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Topic:Insemination

Insemination in horses refers to the process of introducing sperm into the reproductive tract of a mare to achieve pregnancy. This can be accomplished through natural breeding or artificial insemination (AI). Artificial insemination involves collecting semen from a stallion and manually depositing it into the mare's uterus. This technique allows for greater control over breeding, including the selection of genetic traits and the management of breeding schedules. Various methods of artificial insemination exist, such as fresh, chilled, or frozen semen insemination, each with specific protocols and considerations. This page compiles peer-reviewed research studies and scholarly articles that explore the techniques, outcomes, and advancements in insemination practices in equine reproduction.
In-vivo myometrial electrical activity in the cyclic mare.
Journal of reproduction and fertility    July 1, 1979   Volume 56, Issue 2 521-532 doi: 10.1530/jrf.0.0560521
Taverne MA, van der Weyden GC, Fontijne P, Dieleman SJ, Pashen RL, Allen WR.Uterine electromyography was performed by means of chronically implanted surface electrodes in 3 Pony mares during spontaneous oestrous cycles and following luteolysis induced by a prostaglandin analogue (fluprostenol). Three distinct patterns were recognized during the oestrous cycle. (1) During oestrus well defined phases of activity with closely grouped high-amplitude spikes were separated by long periods (10-45 min) of complete inactivity. (2) During dioestrus more diffuse phases of activity with low-amplitude spikes were separated by variable periods of relative inactivity. (3) During lut...
Disappearance of spermatozoa from the ejaculates of geldings.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 25-29 
Shideler RK, Squires EL, Pickett BW, Anderson EW.Twenty-three geldings were used to determine changes in seminal characteristics following castration and the effect of frequency of ejaculation on these seminal characteristics. In Exp. 1, semen was collected from 8 geldings every other day after castration until the number of spermatozoa per ejaculate was below 1% of the precastration value. An average of 3 ejaculates was required to reduce the number of spermatozoa below this level. In Exp. 2, 15 stallions were castrated and each stallion was assigned to 1 of 3 groups for seminal collection at 7, 14 or 21 days post-castration. The ejaculates...
Synchronization of oestus and timed insemination of mares.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 251-255 
Hyland JH, Bristol F.Oestrus was synchronized in 116 mares by means of an i.m. injection of prostaglandin F-2 alpha (Day 0) and of fluprostenol (a PG analogue) on Day 16. Mares were then randomly divided into three groups. Group A mares (N = 30) were given 2500 i.u. hCG I.M. ON Day 20 and artificially inseminated on Day 21 without detection of oestrus. Group B mares (N = 32) were given 2500 i.u. hCG i.m. on Day 20 and inseminated on Days 21 and 23, also without oestrus detection. Group C mares (N = 54) were teased on Days 18, 19, 21, 23 and 25 and inseminated on Days 19, 21, 23 and 25 while they were in oestrus. S...
Embryo transport through the mare’s oviduct depends upon cleavage and is independent of the ipsilateral corpus luteum.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 387-394 
Betteridge KJ, Eaglesome MD, Flood PF.Two experiments were conducted using 14 mares. In Exp. 1, mares were inseminated with semen treated with TEPA, which, in other species, has been shown to lead to an arrest in ovum cleavage at 2--4 cells. The oviducts and/or uterus were then flushed 7--10 days after ovulation in 6 mares (Group A) or 2--6 days after ovulation in 5 mares (Group B). Fresh eggs were found in the oviduct flushes of 5 Group A and 5 Group B mares: 9 of the 10 eggs appeared to have cleaved, but none had developed beyond 16-cells. Seven eggs contained spermatozoa and 3 of 4 eggs from each group showed evidence of fertil...
Effects of synchronization and frequency in insemination on fertility.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 257-261 
Voss JL, Wallace RA, Squires EL, Pickett BW, Shideler RK.Fifty-four normally cycling, non-lactating mares were given 2 injections (i.m.) of PGF-2 alpha (10 mg) 14 days apart without regard to stage of the oestrous cycle. At 19 days after the first PGF-2 alpha treatment, a single i.m. injection of either hCG (3300 i.u.) or a GnRH-analogue (500 micrograms) was administered. Each mare was inseminated with 100 X 10(6) motile spermatozoa at one of the following frequencies: once only on Day 20; every other day during oestrus or at least on Days 19 and 21; or daily during oestrus or at least on Days 19, 20, 21 and 22. Eighteen control mares received salin...
Contagious equine metritis and AI.
The Veterinary record    December 2, 1978   Volume 103, Issue 23 519 doi: 10.1136/vr.103.23.519
Timoney PJ, O'Reilly PJ, Harrington AM, McCormack R, McArdle JF.No abstract available
Fertilization in the pig and horse.
