was synchronized by inserting a vaginal sponge (Spongavet®) for 12 days + 500 IU equine chorionic gonadotropin (eCG; Gonaser®), and ewes were inseminated via laparoscopic approach 56-59 h after eCG injection. The size of ovarian structures was assessed by transvaginal ultrasonography at -21, -14, -2, 0, and +10 days. Blood samples were collected weekly to measure the plasma's different biochemical variables and FA profile. Treatment did not affect the amounts of glucose, aspartate aminotransferase, alanine aminotransferase, lactate dehydrogenase, interleukin-10, interleukin-2, and non-esterified FA (p > 0.05). Conversely, concentrations of triglyceride, cholesterol, tumor necrosis factor-alpha, and insulin-like growth factor-1 were higher in SFA-fed ewes relative to control animals (p < 0.05). LO feeding resulted in greater amounts of n-3 FA isomers in plasma, while higher amounts of stearic acid were detected in SFA fed group 0 and +21 (p < 0.05). The number of ovarian follicles and corpora lutea also were not affected by treatment. Other reproductive variables were not affected by treatment except for the reproductive rate. It seems that LO or SFA feeding of fat-tailed ewes peri-insemination period was not superior to the isocaloric non-additional fat diet provided for the control group during the non-breeding season.

Development of Artificial Insemination Techniques with a Minimum Numbers of Insemination Spermatozoa using Laparoscopy

  • Lee, J. H.;Park, S. J.;I. S. Ryu;G. Y. Chung;Park, S. H.;D. Y. Ji;Kim, C. K.;S. H. Baek
    • Proceedings of the KSAR Conference
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    • 2004.06a
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    • pp.250-250
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    • 2004
  • This study was conducted to investigate the effect of the number of spermatozoa and insemination section(field) of reproductive organs at artificial insemination using laparoscopy(Fiber optic laparoscopic system, Good-Gene Co., Korea) in deer(Elk) and cattle. Twenty six elk does and fifteen cows were inserted CIDR into virginia during 12∼14 days for synchronization of estrus. (omitted)

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Changes of Sex Hormones and Cervical Mucus in Estrus-synchronized Himalayan Tahrs (Hemitragus jemlahicus) in Non-breeding Season

  • Yong, Hwan-Yul;Kim, Myoung-Ho;Ha, Yong-Hee;Kim, Han-Woong;Kim, Mi-Young;Cho, Dong-Gil;Oh, Chang-Sik;Kim, Doo-Hee;Lim, Yang-Mook;Yoo, Mi-Hyun;Bae, Bok-Soo;Kim, Seung-Dong
    • Journal of Embryo Transfer
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    • v.26 no.3
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    • pp.219-222
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    • 2011
  • Eight female Himalayan tahrs (Hemitragus jemlahicus) were estrus-synchronized, and transcervically inseminated with frozen-thawed semen in September, 2009, about 2 to 3 months earlier than their natural breeding season. Intravaginal progesterone-releasing devices were inserted into vaginas of six Himalayan tahrs on September 7, and the other two on September 8 to suppress luteal function of ovaries. The devices had been placed deep inside the vagina prior to withdrawal on September 23. A day before CIDR removal, a combination of PMSG 400 IU and hCG 200 IU was intramuscularly injected. Forty hours later, frozen-thawed semen was transcervically inseminated. Pregnancy diagnosis was performed 39 days later by analyzing progesterone level of serum. Every treatment was done under anesthesia inducted by xylazine injection. In conclusion, vaginal discharge of cervical mucus, hormonal changes induced by implant-typed or muscularly injectable hormones and widening of cervix enough to insert an insemination gun into uterine body were achieved in non-breeding season. Moreover, the first inseminated Himalayan tahr, 36 hours after CIDR removal was assumed to be pregnant but the fetus may have been lost due to the use of anesthetic drug.