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Topic:Ovulation

Ovulation in horses is a physiological process involving the release of an ovum from the ovary, typically occurring during the mare's estrous cycle. This process is regulated by hormonal changes, primarily involving luteinizing hormone (LH) and follicle-stimulating hormone (FSH). Ovulation is a key component of equine reproduction, influencing breeding management and fertility outcomes. The timing and detection of ovulation are critical for optimizing breeding strategies, often involving techniques such as ultrasound examination and hormone assays. This page compiles peer-reviewed research studies and scholarly articles that investigate the mechanisms, detection methods, and implications of ovulation in equine reproductive health.
Fertilization rates in superovulated and spontaneously ovulating mares.
Theriogenology    January 1, 1994   Volume 41, Issue 7 1411-1423 doi: 10.1016/0093-691x(94)90192-l
Dippert KD, Jasko DJ, Seidel GE, Squires EL.Embryo recovery per ovulation has been shown to be lower in superovulated mares than in untreated controls. The objectives of this study were to 1) determine whether follicles stimulated with superovulatory treatment ovulate or luteinize without ovulation, 2) determine fertilization rates of oocytes in oviducts of superovulated and control mares, and 3) evaluate viability of early stage embryos from superovulated and control mares when cultured in equine oviductal cell-conditioned medium. Cyclic mares were randomly assigned to 1 of 2 groups (n=14 per group) on the day of ovulation (Day 0): Gro...
Corpus luteal function in nonpregnant mares following intrauterine administration of prostaglandin E(2) or estradiol-17beta.
Theriogenology    January 1, 1994   Volume 42, Issue 7 1069-1083 doi: 10.1016/0093-691x(94)90855-9
Vanderwall DK, Woods GL, Weber JA, Lichtenwalner AB.The objective of this study was to test the hypothesis that intrauterine administration of prostaglandin E(2) (PGE(2)) or estradiol-17beta (E-17beta) would prolong CL function in nonpregnant mares. Nonpregnant mares were continuously infused with 240 mug/d of PGE(2), 6 mug/d of E-17beta, or vehicle (sham-treated) on Days 10 to 16 post ovulation (ovulation = Day 0), using osmotic minipumps surgically placed into the uterine lumen on Day 10 (n = 11 per group). Nonpregnant and pregnant mares served as negative and positive controls, respectively (n = 11 per group). Mares were defined as having pr...
[Estrus synchronization and insemination results in Arabian mares in the Eskisehir stud].
DTW. Deutsche tierarztliche Wochenschrift    November 1, 1993   Volume 100, Issue 11 432-434 
Yurdaydin N, Tekin N, Gülyüz F, Aksu A, Klug E.An Arab broodmare herd of 30 mares age ranging from 4 to 12 years was grouped into 3 groups (group A, B, C) with 10 mares each and exposed to three different methods of cycle synchronisation. Group A mares received two PGF2 alpha injections 14 days apart. Group B mares got additionally 2,500 IU of hCG 5 days after second prostaglandin application. Group C consisted of mares which had foaled in a synchrony of one week and got a PGF2 alpha injection 3 weeks after parturition. All the mares responding to synchronisation were inseminated closely to ovulation detected by serial rectal palpations wi...
Effect of constant administration of a gonadotropin-releasing hormone agonist on reproductive activity in mares: preliminary evidence on suppression of ovulation during the breeding season.
American journal of veterinary research    October 1, 1993   Volume 54, Issue 10 1746-1751 
Fitzgerald BP, Peterson KD, Silvia PJ.During the breeding season, the effect of constant administration of an agonist analog of gonadotropin-releasing hormone (GnRH; goserelin acetate) on reproductive activity of mares was determined. Twenty-four mares undergoing estrous cycles were allocated at random to 6 groups (n = 4/group) and, on May 29 (day 0), received no treatment (group 1, controls), 120 micrograms (group 2), 360 micrograms (group 3), 600 micrograms (group 4), or 1,200 micrograms (group 5) of GnRH agonist/d for 28 days via a depot implanted subcutaneously. The final group of mares (group 6) was treated with 120 microgram...
Effect of constant administration of a gonadotropin-releasing hormone agonist on reproductive activity in mares: induction of ovulation during seasonal anestrus.
