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Topic:Embryo

Equine embryo research focuses on the early developmental stages of horses, encompassing the formation, growth, and differentiation of the embryo. This area of study is significant for understanding reproductive biology, improving breeding programs, and advancing assisted reproductive technologies in equines. Key aspects include the processes of fertilization, embryonic development, and implantation. Researchers investigate factors influencing embryonic viability, such as genetic and environmental influences, to enhance reproductive success rates. This page aggregates peer-reviewed research studies and scholarly articles that explore the biological mechanisms, technological advancements, and applied methodologies related to equine embryos.
Ultrastructure of cryopreserved horse embryos.
Journal of reproduction and fertility. Supplement    January 1, 1987   Volume 35 405-417 
Wilson JM, Caceci T, Potter GD, Kraemer DC.Embryos were recovered non-surgically at about Day 6 after ovulation from 15 Quarter horse-type mares and were evaluated for morphological changes which may occur because of exposure to the cryoprotectant and/or cryopreservation. Electron microscopy was used to elucidate the fine structure of intracellular organelles which, if damaged, could cause cellular death. The horse embryo does not totally re-expand in the 10% glycerol freezing medium, nor will it completely re-expand in the isotonic holding medium following glycerol removal whether or not the embryo has been frozen. Embryos in this stu...
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 ...
Deep freezing of horse embryos.
Journal of reproduction and fertility    November 1, 1985   Volume 75, Issue 2 485-490 doi: 10.1530/jrf.0.0750485
Czlonkowska M, Boyle MS, Allen WR.Fourteen horse embryos recovered non-surgically on Days 6-8 after ovulation (Day 0) were cooled slowly to - 35 degrees C (7 embryos) or - 40 degrees C (7 embryos) and stored in liquid nitrogen (- 196 degrees C) for 4-98 days. Surgical transfer of the thawed embryos to unmated recipient mares that had ovulated - 2 to + 1 days with respect to the embryo donors resulted initially in the establishment of 4 conceptuses. However, only one mare maintained her pregnancy to term.
Atrial septal defect of the persistent ostium primum type with hypoplastic right ventricle in a Welsh pony foal.
Canadian journal of comparative medicine : Revue canadienne de medecine comparee    October 1, 1985   Volume 49, Issue 4 429-433 
Physick-Sheard PW, Maxie MG, Palmer NC, Gaul C.Valvular competency of the foramen ovale (patent foramen ovale) is regarded as a common finding in the neonatal foal and usually occurs in isolation. True atrial septal defects appear to be uncommon and are usually associated with other congenital cardiac lesions. The present report describes a case of atrial septal defect type 1 (persistent ostium primum) complicated by hypoplastic right ventricle, and tricuspid dysplasia, in a Welsh Mountain pony foal, and discusses the embryogenesis of the abnormality. A critical review of the literature suggests that atrial septal defects may occur more fr...
[Comparative study of the adhesin from embryonic sera and the sera of adult warm-blooded animals].
Zhurnal obshchei biologii    September 1, 1985   Volume 46, Issue 5 697-703 
Iamskova VP, Reznikova MM.No abstract available
A new procedure for the cryopreservation of equine embryos.
Theriogenology    July 1, 1985   Volume 24, Issue 1 45-58 doi: 10.1016/0093-691x(85)90211-0
Slade NP, Takeda T, Squires EL, Elsden RP, Seidel GE.Early equine blastocysts and blastocysts were collected nonsurgically at six days post-ovulation. Thirty-two embryos were randomly assigned to a 2x2 factorial design. Factors were: 1) 0.5-ml straws or 1-ml glass ampules; and 2) plunging into liquid nitrogen (IN(2)) at -33 C or -38 C. Cryoprotectant, 10% glycerol in PBS plus 5% fetal calf serum (FCS) was added in two steps, 5% then 10%. Embryos were cooled at 4 C/min to -6 C and then seeded, 0.3 C/min to -30 or -35 C and 0.1 C/min to -33 or -38 C. Samples were thawed in 37 C water and glycerol removed in six steps, 10 min per step. Embryo quali...
Embryonic loss in mares: Nature of loss after experimental induction by ovariectomy or prostaglandin F(2alpha).
