Analyze Diet

Topic:Reproductive Technology

Reproductive technology in horses encompasses a range of scientific techniques and procedures aimed at assisting and enhancing equine reproduction. These technologies include artificial insemination, embryo transfer, and cryopreservation of gametes and embryos. They are employed to improve breeding efficiency, manage genetic diversity, and preserve valuable genetic material. Artificial insemination involves the collection and introduction of semen into the mare's reproductive tract, while embryo transfer allows for the harvesting and implantation of embryos from donor to recipient mares. Cryopreservation involves freezing and storing sperm, oocytes, or embryos for future use. This page compiles peer-reviewed research studies and scholarly articles that investigate the methodologies, applications, and outcomes of reproductive technologies in equine breeding and management.
Surgery for abnormal vulvar and perineal conformation in the mare.
The Veterinary clinics of North America. Equine practice    December 1, 1988   Volume 4, Issue 3 389-405 doi: 10.1016/s0749-0739(17)30618-1
Trotter GW, McKinnon AO.Reproductive failure in mares can present a challenge to the attending veterinarian. Although many causes of failure to conceive or to carry to term may be easy to diagnose and treat effectively, others may be difficult. In some cases, more than one problem will be present, and both medical therapy and surgical intervention will be required to achieve a successful outcome. Pneumovagina and its sequelae remain a common cause of reproductive failure in mares. Depending on the case involved, different surgical techniques may be required to correct the problem.
[Successful embryo transfer in the horse].
DTW. Deutsche tierarztliche Wochenschrift    October 1, 1988   Volume 95, Issue 9 401-402 
Bader H, Thier NS, Bürkle K.No abstract available
Evaluation of the expression of a male-specific antigen on cells of equine blastocysts.
Journal of reproductive immunology    October 1, 1988   Volume 14, Issue 1 1-8 doi: 10.1016/0165-0378(88)90031-9
Wood TC, White KL, Thompson DL, Garza F.This experiment was designed (1) to determine if H-Y antigen is expressed on the cell surface of pre-implantation equine blastocyst stage embryos, (2) if so, to identify differences in expression on inner cell mass (ICM) verses trophectoderm cells and (3) to evaluate whether the detection of this glycoprotein would aid in the identification of equine embryonic sex. A total of 33 blastocyst stage horse embryos were collected 6-7 days post-ovulation by trans-cervical flush and were immediately evaluated for the presence of H-Y antigen. Additionally, 17 embryos, collected at similar stages and cu...
Restricted conceptus mobility results in failure of pregnancy maintenance in mares.
Biology of reproduction    September 1, 1988   Volume 39, Issue 2 340-348 doi: 10.1095/biolreprod39.2.340
McDowell KJ, Sharp DC, Grubaugh W, Thatcher WW, Wilcox CJ.Cycling pony mares were bred and used to test the effect of restricted conceptus mobility on luteal maintenance (i.e. maternal recognition of pregnancy). In Experiment 1, uterine horns were ligated to restrict conceptus mobility to one uterine horn, Group 1; one horn plus the uterine body, Group 2; or one horn, the body and approximately 80% of the second horn, Group 3. Pregnancies were monitored with real-time ultrasonography. Four of five mares in Group 1 and two of four mares in Group 2 returned to estrus (Day 16.0 +/- 1.9 and 14.5 +/- 0.7, respectively) and subsequently lost the embryonic ...
Reproduction.
The Veterinary clinics of North America. Equine practice    August 1, 1988   Volume 4, Issue 2 161-336 
No abstract available
Reproductive physiology of the nonpregnant mare. An overview and update.
The Veterinary clinics of North America. Equine practice    August 1, 1988   Volume 4, Issue 2 161-176 doi: 10.1016/s0749-0739(17)30634-x
Adams GP, Bosu WT.This article reviews the reproductive events in the nonpregnant mare with emphasis on recent advances. The discussion is restricted to the salient features of puberty (prenatal and prepubertal events), seasonality (gonadotropins, photoperiod, and other modifying factors), and the estrous cycle (hormones, estrus, diestrus, and the control of cyclicity) in the nonpregnant mare.