American journal of veterinary research    October 1, 1993   Volume 54, Issue 10 1735-1745 
Fitzgerald BP, Meyer SL, Affleck KJ, Silvia PJ.The potential of a gonadotropin-releasing hormone (GnRH) agonist (goserelin acetate), delivered constantly for 28 days via a subcutaneous depot, to induce ovulation in seasonally anestrous mares, was investigated. Two experiments were conducted, in which a range of doses (30 to 240 micrograms/mare/d) was examined. Mares were selected on the basis of lack of substantial follicular development (follicle diameter < 20 mm determined ultrasonically) and low serum concentrations of luteinizing hormone (LH) and progesterone. Constant administration of the GnRH agonist-induced ovulation in anestrou...
Characterization of equine oviductal proteins synthesized and released at estrus and at day 4 after ovulation in bred and nonbred mares.
The Journal of experimental zoology    October 1, 1993   Volume 267, Issue 2 217-224 doi: 10.1002/jez.1402670215
McDowell KJ, Adams MH, Williams NM.Proteins synthesized and released in vitro by oviducts collected from horse mares during estrus and at day 4 after ovulation for bred and nonbred mares were examined by two-dimensional sodium dodecyl sulfate polyacrylamide gel electrophoresis (2-D SDS PAGE) and fluorography. Ampullary and isthmic regions both produced a wide array of nondialyzable proteins in culture. Major proteins or groups of proteins identified according to relative molecular weight (kDa) and apparent isoelectric point (pI) were at 100 kDa, pI 8; 100-200 kDa, pI 6; 150 kDa, pI 4.5; 60-100 kDa, pI 4; and an array of polypep...
Growth of small follicles and concentrations of FSH during the equine oestrous cycle.
Journal of reproduction and fertility    September 1, 1993   Volume 99, Issue 1 105-111 doi: 10.1530/jrf.0.0990105
Ginther OJ, Bergfelt DR.The temporal associations between increases in FSH and growth of small follicles (2-20 mm) were studied during one oestrous cycle (ovulation to ovulation) in 15 horse mares. Follicular diameters were obtained ultrasonically. For each day, follicles were combined for both ovaries, grouped from largest to smallest (excluding dominant follicles), and divided into three to five tiers of six follicles for each mare (for example: tier 1, six largest follicles; tier 2, next six largest follicles). A significant increase in mean diameters followed by a significant decrease was used to define a follicu...
Predictable ovulation in mares treated with an implant of the GnRH analogue deslorelin.
Equine veterinary journal    July 1, 1993   Volume 25, Issue 4 321-323 doi: 10.1111/j.2042-3306.1993.tb02972.x
McKinnon AO, Nobelius AM, del Marmol Figueroa ST, Skidmore J, Vasey JR, Trigg TE.No abstract available
Ovarian follicles, ovulations and progesterone concentrations in aged versus young mares.
Theriogenology    July 1, 1993   Volume 40, Issue 1 21-32 doi: 10.1016/0093-691x(93)90338-6
Vanderwall DK, Woods GL, Freeman DA, Weber JA, Rock RW, Tester DF.The objectives of this study were: 1) to document age-related ovulation failure in mares and 2) to contrast the number of ovarian follicles, occurrence of ovulations, and postovulatory concentrations of progesterone in aged versus young mares. In Experiment 1, 4 of 10 aged (25- to 33-years-old) mares were anovulatory between July 1 and September 1, 1989. In Experiment 2, two of 25 aged (20- to 30-years-old) and none of 21 young (3- to 12-years-old) mares were anovulatory between February 1 and June 30, 1990. The average (+/- SEM) day of the first ovulation was later (P<0.05) for aged versus...
Induction of ovulation and superovulation in mares using equine LH and FSH separated by hydrophobic interaction chromatography.
Journal of reproduction and fertility    July 1, 1993   Volume 98, Issue 2 597-602 doi: 10.1530/jrf.0.0980597
Hofferer S, Lecompte F, Magallon T, Palmer E, Combarnous Y.Pharmacological control of reproduction in mares requires the use of equine gonadotrophins to avoid induced immunological resistance. Crude equine gonadotrophins (CEG) have been used but the presence of equine luteinizing hormone (eLH) and follicle-stimulating hormone (eFSH) in CEG has led to disappointing results in superovulation studies. Separation of eLH and eFSH activities from CEG is necessary to overcome this problem. The hydrophobic properties of the two hormones were sufficiently different to permit their separation by hydrophobic interaction chromatography (HIC) on a phenyl Sepharose...
