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1.
Theriogenology ; 76(2): 267-79, 2011 Jul 15.
Article in English | MEDLINE | ID: mdl-21496896

ABSTRACT

Research was conducted to characterize seminal traits and to develop a sperm cryopreservation method using directional freezing (DF) for the killer whale (Orcinus orca). Experiments evaluated effects of: (i) freezing rate (SLOW, MED, FAST) by diluent (BF5F, Biladyl®, EYC) in 0.5 mL straws; and (ii) freezing method (straw or DF) by glycerol (3, 6, or 9% final concentration, v:v) on in vitro sperm quality. Fresh ejaculates (n = 161) were (mean ± SD) 7.8 ± 7.4 mL at 740 × 10(6) sperm/mL with 92.2 ± 6.3% total motility (TM), 85.4 ± 6.9% progressive motility (PM), 89.6 ± 9.0% viability and 89.8 ± 9.2% acrosome integrity. Samples frozen using straws by the MED or SLOW method were improved (P < 0.05) over FAST across all diluents. At 3 h post thaw (PT), TM, PM, Rapid motility (RM), VAP, VCL, ALH and viability for 3% and 6% glycerol were improved (P < 0.05) over 9% glycerol. Directional freezing samples at 0 h and 3 h PT, at all glycerol concentrations, displayed higher (P < 0.001) TM, PM, RM, VAP, VSL, VCL and viability /intact acrosomes (PI/FITC-PNA) than straw. These data provided the first information on ejaculate characteristics and the development of a semen cryopreservation method using DF in the killer whale.


Subject(s)
Cryopreservation/veterinary , Semen Analysis/veterinary , Semen Preservation/veterinary , Whale, Killer , Acrosome/physiology , Animals , Cell Survival , Cryopreservation/instrumentation , Cryopreservation/methods , Male , Semen Analysis/methods , Semen Preservation/methods , Sperm Motility
2.
Theriogenology ; 74(6): 989-1001, 2010 Oct 01.
Article in English | MEDLINE | ID: mdl-20570326

ABSTRACT

Artificial insemination (AI) with liquid-stored spermatozoa and sperm cryopreservation using directional freezing (DF) have been successful in the beluga. This study built on this foundation to develop a deep intra-uterine AI technique with frozen-thawed semen in beluga. Forty-two ejaculates from one male were cryopreserved using DF technology and subsequently used for 10 insemination attempts with seven females. Percentage pre- and post-thaw progressive motility and viability were (mean +/- SD) 73.0 +/- 12.2, 38.4 +/- 8.8, 88.0 +/- 0.1, and 59.3 +/- 15.7%, respectively. A series of GnRH injections (3 x 250 microg, IV, 1.5 to 2 h apart) were used to induce ovulation, once a growing follicle >2.5 cm in diameter was visualized via trans-abdominal ultrasonography. Artificial insemination was performed at 30.1 +/- 3.8 h post-initial GnRH injection with semen deposited in the uterine horn, 92.6 +/- 16.2 cm beyond the genital opening using a flexible endoscope. The external cervical os (cEOS) was located beyond a series of 5 to 10 vaginal rings, 44.8 +/- 9.3 cm from the external genital opening. The internal bifurcation of the uterus was 27 +/- 6.8 cm beyond the cEOS. Ovulation occurred at 8.5 +/- 7.6 h post-AI. Two of 10 inseminations (20%) resulted in pregnancy. The first pregnancy resulted in twins; both calves were born 442 d after AI, with one surviving. The second pregnancy is ongoing. These findings represent the first successful application of AI using frozen-thawed semen in beluga, and are important examples of how assisted reproductive technologies can provide tools for the global management of threatened species.


Subject(s)
Beluga Whale , Cryopreservation , Insemination, Artificial/veterinary , Semen Preservation , Semen/physiology , Animals , Beluga Whale/physiology , Cryopreservation/veterinary , Estrus Synchronization/methods , Female , Insemination, Artificial/methods , Male , Pregnancy , Pregnancy Rate , Semen/cytology , Semen Analysis/veterinary , Semen Preservation/veterinary , Sperm Retrieval/veterinary , Uterus
3.
Reproduction ; 138(2): 391-405, 2009 Aug.
Article in English | MEDLINE | ID: mdl-19494046