Control of the estrous cycle in the mare.
The Veterinary clinics of North America. Equine practice    August 1, 1988   Volume 4, Issue 2 177-196 doi: 10.1016/s0749-0739(17)30635-1
Lofstedt RM.All current approaches to manipulating the reproductive biology of the nonpregnant mare are discussed.
Diagnosis and correction of twin pregnancy in the mare.
The Veterinary clinics of North America. Equine practice    August 1, 1988   Volume 4, Issue 2 215-220 doi: 10.1016/s0749-0739(17)30637-5
Miller A, Woods GL.Reproductive Physiology 1. Twin pregnancies result in high rates of abortion, stillbirth, and neonatal mortality. 2. Twins develop subsequent to multiple ovulations. Multiple ovulations are related to breed, parity, and mare history. Multiple ovulations are most frequently seen in Thoroughbred and Draft mares. Multiple ovulations are more common in barren and perhaps maiden mares than in lactating mares, and they are more common in certain individual mares. 3. Equine embryos are motile in the uterus from the time of first detection (Days 9 to 10) until fixation (Day 16). They are frequently lo...
Transition into the breeding season: clues to the mechanisms of seasonality.
Equine veterinary journal    May 1, 1988   Volume 20, Issue 3 159-161 doi: 10.1111/j.2042-3306.1988.tb01488.x
Sharp DC.No abstract available
Effect of insemination timing on the fertilizing capacity of frozen/thawed equine spermatozoa.
Theriogenology    February 1, 1988   Volume 29, Issue 2 429-439 doi: 10.1016/0093-691x(88)90245-2
Kloppe LH, Varner DD, Elmore RG, Bretzlaff KN, Shull JW.A breeding trial was conducted to evaluate the effect of insemination timing on the fertility of mares bred with frozen/thawed equine semen. One stallion and 60 reproductively sound, estrous-synchronized mares were included in the study. Mares were assigned to one of three groups (n = 20): 1) insemination with fresh semen every other day during estrus from detection of a 35-mm follicle until ovulation, 2) insemination with frozen/thawed semen every day during estrus from detection of a 35-mm follicle until ovulation or 3) insemination with frozen/thawed semen once, within 6 h after ovulation. ...
24-Hour cooled storage of equine embryos.
Theriogenology    January 1, 1988   Volume 30, Issue 5 947-952 doi: 10.1016/s0093-691x(88)80057-8
Sertich PL, Love LB, Hodgson MR, Kenney RM.Equine embryos were collected by transcervical uterine flush 7 d after ovulation. The flush solution was Dulbecco's phosphate buffered saline (PBS) with 1% newborn calf serum and penicillin-streptomycin. Each embryo was washed in modified Dulbecco's PBS with 1% newborn calf serum and 0.4% bovine serum albumin, and placed in 4-ml polystyrene test tube containing this same medium. Embryos were packaged in a commercial semen transport container which cooled (-0.3 degrees C/min) and maintained the embryo at 4 to 6 degrees C. After 24 h, 16 embryos were transcervically transferred into recipient ma...
Reproductive efficiency in domestic animals.
Annals of the New York Academy of Sciences    January 1, 1988   Volume 541 697-705 doi: 10.1111/j.1749-6632.1988.tb22307.x
First NL, Eyestone WH.No abstract available
[Sperm received in shipment versus fresh sperm in relation to fertilization results].
Tijdschrift voor diergeneeskunde    December 15, 1987   Volume 112, Issue 24 1410-1412 
Berghuis GA.The conception rates of semen intended for shipment and those of recently obtained semen are compared in the present paper. Conception rates using recently obtained semen were significantly superior to those obtained with semen intended for shipment. A number of factors to which this difference could be due are briefly discussed.
Transcervical embryo transfer in horses: an application in an equestrian teaching center.