[Follicular growth and dynamics before and during ovulation in the mare: review for the practitioner].
Schweizer Archiv fur Tierheilkunde    January 1, 1993   Volume 135, Issue 5 151-155 
Montavon S.Few scientists predicted the impact that echography would have on the equine breeding industry. The aim of this practical review is to give the practitioner the ability to be familiar with the ovarian echographic exam. He should be able to recognize different stages of estrous cycle in the mare, status of preovulatory follicles and to predict precisely the time of ovulation. Various specific criteria and details regarding the equine echography are studied and illustrated, using the last scientific data published after the Fifth International Symposium on Equine Reproduction in Deauville.
[Ultrasonography in gynecologic diagnosis].
Tierarztliche Praxis. Supplement    January 1, 1993   53-57 
Leidl W.1. At present there is a wide field of applications for ultrasonography in gynaecological examinations. 2. Pregnancy (under clinical conditions) may be diagnosed in mares from day 14, in cows from day 25/26, in small ruminants from day 35, in sows from day 28/30, in bitches from day 25/28 and in queens from day 20/25 on, either by demonstrating the embryonic vesicle or the embryo or fetus. 3. Control of ovulation is gaining importance in the mare, especially in artificial insemination. 4. The diagnosis of pathological processes in the uterus of mares, bitches and queens is improved considerabl...
Advancing the time of ovulation in the mare with a short-term implant releasing the GnRH analogue deslorelin.
Equine veterinary journal    January 1, 1993   Volume 25, Issue 1 65-68 doi: 10.1111/j.2042-3306.1993.tb02904.x
Meinert C, Silva JF, Kroetz I, Klug E, Trigg TE, Hoppen HO, Jöchle W.A small, biocompatible and short-term implant releasing 1.5 mg or 2.25 mg of the GnRH analogue deslorelin was evaluated in 140 Hanoverian (warm blooded) mares during the 1990 breeding season (Study I). Mares in oestrus and with a follicle 40 +/- 2 mm in diameter were assigned alternately to treatment (70) or remained as untreated controls. Implants were administered subcutaneously, and intervals to ovulation determined by rectal examination and ultrasound at 12-h intervals. Since results with both doses of deslorelin were similar, data were pooled. Deslorelin implantation resulted in ovulation...
[Prenatal development of the horse ovary].
Anatomia, histologia, embryologia    December 1, 1992   Volume 21, Issue 4 306-313 doi: 10.1111/j.1439-0264.1992.tb00462.x
Knospe C, Budras KD.To answer the many open questions concerning the development of the horse's ovary, first the prenatal development was investigated. It resulted that follicles derive from the germinal epithelium and its cords, whereas the Leydig cells and the rete blastema originate from the mesonephros. In the second third of pregnancy the Leydig cells undergo an enormous proliferation, in the last third they degenerate. However this degeneration is not connected with the postnatal development of the ovulation groove.
Influence of exogenous progesterone on early embryonic development in the mare.
Theriogenology    December 1, 1992   Volume 38, Issue 6 1055-1063 doi: 10.1016/0093-691x(92)90119-c
Ball BA, Miller PG, Daels PF.The influence of exogenous progesterone on the development of equine oviductal embryos was determined based upon the recovery of Day-7 uterine blastocysts from treated mares (n=13) that were given 450 mg progesterone daily between Days 0 and 6 and from untreated control mares (n=13). Daily administration of 450 mg progesterone in oil significantly (P<0.02) increased serum progesterone concentrations in the treated mares. There was no significant difference in the recovery rate of Day-7 embryos between treated and control mares (8/13 versus 6/13, respectively). Embryonic development, assesse...
Initiation of superovulation in mares 5 or 12 days after ovulation using equine pituitary extract with or without GnRH analogue.