Theriogenology    July 1, 1985   Volume 24, Issue 1 87-98 doi: 10.1016/0093-691x(85)90214-6
Ginther OJ.Twenty-one pregnant pony mares were assigned to one of the following groups: 1) controls, 2) ovariectomy at Day 12, 3) ovariectomy at Day 12 plus daily progesterone treatment on Days 12 to 40, 4) PGF(2alpha) on Day 12, 5) PGF(2alpha) on Day 21, and 6) PGF(2alpha) on Day 30. Based on daily examinations by ultrasound, the embryonic vesicle was maintained to Day 40 in all control mares and in mares that were ovariectomized on Day 12 and given progesterone. The embryonic vesicle was lost in all mares of the other four groups. Administration of progesterone prevented the embryonic loss associated w...
Embryonic loss in mares: Incidence and ultrasonic morphology.
Theriogenology    July 1, 1985   Volume 24, Issue 1 73-86 doi: 10.1016/0093-691x(85)90213-4
Ginther OJ, Bergfelt DR, Leith GS, Scraba ST.Pregnancy was determined by ultrasound on Days 11, 15, 20, 25, 30, 35, 40, 45, and 50 in 154 ponies and 27 horses. In ponies, the embryonic loss rate for Days 11 to 15 (28 154 , 18.2%) was greater (P<0.01) than for any of the subsequent five-day intervals (0% to 3.3%). There were no losses during Days 11 to 15 in horses (0 27 ), and the difference between ponies and horses was significant. The loss rates for the seven periods encompassing Days 15 to 50 were not significantly different among periods. Pseudopregnancy occurred more frequently (P<0.01) following embryonic loss after Day 20 (...
A direct technique for the preparation of chromosomes from early equine embryos.
Canadian journal of genetics and cytology. Journal canadien de genetique et de cytologie    June 1, 1985   Volume 27, Issue 3 365-369 doi: 10.1139/g85-054
Romagnano A, King WA, Richer CL, Perrone MA.A technique is described for the preparation of banded chromosomes from early equine embryos cultured for less than 10 h in a medium containing bromodeoxyuridine. In addition to standard Giemsa staining and C-banding, chromosomes thus prepared can also be R-banded by either the RBA or the RB-FPG methods. This technique is rapid, repeatable, and limits cell loss, making it ideal for the preparation of early embryos.
Effect of repeated flushing and a prostaglandin analogue on the estrous cycle of pony mares.
Theriogenology    May 1, 1985   Volume 23, Issue 5 761-765 doi: 10.1016/0093-691x(85)90151-7
Brockschmidt LD, Loch WE, Sikes JD.An experiment was conducted to test the effect of repeated transcervical (non-surgical) uterine flushing and a prostaglandin analogue (PG) on the estrous cycle of pony mares. Uteri in group A were trancervically flushed for embryos 7 to 9 days post ovulation. In addition, group B mares were given 5 ml of PG by intramuscular injection on the day of flushing. Group C served as controls and were not flushed or given PG but were allowed to cycle normally. All mares (except controls) were bred A.I. every other day during estrus. There was no effect on embryo recovery rate from repeated flushing or ...
In utero nature versus nurture.
Equine veterinary journal    March 1, 1985   Volume 17, Issue 2 97-98 doi: 10.1111/j.2042-3306.1985.tb02058.x
Woollam DH.No abstract available
Activity of delta(5)3beta-hydroxysteroid dehydrogenase and steroid hormones content in early preimplantation horse embryos.
Folia histochemica et cytobiologica    January 1, 1985   Volume 23, Issue 1-2 81-84 
Paulo E, Tischner M.The activity of delta (5)3 beta-hydroxysteroid dehydrogenase was examined histochemically in 6 to 10 days aged horse blastocysts. A positive reaction was noted in the blastomeres of all embryos incubated in medium with substrate. Measurable amounts of progesterone, androgens and estrogens were found in blastocysts on day 8th. The presence of enzyme and hormones suggests that steroid hormone production takes place in very early preimplantation horse embryos.
Serial investigations of early pregnancy in pony mares using real time ultrasound scanning.
Equine veterinary journal    November 1, 1984   Volume 16, Issue 6 509-514 doi: 10.1111/j.2042-3306.1984.tb02002.x
Allen WE, Goddard PJ.The uteri of 13 pony mares were examined daily by ultrasound during the first two months of gestation. The conceptus was first identified between 12 and 16 days after ovulation and the embryo was seen on the ventral surface of the conceptus after Day 21. The foetal heart could be visualised after Day 22 and spontaneous movement of the foetus occurred after Day 39. No consistent pattern was seen in the development of the foetal membranes, although attachment of the umbilical cord to the allantochorion was always on the dorsal aspect of the conceptus. Daily measurements were made of the diameter...