The Canadian veterinary journal = La revue veterinaire canadienne    December 1, 1987   Volume 28, Issue 12 750-753 
Sirois J, Betteridge KJ, Brault A.Embryo transfer was used in an equestrian teaching center in order to produce as many foals as possible from their preferred mares during a single breeding season. Embryo collection by uterine lavage was attempted in five donor mares on 25 occasions 6.5 days after ovulation. Sixteen of the collection attempts (64%) yielded a total of 17 blastocysts. Of these 17 embryos, 13 were immediately transferred transcervically into recipient mares that had ovulated within two days of the time of ovulation in the donors, three were frozen for later transfer, and one was lost. Eight of the freshly transfe...
[Biopsy of the uterine mucosa in mares for the assessment of fitness for breeding].
Schweizer Archiv fur Tierheilkunde    August 1, 1987   Volume 129, Issue 8 399-415 
Waelchi RO, Winder NC.No abstract available
The meiotic stage of preovulatory oocytes in mares.
Genome    August 1, 1987   Volume 29, Issue 4 679-682 doi: 10.1139/g87-114
King WA, Bezard J, Bousquet D, Palmer E, Betteridge KJ.Confusion exists as to whether the oocytes of the domestic horse are ovulated at the first meiotic metaphase (MI) or the second (MII). In this study eight oocytes were collected from the preovulatory follicles of 16 mares 36 h after human chorionic gonadotropin CG treatment. Six of the eight oocytes were judged to be at MII by the presence of the first polar body and this judgement was confirmed by semithin sectioning in one. Of the two that had no polar body, one was found to be at MII after fixation for chromosomal analysis and the meiotic stage of the other remained undetermined. Since all ...
Ovarian disorders in domestic animals.
Environmental health perspectives    August 1, 1987   Volume 73 27-33 doi: 10.1289/ehp.877327
MacLachlan NJ.The histologic appearance of the ovaries and persistence of corpora lutea vary considerably among domestic animals, particularly between spontaneous and induced ovulators. The seasonally polyestrous mare has a variety of unique characteristics in ovarian structure and general reproductive function. Among the anomalies of ovarian development is the bovine freemartin with gonads containing a mixture of male and female elements. A variety of ovarian cysts occur in domestic animals, and persistent corpora lutea with associated reproductive perturbations occur in several species. Ovarian tumors are...
Establishment and maintenance of pregnancy after embryo transfer in ovariectomized mares treated with progesterone.
Journal of reproduction and fertility    July 1, 1987   Volume 80, Issue 2 395-401 doi: 10.1530/jrf.0.0800395
Hinrichs K, Sertich PL, Palmer E, Kenney RM.Pregnancy was established and maintained after embryo transfer in 3 ovariectomized mares treated with progesterone only. Four ovariectomized mares were used as recipients, and 7 transfers were performed. Progesterone in oil, 300 mg i.m. daily, was given starting 5 days before transfer of a 7-day embryo. If the mare was pregnant at 20 days, progesterone treatment was continued to 100 days of gestation. The 3 pregnant mares carried to term and delivered live foals with normal parturition, lactation and maternal behaviour. No differences were seen between pregnant and non-pregnant ovariectomized ...
Gonadotropin-releasing hormone treatment induces follicular growth and ovulation in seasonally anestrous mares.
Biology of reproduction    June 1, 1987   Volume 36, Issue 5 1199-1206 doi: 10.1095/biolreprod36.5.1199
Johnson AL.A study was conducted to evaluate the effectiveness of gonadotropin-releasing hormone (GnRH) pulse infusion to stimulate follicular development and induce ovulation in seasonally anestrous standardbred mares. Seventeen mares were selected for use in this experiment, on the basis of a previous normal reproductive history, and were housed under a photoperiod of 8L:16D beginning one week prior to the start of the experiment (second week in January). Mares were infused with 20 micrograms (n = 7) or 2 micrograms (n = 6) GnRH/h, or were subjected to photoperiod treatment only (controls, n = 4). Seru...
Successful transfer of the embryos of Przewalski’s horses (Equus przewalskii) and Grant’s zebra (E. burchelli) to domestic mares (E. caballus).