Theriogenology    October 1, 1992   Volume 38, Issue 4 695-710 doi: 10.1016/0093-691x(92)90032-m
Dippert KD, Hofferer S, Palmer E, Jasko DJ, Squires EL.Cyclic mares were assigned to 1 of 3 treatments (n=15 per group): Group 1 received equine pituitary extract (EPE; 25 mg, i.m.) on Day 5 after ovulation; Group 2 received EPE on Day 12 after ovulation; while Group 3 received 3.3 mg of GnRH analogue (buserelin implant) on the day of ovulation and 25 mg, i.m. EPE on Day 12. Mares in each group were given 10 mg PGF2alpha on the first and second day of EPE treatment. The EPE treatment was continued daily until the first spontaneous ovulation, at which time 3,300 IU of human chorionic gonadotropin (hCG) were given to induce further ovulations. Mares...
Plasma concentrations of 13,14-dihydro-15-ketoprostaglandin F2 alpha in mares during uterine involution.
Journal of the American Veterinary Medical Association    August 1, 1992   Volume 201, Issue 3 434-437 
Sertich PL, Watson ED.Twelve mares were allowed to foal naturally, after which they were monitored to study uterine involution. Starting on day 3 after parturition, the internal genital tract was examined per rectum manually and ultrasonographically every other day for changes in uterine characteristics and ovarian activity. By day 5, gravid and nongravid uterine horns were similar in size, and by day 7, uterine fluid was absent. On day 7 after parturition, endometrial biopsy samples were obtained for histologic evaluation, and uterine swab specimens were obtained for microbiologic culture. Uterine swab specimens f...
[Double ovulation in mares. Clinical, hormone analytical and sonographic studies].
Tierarztliche Praxis    August 1, 1992   Volume 20, Issue 4 405-409 
Hohenhaus MU, Bostedt H.108 mares with a total of 135 oestrous cycles were examined. 30% of the mares showed development of double follicles, found by palpation and ultrasonography. Eight cases of double ovulation, four of them synchronous and four asynchronous, were examined closely. These cases of double ovulation showed different growth and different development of the follicular wall. This occurred at the same time in cases of synchronous double ovulation whereas it differed in case of asynchronous double ovulation. The later ovulating follicle was still growing while the first one had already burst. With both fo...
Superovulation of cattle with equine pituitary extract and porcine ESH.
Theriogenology    May 1, 1992   Volume 37, Issue 5 1091-1099 doi: 10.1016/0093-691x(92)90107-3
Staigmiller RB, Bellows RA, Anderson GB, Seidel GE, Foote WD, Menino AR, Wright RW.Superovulation has been practiced in cattle for more than 50 years but the results have been highly variable. Scientists at six locations compared a horse pituitary extract (HAP) with a single batch of porcine FSH (pFSH) to determine the efficacy of these hormones to induce superovulation and to test for variability in the superovulatory response. Acetone-dried equine pituitaries were suspended in 40% ethanol containing 6% ammonium acetate, and the supernatant was mixed with 2.5 volumes of cold ethanol. The resulting precipitate was washed with cold ether and dried. Total doses of 18 mg of HAP...
Effects of gonadotropin-releasing hormone infused in a pulsatile or continuous fashion on serum gonadotropin concentrations and ovulation in the mare.
Journal of animal science    April 1, 1992   Volume 70, Issue 4 1208-1215 doi: 10.2527/1992.7041208x
Becker SE, Johnson AL.Studies were conducted to compare continuous vs pulsatile i.v. infusion of GnRH on serum gonadotropin concentrations and ovulation in seasonally anestrous mares and in cycling mares. Anestrous mares (Exp. 1) received no treatment (control; n = 3), 2, or 20 micrograms of GnRH/h continuous infusion (CI) (n = 4 and n = 6, respectively), or 20 micrograms of GnRH/h pulsatile infusion (PI) (n = 5). After initiation of GnRH infusion, serum LH levels increased earlier, and to a greater extent, in the PI group than in other groups (P less than .05). In contrast, serum FSH concentrations did not differ ...
Control of FSH, follicular development and estrus synchronization in the mare with steroid-free follicular fluid.