ABSTRACT

The reproductive physiology of the Pacific white-sided dolphin, Lagenorhynchus obliquidens, was characterized to facilitate the development of artificial insemination (AI) using cryopreserved spermatozoa. Specific objectives were to: 1) describe reproductive seasonality of the Pacific white sided dolphins; 2) describe urinary LH and ovarian steroid metabolites during the estrous cycle; 3) correlate LH and ovarian steroidal metabolite patterns to ultrasound-monitored follicular growth and ovulation; and 4) assess the efficacy of synchronizing estrus, sperm collection/cryopreservation, and intrauterine insemination. Ovulations (64%, n=37) and conceptions (83%, n=18) occurred from August to October. Peak mean serum testosterone (24 ng/ml), cross-sectional testicular area (41.6 cm(2)), and sperm concentration (144.3 x 10(7) sperm/ml) occurred in July, August, and September respectively. Spermatozoa were only found in ejaculates from July to October. Estrous cycles (n=22) were 31 d long and were comprised of a 10 d follicular and 21 d luteal phase. Ovulation occurred 31.2 h after the onset of the LH surge and 19.3 h after the LH peak. Follicular diameter and circumference within 12 h of ovulation were 1.52 and 4.66 cm respectively. Estrus synchronization attempts with altrenogest resulted in 17 (22%) ovulatory cycles with ovulation occurring 21 d post-altrenogest. Ten AI attempts using cryopreserved semen resulted in five pregnancies (50%). The mean gestation length was 356 days (range 348-367). These data provide new information on the Pacific white-sided dolphin's reproductive physiology and collectively enabled the first application of AI in this species.


Subject(s)
Dolphins/physiology , Estrous Cycle/physiology , Reproduction/physiology , Reproductive Techniques, Assisted/veterinary , Seasons , Animals , Cryopreservation/methods , Cryopreservation/veterinary , Estrus Synchronization/methods , Female , Insemination, Artificial/methods , Insemination, Artificial/veterinary , Luteinizing Hormone/urine , Male , Ovarian Follicle/diagnostic imaging , Ovulation , Pregnancy , Pregnancy Outcome , Progesterone/agonists , Semen Preservation/methods , Semen Preservation/veterinary , Sperm Count/veterinary , Testis/diagnostic imaging , Testosterone/blood , Trenbolone Acetate/analogs & derivatives , Trenbolone Acetate/therapeutic use , Ultrasonography
5.
Reproduction ; 129(5): 659-74, 2005 May.
Article in English | MEDLINE | ID: mdl-15855629

ABSTRACT

The reproductive endocrinology of the bottlenose dolphin, Tursiops truncatus, was characterized to facilitate the development of artificial insemination using cryopreserved spermatozoa. Specific objectives were: (i) to determine the excretory dynamics of urinary luteinizing hormone (LH) and ovarian steroid metabolites during the estrous cycle; (ii) to evaluate the effect of an exogenously administered synthetic progesterone analog (altrenogest) on reproductive hormone excretion; (iii) to correlate follicular growth and ovulation (as determined by transabdominal ultrasound) to urinary LH and ovarian steroid metabolites; (iv) examine the in vivo fertilisation capacity of cryopreserved semen, and (v) to develop an intrauterine insemination technique. Based on urinary endocrine monitoring of natural estrous cycles (2 consecutive cycles) and nine post altrenogest cycles in ten females, estrous cycles were found to be 36 days long and comprised of an 8 day and 19 day follicular and luteal phase, respectively. Peak estrogen conjugates (EC; 5.4+/-3.8 ng/mg creatinine (Cr)) occurred 8 h prior to the LH surge (70.9+/-115.7 ng/mg Cr). The time of ovulation, as determined by ultrasonography, occurred 32.1+/-8.9 h and 24.3+/-7.0 h after the onset of the LH surge and LH peak, respectively. Mean preovulatory follicular diameter and circumference were 2.1+/-0.5 cm and 6.5+/-1.5 cm, respectively. Of the 27 estrous synchronisation attempts, 13 resulted in an ovulatory cycle, with ovulation occurring 21 days post-altrenogest treatment. Intrauterine (4 of 5) and intracornual (1 of 3) inseminations conducted across eight estrous cycles resulted in five pregnancies (63%), one pregnancy resulted from the use of liquid stored semen, whereas four were achieved using cryopreserved semen. These data provide new information on female bottlenose dolphin reproductive physiology, and demonstrate that the combination of endocrine monitoring and serial ultrasonography contributed to successful AI using liquid-stored and cryopreserved semen.


Subject(s)
Dolphins/physiology , Estrous Cycle/physiology , Insemination, Artificial/veterinary , Trenbolone Acetate/analogs & derivatives , Animals , Cryopreservation , Estrogens/urine , Estrus Detection/methods , Estrus Synchronization/methods , Female , Insemination, Artificial/methods , Luteinizing Hormone/urine , Male , Ovary/diagnostic imaging , Pregnancy , Progesterone/urine , Progesterone Congeners/pharmacology , Semen Preservation/methods , Semen Preservation/veterinary , Trenbolone Acetate/pharmacology , Ultrasonography
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