Journal of reproduction and fertility    May 1, 1987   Volume 80, Issue 1 13-20 doi: 10.1530/jrf.0.0800013
Summers PM, Shephard AM, Hodges JK, Kydd J, Boyle MS, Allen WR.Blastocysts were collected non-surgically from 2 Przewalski's horse and 2 Grant's zebra mares and transferred extra-specifically to domestic horse and donkey recipients. Nine Przewalski's horse embryos were transferred surgically, and 2 non-surgically, to domestic Welsh-type pony mares. After surgical transfer, 7 (77.8%) pregnancies were established and 4 foals were born. Twelve Grant's zebra embryos were transferred surgically to 5 pony and 7 domestic donkey recipients respectively and 1 non-surgically to a donkey; 3 (60%) zebra-in-horse pregnancies were established and 2 went to term. Only 2...
Hormone therapy for control of reproduction in mares and stallions.
The Veterinary clinics of North America. Equine practice    April 1, 1987   Volume 3, Issue 1 81-99 doi: 10.1016/s0749-0739(17)30692-2
Squires EL, McKinnon AO.Because the reproductive performance of mares is lower than that of any other domesticated species, hormone therapy is important in ensuring fertility and proper management of pregnancy. Current techniques of hormone therapy are discussed.
Changes in LH pulse frequency and amplitude in intact mares during the transition into the breeding season.
Journal of reproduction and fertility    March 1, 1987   Volume 79, Issue 2 485-493 doi: 10.1530/jrf.0.0790485
Fitzgerald BP, Affleck KJ, Barrows SP, Murdoch WL, Barker KB, Loy RG.Two groups of mares were exposed to an abrupt, artificial increase or a natural increase in daylength. In both groups, mean LH pulse frequency increased with time of year and was accompanied by a reciprocal decrease in LH pulse amplitude. A non-pulsatile pattern of LH secretion was observed in some mares sampled close to the day of ovulation. Maximum mean LH pulse frequency and the onset of the breeding season occurred earlier in those mares exposed to an abrupt artificial increase in daylength. In blood samples collected frequently, mean serum LH concentrations increased in relation to time o...
Reproductive wastage in the mare and its relationship to progesterone in early pregnancy.
Journal of reproduction and fertility. Supplement    January 1, 1987   Volume 35 493-495 
Forde D, Keenan L, Wade J, O'Connor M, Roche JF.No abstract available
Exogenous hormone regimens to utilize successfully mares in dioestrus (days 2-14 after ovulation) as embryo transfer recipients.
Journal of reproduction and fertility. Supplement    January 1, 1987   Volume 35 429-432 
Pool KF, Wilson JM, Webb GW, Kraemer DC, Potter GD, Evans JW.Two hormone regimens were utilized for recipient mares which were 2-14 days after ovulation at the time of non-surgical embryo transfer. In Exp. I, 20 embryos were transferred non-surgically into recipient mares which had been given 22 mg altrenogest daily starting the day of recipient ovulation. Higher (P less than 0.05) pregnancy rates (50% vs 0%) were obtained in mares which were 2-6 days after ovulation at the time of transfer compared with mares which were 7-12 days after ovulation. In Exp. II, on the day the donor mare ovulated (Day 0), 10 mg PGF-2 alpha were given to the recipient mare ...
PGF-2 alpha release, progesterone secretion and conceptus growth associated with successful and unsuccessful transcervical embryo transfer and reinsertion in the mare.
Journal of reproduction and fertility. Supplement    January 1, 1987   Volume 35 419-427 
Sirois J, Betteridge KJ, Goff AK.The outcome of 23 collections and reinsertions of conceptuses on Days 10.5-13.5, 4 transfers of Day-10.5, and 13 transfers of Day-6.5 embryos (ovulation = Day 0) was monitored in 30 mares. Blood samples were taken before and after each procedure to measure plasma 15-keto-13,14-dihydroprostaglandin F-2 alpha (PGFM), and then daily for progesterone determinations. Mares were also subjected to daily teasing for detection of oestrus, and to uterine ultrasonography for tracing the development of the conceptus. After the reinsertions, 12/23 conceptuses were detectable immediately after the procedure...