Theriogenology    April 1, 1992   Volume 37, Issue 4 817-838 doi: 10.1016/0093-691x(92)90044-r
Plata-Madrid H, Loch WE, Youngquist RS, Thompson DL, Bennett-Wimbush KG, Wilkerson C, Bouchard G, Smith MF, Braun WF, Aveiro JJ.Twenty-two pony mares were used in a project designed to determine the effectiveness of different treatments in controlling FSH, follicular development and synchronization of estrus and ovulation. Mares in Group 1 (n=8) received daily oral altrenogest (0.044 mg/kg); those in Group 2 (n=7) received daily altrenogest (0.044 g/kg) and, during the last 4 days of treatment they received steroid-free follicular fluid, (15 cc) intravenously (I.V.) two times a day; Mares in Group 3 (n=7) received daily intramuscular (I.M.) injections of progesterone (80 mg) and estradiol valerate (7 mg). All treatment...
Hormonal contraception of feral mares with Silastic rods.
Journal of wildlife diseases    April 1, 1992   Volume 28, Issue 2 255-262 doi: 10.7589/0090-3558-28.2.255
Plotka ED, Vevea DN, Eagle TC, Tester JR, Siniff DB.Homogeneous Silastic rods containing ethinylestradiol (EE) (1.5 or 4 g), estradiol-17 beta (E) (4 g) or progesterone (P) (6 g) were implanted into feral mares (Equus caballus) between 4- and 10-yr-old. Six treatment groups (greater than or equal to 10 mares/group) of non-pregnant mares received 36 g P and 12 g E (P+E), 36 g P and 8 g EE (P+HEE), 1.5 g EE (LEE), 3 g EE (MEE, 8 g EE (HEE) or control-implanted mares (CI). CI received implants containing no steroid. Two groups of pregnant mares received P+HEE or HEE. Stallions were placed with the mares 15 to 26 mo after implanting. Blood was coll...
Increased ovulation rates in mares after immunisation against recombinant bovine inhibin alpha-subunit.
Equine veterinary journal    March 1, 1992   Volume 24, Issue 2 144-146 doi: 10.1111/j.2042-3306.1992.tb02800.x
McKinnon AO, Brown RW, Pashen RL, Greenwood PE, Vasey JR.THE name inhibin was first used around 60 years ago for a water-soluble. non-steroidal, gonadal factor that would regulate follicle-stimulating hormone (FSH) secretion through negative feedback McUullagh 1930. Inhihin is now defined as a glycoprotein hormone, consisting of two dissimilar, disulphide-linked, subunits termed at and 13 1 Burger and Igarashi 1988). Effective methods for blocking inhibin production could provide useful means by which FSH secretion, and therefore ovarian function and fertility, could be improved in the female. Increased ovulation rates have been demonstrated in shee...
Granulosa-theca cell tumor associated with an ovulation fossa and normal ovarian stroma in a mare.
Journal of the American Veterinary Medical Association    March 1, 1992   Volume 200, Issue 5 696-698 
Hinrichs K, Cochran SL, Schelling SH, Steckel RR.A granulosa-theca cell tumor was found in an ovary that had an ovulation fossa and normal ovarian tissue. The ovary was removed from a mare with a history of ovarian enlargement and behavioral changes. The affected ovary had a multicystic appearance on ultrasonographic examination performed before surgery, and an ovulation fossa was not palpable on examination per rectum. However, during surgery, the affected ovary was found to be within normal size limits, with an enlargement on 1 pole, and to contain an ovulation fossa. Atrophy of the infundibulum of the affected ovary helped to confirm the ...
Prostaglandin E2-specific binding to the equine oviduct.
Prostaglandins    January 1, 1992   Volume 43, Issue 1 61-65 doi: 10.1016/0090-6980(92)90065-2
Weber JA, Woods GL, Freeman DA, Vanderwall DK.Prostaglandin E2 (PGE2) bound specifically (P less than 0.001) to ampullary and isthmic tissue on Day 2 and Day 5 after ovulation. No significant differences (P greater than 0.8) were detected between Day 2 and Day 5 in the specific binding of ampullary or isthmic tissue. Significantly more (P less than 0.05) PGE2 bound specifically to ampullary versus isthmic tissue on both days. Detection of PGE2-specific binding in the oviductal isthmus on Day 2 and Day 5 indicates that the oviduct is responsive to PGE2 when it is capable of transporting equine embryos.