Characterization of intrauterine mobility of the early equine conceptus.
Theriogenology    October 1, 1984   Volume 22, Issue 4 401-408 doi: 10.1016/0093-691x(84)90460-6
Leith GS, Ginther OJ.Intrauterine mobility patterns of the embryonic vesicle were characterized on Days 9 to 17 after ovulation in pony mares using real-time ultrasonography (n=5 or 7 mares per day). The location of the vesicle was determined by dividing the uterus into right horn, left horn, and body. Each uterine horn was further divided into three approximately equal portions (cranial third, middle third, caudal third), yielding seven segments (body plus three portions of each horn). Location of the vesicle within the uterus was recorded every five minutes for two consecutive hours (25 location determinations p...
Production of monozygotic (identical) horse twins by embryo micromanipulation.
Journal of reproduction and fertility    July 1, 1984   Volume 71, Issue 2 607-613 doi: 10.1530/jrf.0.0710607
Allen WR, Pashen RL.The blastomeres of 192- to 8-cell embryos recovered surgically 1-3 days after ovulation from 23 Pony mares were mechanically separated and inserted, in various combinations, into evacuated pig zonae pellucidae to make 27 'half' and 17 'quarter' micromanipulated embryos. These were embedded in agar and cultured in vivo in the ligated oviducts of ewes for 3.5-5 days to allow development to the late morula/early blastocyst stage. Subsequent surgical or non-surgical transfer of 13 'half' and 17 'quarter' embryos to mares resulted in 10 established pregnancies, including 2 monozygotic pairs. Surgic...
Intrauterine movement of the early conceptus in barren and postpartum mares.
Theriogenology    April 1, 1984   Volume 21, Issue 4 633-644 doi: 10.1016/0093-691x(84)90448-5
Ginther OJ.The equine embryonic vesicle has been shown to be highly mobile prior to day 15, moving from one horn to the other many times per day. In Experiment 1, intrauterine mobility patterns of the vesicle were compared between barren and postpartum mares on days 12, 13, or 14, using an ultrasound instrument. Location of the vesicle (left horn, right horn, body) was determined every five minutes during six two-hour trials in each group. Averaged over all trials, the vesicle moved from one horn to the other 1.1 times per two-hour trial. There were no significant differences between barren and postpartu...
[Antiluteolytic activity of embryos in various animal species].
Bollettino della Societa italiana di biologia sperimentale    November 30, 1983   Volume 59, Issue 11 1755-1761 
Zarrilli A, Lacalandra GM, Minoia P.In mare, sheep and bitch the action of PGF2 alpha have been studied in the early pregnancy. Prostin F2 alpha (Upjohn) and Gabbrostim (Vetem ) are commercial names of PGF2 alpha used at doses which are luteolytic in the non pregnant female. Seric progesterone showed a temporaneous decrease but after four or five days the initial values were restored and none of the experimental females aborted. In the opinion of authors, embryo per se and/or with its adnexa might have interacted blocking the mechanism of luteolysis induced by the administration of PGF2 alpha.
The twinning connection.
Equine veterinary journal    October 1, 1983   Volume 15, Issue 4 293-294 doi: 10.1111/j.2042-3306.1983.tb01799.x
Irvine CH.No abstract available
Mobility of the early equine conceptus.
Theriogenology    April 1, 1983   Volume 19, Issue 4 603-611 doi: 10.1016/0093-691x(83)90180-2
Ginther OJ.Movement of the conceptus within the uterine lumen of barren mares was studied by daily ultrasound examinations on days 11-20 and by rectal palpation on days 15-48 (Experiment 1) and by ultrasound examinations 3 or 4 times per day at 2-4 hour intervals on days 11-16 (Experiment 2). In addition, broodfarm records were analyzed to compare side of ovulation with side of embryo attachment (Experiment 3). The vesicle was found in opposite uterine horns for 43% of the successive, daily, ultrasound examinations on days 11 and 12, 12 and 13, 13 and 14, and 14 and 15; 24% of the successive examinations...
Placentation in the mare.
Journal of reproduction and fertility. Supplement    November 1, 1982   Volume 31 41-55 
Steven DH.No abstract available
Development of horse embryos up to twenty two days after ovulation: observations on fresh specimens.