Journal of reproduction and fertility    November 1, 1978   Volume 54, Issue 2 461-470 doi: 10.1530/jrf.0.0540461
Polge C.No abstract available
Artificial insemination to help control CEM.
The Veterinary record    April 1, 1978   Volume 102, Issue 13 291 doi: 10.1136/vr.102.13.291-a
Rossdale PD.No abstract available
Current status of semen preservation in the ram, boar and stallion.
Journal of animal science    January 1, 1978   Volume 47 Suppl 2 80-119 
Graham EF, Crabo BG, Pace MM.From the studies cited it was concluded that short and long term preservation of stallion semen has encountered major obstacles. Fertilizing capacity of extended or extended and cooled spermatozoa has been impaired. With the hydrogen ion extenders, the fertility was depressed either with or without glycerol when the semen was inseminated immediately after extension. With the cream-gel extender, fertility was not impaired when inseminated immediately after extension, but was impaired after storage at 5 C for 24 hr or in the presence of glycerol. The fertilizing capacity of extended frozen sperm...
[Use of spermosan-3 before the insemination of mares].
Veterinariia    October 1, 1976   Issue 10 64-65 
Kuklin AD, Rodina VN.No abstract available
Equine artificial insemination.
The Veterinary record    July 24, 1976   Volume 99, Issue 4 69-71 doi: 10.1136/vr.99.4.69
Merkt H.The use and techniques of artificial insemination for horses in Germany over the last 30 years is described. Artificial insemination appears to produce pregnancy percentages equal to those from normal breeding methods and its continued availability under veterinary supervision is recommended in conditions where disease, disability or distance debar normal service.
[Deep-frozen sperm insemination in the horse: a study under practice stud conditions].
Berliner und Munchener tierarztliche Wochenschrift    December 15, 1975   Volume 88, Issue 24 465-468 
Blobel K, Klug E.No abstract available
Influence of ejaculation frequency of stallions on characteristics of semen and output of spermatozoa.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 29-34 
Sullivan JJ, Pickett BW.Approximately 1 week was required to stabilize the extragonadal sperm reserves in stallions ejaculated daily for 10 weeks. The true daily sperm output of a stallion was equal to the mean daily sperm output of seven ejaculates +/- 1-35 X 10(9) spermatozoa. Mean concentrations of spermatozoa/ml and number of spermatozoa/ejaculate were higher (P less than 0-01) for X1 and X3/week ejaculation frequencies than for a X6/week frequency. Sperm output/week was nearly identical for a X6/week frequency. Sperm output/week was nearly identical for the X3 and X6 frequencies and higher (P less than 0-01) tha...
The effect of semen extenders and sperm number on mare fertility.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 95-98 
Pickett BW, Voss JL.No abstract available
The occurrence of early embryonic death in the mare in relation to natural service and artificial insemination with fresh or deep-frozen semen.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 537-539 
Moberg R.No abstract available
Results of long-term storage of stallion semen frozen by the pellet method.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 105-106 
Merkt H, Klug E, Krause D, Bader H.Stallion semen frozen by the pellet method showed no significant loss of sperm motility and fertility over long periods of storage in liquid nitrogen. Eighteen of thirty mares conceived after insemination with semen recovered in nine ejaculates from seven stallions and stored for 18 months to 7 years.
Results of insemination of mares with fresh and frozen stallion semen.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 107-110 
Klug E, Treu H, Hillmann H, Heinze H.Artificial insemination using deep-frozen semen was performed on 116 mares in 1973 using twelve ejaculates from eight stallions of the Hanoverian breed. Despite the fact that the quality of the semen used was poor, the majority of the mares inseminated were subfertile and some mares were inseminated during one oestrus only, 44% nevertheless conceived and gave birth to live foals. Of a small group of ten mares inseminated in the same year with fresh semen, seven conceived.
Comparison of the methods of rectal palpation and haemagglutination-inhibition assay for diagnosis of pregnancy in mares.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 489-493 
Parker WG, Sullivan JJ, Larson LL.The diagnostic value of rectal palpation and immunological assay of PMSG was tested at different stages of pregnancy in mares inseminated with frozen semen in three separate studies. The results were based on foaling success and particular attention was paid to the numbers of inconsistent results obtained by the two tests. Generally, the number of false positive diagnoses was lower for the immunological assay than for palpation in early pregnancy (Days 40 to 60) and the relationship became reversed later in gestation.
Studies on the preservation of raw and frozen horse semen.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 99-104 
Nishikawa Y.Retention of high motility of horse spermatozoa preserved at 4 degrees C was improved by a semen extender. Raw semen preserved for 2 to 8 hr at 4 degrees C gave an average conception rate of 67-3% but preservation for 1 to 2 days gave an extremely low conception rate. The conception rate from deep-frozen semen during 8 years was 56-3%.