The effect of an extended artificial photoperiod and gonadotrophin-releasing hormone infusions in inducing fertile oestrus in anoestrous mares.
Australian veterinary journal    December 1, 1991   Volume 68, Issue 12 400-402 doi: 10.1111/j.1751-0813.1991.tb03110.x
Lowis TC, Hyland JH.The occurrence of fertile oestrus early in the breeding season is of paramount importance to the Thoroughbred industry to facilitate early conception. This paper compares 2 techniques for inducing fertile oestrus in anoestrous mares using either an extended photoperiod alone or together with gonadotrophin-releasing hormone (GnRH) infusions. Eleven mares were placed under conditions of 16 h light and 8 h darkness and 5 of these were implanted with osmotic minipumps delivering approximately 100 ng GnRH/kg/h for 28 days (treated mares). The treated mares ovulated 27.7 days earlier than and concei...
Equine oocyte in vitro maturation: influences of sera, time, and hormones.
Molecular reproduction and development    December 1, 1991   Volume 30, Issue 4 360-368 doi: 10.1002/mrd.1080300411
Willis P, Caudle AB, Fayrer-Hosken RA.Objectives of the present research were to determine the influences of types of media, sera, time and hormones on equine oocyte in vitro maturation (IVM). The following types of media and sera were evaluated: Menezo's B2 medium (B2), modified Tissue Culture Medium 199 (TCM), Defined Medium (DM), fetal calf serum (FCS), mare serum collected on the first day of estrus (MS), and mare serum collected on the day of ovulation (MSO). Resultant oocyte maturation was compared with the control: DM with bovine serum albumin (BSA). Effect of culture time (0, 15, and 32 hr) and the following hormones on oo...
Time of embryo transport through the mare oviduct.
Theriogenology    November 1, 1991   Volume 36, Issue 5 823-830 doi: 10.1016/0093-691x(91)90348-h
Freeman DA, Weber JA, Geary RT, Woods GL.The objectives of this study were 1) to determine the time of embryo transport through the mare oviduct, 2) to determine whether equine embryos increase in diameter prior to the time of oviductal transport, and 3) to assess the stage of equine embryonic development at the time of oviductal transport. The time of oviductal transport (interval from ovulation to uterine entry) was estimated by collecting embryos from the mare oviduct or uterus at 2-hour intervals from 120 to 168 h postovulation. The time of oviductal transport was 130 to 142 h, since 9 9 embryos were located in the oviduct from 1...
Effects of carbohydrates on the pharmacokinetics and biological activity of equine chorionic gonadotropin in vivo.
Biology of reproduction    October 1, 1991   Volume 45, Issue 4 598-604 doi: 10.1095/biolreprod45.4.598
Martinuk SD, Manning AW, Black WD, Murphy BD.The sialylation of eCG was examined to determine its influence on the in vivo metabolism and biological activity of the molecule. Sialic acid was decrementally removed from eCG by incubation with agarose-linked neuraminidase for varying time periods. Pharmacokinetic parameters for the disappearance of 4,000 IU (267 micrograms) of three desialylated eCG preparations (20%, 53%, and 80% sialic acid removed) and control eCG were determined in sheep. The clearance rate of eCG increased (p less than 0.05) with each decrement of sialic acid. The removal of 53% sialic acid enhanced the distribution of...
Prostaglandin E2 hastens oviductal transport of equine embryos.
Biology of reproduction    October 1, 1991   Volume 45, Issue 4 544-546 doi: 10.1095/biolreprod45.4.544
Weber JA, Freeman DA, Vanderwall DK, Woods GL.The hypothesis that treatment of pregnant mares with prostaglandin E2 (PGE2) hastens the oviductal transport of equine embryos was tested by treating bred mares with PGE2 on Day 3 after ovulation and subsequently measuring the rate of hastened oviductal transport (estimated by the uterine embryo recovery rate on Day 4 after ovulation). In a preliminary, noncontrolled experiment, oviductal transport was apparently not hastened after intramuscular, intrauterine, or intraperitoneal PGE2 administration to bred mares (0/6, 0/3, and 0/3 mares, respectively). Oviductal transport appeared to be hasten...
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