Effect of altrenogest on pregnancy maintenance in unsynchronized equine embryo recipients.
Journal of reproduction and fertility. Supplement    January 1, 1987   Volume 35 433-438 
Parry-Weeks LC, Holtan DW.Non-surgical embryo recovery attempts were done on Day 7 after ovulation. Embryo recovery rate from mares of varied reproductive histories was 57% (38/67). Non-surgical transfer of these embryos into altrenogest-treated recipient mares that ovulated between 3 days before and 3 days after the donor resulted in a 30-day pregnancy rate of 77% (10/13). Transfer of embryos into altrenogest-treated recipients that ovulated between 4 days before and 6 days after the donor resulted in an overall pregnancy rate of 64% (16/25) at Day 30 of gestation. No recipients that were in oestrus at the start of tr...
Fertility of stallion semen frozen in 0.5-ml straws.
Journal of reproduction and fertility. Supplement    January 1, 1987   Volume 35 143-148 
Volkmann DH, van Zyl D.Semen of 2 pony stallions was frozen by 2 methods in 0.5 ml PVC straws. The fertility of the frozen-thawed semen was evaluated by inseminating 60 mares during 69 oestrous cycles. An overall single cycle pregnancy rate of 55% was achieved. Freezing method, stallion, insemination during steroid-synchronized oestrus or insemination only every 2nd day during oestrus did not significantly influence pregnancy rates. Pregnancy rates were significantly improved from a mean 44% to a mean 73% when the mean number of progressively motile spermatozoa per insemination was increased from 175 x 10(6) to 249 ...
Reproductive characteristics of spontaneous single and double ovulating mares and superovulated mares.
Journal of reproduction and fertility. Supplement    January 1, 1987   Volume 35 399-403 
Squires EL, McKinnon AO, Carnevale EM, Morris R, Nett TM.For embryos collected from mares 7 days after ovulation, embryo recovery for single-ovulating mares was 53% compared to 106% for double-ovulating mares. Pregnancy rates 50 days after surgical transfer were 68 and 129%, respectively. Concentrations of LH were similar during the periovulatory period for cycles which included single or double ovulations. Horse pituitary extract given for 5.5 days resulted in greater than or equal to 2 ovulations (mean 3.8) in 26 of 28 mares and 2.0 embryos were recovered per donor compared to 0.65 for controls. Non-surgical pregnancy rates for embryos collected f...
Progesterone therapy in mares with abnormal oestrous cycles.
The Veterinary record    December 6, 1986   Volume 119, Issue 23 569-571 
Rutten DR, Chaffaux S, Valon M, Deletang F, De Haas V.In two studies in Holland and France a total of 41 mares found either to be in anoestrus or showing continuous oestrous behaviour during the early part of the covering season were treated with a progesterone releasing intravaginal device. Of the 32 mares in the first study, 24 ovulated after treatment and 11 became pregnant to a covering at the induced oestrus. In the second study all but one of the nine mares showed oestrus, seven ovulated and six became pregnant at the post treatment oestrus. By the end of the covering season 15 of the 21 mares treated for anoestrus and seven of the 11 mares...
Recovery and evaluation of embryos from normal and infertile mares.
The Cornell veterinarian    October 1, 1986   Volume 76, Issue 4 386-394 
Woods GL, Hillman RB, Schlafer DH.To evaluate embryo transfer as a possible method to circumvent infertility in mares, embryos from 14 normal and 14 infertile mares were collected three times and examined. Fewer flushes (p less than 0.05) from normal than infertile mares (1/42 vs 9/42) contained only abnormal embryos whereas more flushes (p less than 0.05) from normal than infertile mares contained one or more normal embryos (28/42 vs 8/42). More flushes (p less than 0.05) from normal than infertile mares contained embryos (29/42 vs 17/42). The embryo diameters (mm) at either day-7 or day-8 post ovulation were greater (p less ...