Journal of anatomy    August 1, 1982   Volume 135, Issue Pt 1 191-209 
Betteridge KJ, Eaglesome MD, Mitchell D, Flood PF, Beriault R.Forty nine embryos, twenty unfertilized eggs and five other fresh eggs of 'doubtful' status have been recovered from 58 pony mares in 122 flushes up to 22 days after ovulation. The fresh egg or embryo recovery rate was 78% with surgical methods (or at slaughter) and 40-60% with non-surgical methods of recovery. The fertilization rate was about 70%. It has been confirmed that horse embryos normally enter the uterus as blastocysts 5-6 days after ovulation. Three features of early embryo morphology have become clearer upon comparison with unfertilized eggs of similar ages; early embryos are often...
[Culture of human chorionic villi].
Revista da Faculdade de Farmacia e Odontologia de Ribeirao Preto    January 1, 1982   Volume 19, Issue 1 43-46 
Sala MA, Benedetti WL, Alvarez H.No abstract available
Experiments in the freezing and storage of equine embryos.
Journal of reproduction and fertility. Supplement    January 1, 1982   Volume 32 399-403 
Yamamoto Y, Oguri N, Tsutsumi Y, Hachinohe Y.No abstract available
Transmission electron microscopy of horse embryos 3-16 days after ovulation.
Journal of reproduction and fertility. Supplement    January 1, 1982   Volume 32 319-327 
Flood PF, Betteridge KJ, Diocee MS.The 23 embryos were obtained by flushing the reproductive tract. Though the general cytology was observed, most attention was given to the formation of the embryonic capsule. It first appeared as a thin uniform layer on the inner surface of the zona pellucida of embryos recovered from the uterus on Day 6. By Day 8 the capsule was about 1 micron thick and the zona pellucida had been shed. In fixed embryos of 11 days and over the capsule was 3 microns thick and had a finely stippled but otherwise homogeneous appearance.
Effect of pregnancy and collection technique on prostaglandin F in the uterine lumen of Pony mares.
Journal of reproduction and fertility. Supplement    January 1, 1982   Volume 32 335-341 
Berglund LA, Sharp DC, Vernon MW, Thatcher WW.Uterine flushings were obtained through the cervix (Method A) and through the wall of the uterus after hysterectomy (Method B) of ovariectomized Pony mares after s.c. injection of oestrogen for 1 week and progesterone for 2 weeks (Exp. 1). Non-pregnant and pregnant mares were flushed by Method A on Day 14 after ovulation and the flushings compared with those of non-pregnant mares injected i.v. with flunixen meglumine, a prostaglandin synthetase inhibitor, shortly before flushing (Exp. 3). Uterine flushings were also collected by Methods A and B from non-pregnant and pregnant Pony mares on Day ...
The embryonic development of the equine heart.
Anatomia, histologia, embryologia    January 1, 1981   Volume 10, Issue 3 193-211 doi: 10.1111/j.1439-0264.1981.tb00518.x
Vitums A.No abstract available
[Embryonic death and twin pregnancy in the horse].
Tierarztliche Praxis    January 1, 1980   Volume 8, Issue 4 489-494 
Merkt H, Klug E.No abstract available
Sequential non-surgical embryo recovery in the equine in a tropical country.
Theriogenology    January 1, 1980   Volume 13, Issue 1 110 doi: 10.1016/0093-691x(80)90040-0
Salazar F, Sanint D, Robledo L, Jaramillo G.No abstract available
Recovery and transfer of equine embryos.
Theriogenology    January 1, 1980   Volume 13, Issue 1 90 doi: 10.1016/0093-691x(80)90020-5
Castleberry RS, Schneider HJ, Griffin JL.No abstract available
The effect of benzo(a)pyrene on fertility, primordial oocyte number, and ovarian response to pregnant mare’s serum gonadotropin.
Pediatric pharmacology (New York, N.Y.)    January 1, 1980   Volume 1, Issue 2 143-151 
Mattison DR, White NB, Nightingale MR.The polycyclic aromatic hydrocarbon (PAH) benzo(a)pyrene (BP) reduced the fertility of DBA/2N mice in a dose-dependent fashion. Control mice produced offspring at a rate of 0.91 pups/mouse per week. Treatment with BP at doses of 10, 100, 200, and 500 mg/kg decreased offspring production rates to 0.61, 0.20, zero and zero pups/mouse per week, respectively. BP also destroyed primordial oocytes in similarly treated mice. Treatment with BP at doses of 10, 50, 100, and 500 mg/kg destroyed 20%, 58%, 88%, and 100%, respectively, of the primordial oocytes in DBA/2N mouse ovaries. Dose-response curves ...