Sperm transport and distribution in the mare.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 63-66 
Parker WG, Sullivan JJ, First NL.Fifty mares were inseminated on Days 2, 4, 7, 11 or 17 of the oestrous cycle with spermatozoa from one of three stallions to observe the distribution of the spermatozoa in various parts of the reproductive tract 12 hr later (Days 3, 5, 8, 12 and 18). Only 0-06 to 2-21% of inseminated spermatozoa were recovered from the tract. More (P less than 0-05) spermatozoa were recovered from the cervix and uterus on Day 12 than on Days 3, 5, 8 and 18. The mean number of spermatozoa recovered from either or both oviducts was significantly greater (P less than 0-10) on Days 5 and 8 than on Days 3, 12 and 1...
Effect of timing of insemination, numbers of spermatozoa and extender components on the pregnancy rate in mares inseminated with frozen stallion semen.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 115-121 
Pace MM, Sullivan JJ.Fertilization rate was highest in mares inseminated with frozen semen within 12 hr of ovulation. Foaling rate was improved (P less than 0-05) by increasing the number of motile spermatozoa inseminated from 40 X 10(6) to 80 X 10(6) but was not further improved by increasing the number to 160 X 10(6) or by increasing the frequency of insemination from once to twice daily. The fertilizing capacity of spermatozoa frozen in one of the hydrogen ion extenders studied was dependent upon relative osmotic pressure and method of freezing (ampoules or pellets). Adjusting glycerol concentration from 7% to ...
The effect of rectal palpation on the fertility of cyclic mares.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 285-290 
Voss JL, Pickett BW.The effect of rectal palpation of fertility of non-lactating, normal cyclic mares was studied over 3 years. During the first year (1971), the conception rates in mares after daily paplaption during oestrus only, and during oestrus and the first 50 days of pregnancy, were not significantly lower (P greater than 0-05) than the conception rates recorded in mares not palpated. No abortions could be attributed to palpation. Oestrus lasted longer (P less than 0-05) in non-palpated than palpated mares. During the second year (1972), first-cycle pregnancy rates in two groups of mares palpated daily du...
The effect of HCG on duration of oestrus, ovulation time and fertility in mares.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 297-301 
Voss JL, Sullivan JJ, Pickett BW, Parker WG, Burwash LD, Larson LL.Two experiments were conducted to determine the effects of HCG on duration of oestrus, dioestrus, the length of the oestrous cycle, the time of ovulation and fertility in non-lactating mares. In the first experiment, the injection of HCG was repeated for three successive cycles. Mares injected with 2000 i.u. HCG on Day 2 of oestrus during their first cycle had a shorter oestrus and ovulated sooner than untreated control mares, but in the third cycle, treated mares had a longer oestrus and ovulated longer after the onset of oestrus than controls. In the second experiment, one intramuscular inje...
Maintenance of fertility in the horse including artificial insemination.
Equine veterinary journal    April 1, 1975   Volume 7, Issue 2 97-101 doi: 10.1111/j.2042-3306.1975.tb03242.x
Frhr J, Lepel V.A high fertility rate depends on many different factors and is always related to inheritance and enviorment. The successful feritly control system in the German Thoroughbred breeding industry shows that fertility can be increased by good management and veterinary supervision. The insemination of horses with frozen semen is discussed. Replacement of natural service by A.I. with frozen semen is not generally accepted in horsebreeding, as the conditions are entirely different from cattle breeding. However, there are several ways in which A.I. can be assistance in stud management.
Collection of stallion semen.
Veterinary medicine, small animal clinician : VM, SAC    March 1, 1975   Volume 70, Issue 3 333-336 
Catanzaro TE.No abstract available
[Successful use of deep-frozen stallion semen stored for 1-7 years in pellet form at – 196 degrees C].
DTW. Deutsche tierarztliche Wochenschrift    December 1, 1974   Volume 81, Issue 23 599-600 
Merkt H, Krause D, Bader H, Klug E.No abstract available
Effects of intrauterine injection of stallion semen in mares not-showing oestrus.
Bulletin de l'Academie polonaise des sciences. Serie des sciences biologiques    January 1, 1974   Volume 22, Issue 7-8 519-522 
Bielański W, Tischner M, Zapletal Z.No abstract available
[Disinfection of stallion sperm].
Veterinariia    October 1, 1973   Volume 10 91-92 
Kuklin AD.No abstract available
Developments in veterinary science. Artificial insemination in horses: genetic potential and control.
The Canadian veterinary journal = La revue veterinaire canadienne    August 1, 1969   Volume 10, Issue 8 203-207 
Stevens RW.No abstract available
Reproductive disorders in the horse.
Bulletin of epizootic diseases of Africa. Bulletin des epizooties en Afrique    June 1, 1969   Volume 17, Issue 2 255-258 
Malnati G.No abstract available