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Topic:Semen Analysis

Semen analysis involves the evaluation of semen quality to assess reproductive potential and health in horses. This process typically includes the examination of several parameters such as sperm concentration, motility, morphology, and volume. Semen analysis is used in breeding programs to determine the fertility of stallions and to identify any reproductive issues. The collected data can assist in making informed decisions about breeding management and interventions. This page compiles peer-reviewed research studies and scholarly articles that explore the methodologies, findings, and implications of semen analysis in equine reproduction.
Effects of age and frequency of ejaculation on sperm production and extragonadal sperm reserves in stallions.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 1-6 
Amann RP, Thompson DL, Squires EL, Pickett BW.Extragonadal reserves totalled 89 X 10(9) spermatozoa for 5--16-year-old sexually rested stallions and 60 X 10(9) for 2--4-year-olds. Regardless of age, the cauda epididymidis contained 62% of the total reserves and the vas deferens, including the ampulla, contained 7% of the total reserves of spermatozoa. The caput plus corpus epididymidis from 5--16-year-old stallions (N = 41) contained 14.9 X 10(9) spermatozoa per side as compared (P less than 0.01) to 8.5 X 10(9) for 2--4-year olds (N = 30). Frequency of ejaculation did not influence the number of spermatozoa found in caput plus corpus epi...
[Morphology of live and dead spermatozoa of stallions (author’s transl)].
Tijdschrift voor diergeneeskunde    December 1, 1978   Volume 103, Issue 23 1277-1283 
Hendrikse J, van der Holst W, Best AP.Examination of 539 ejaculates of stallions of various breeds showed that approximately 60 per cent of the spermatozoa were completely normal morphologically. Of these morphologically normal spermatozoa, 13 per cent were dead. The total proportion of live spermatozoa was 75 per cent, 32 per cent being obviously abnormal (22 per cent of live and 10 per cent of dead spermatozoa). Separated heads (normal as well as abnormal) were significantly more common among dead spermatozoa. Protoplasmic droplets (both at the neck and at the end of the middle piece) were mainly present in live spermatozoa. As ...
Characteristics and cryopreservation of stallion spermatozoa.
Cryobiology    June 1, 1978   Volume 15, Issue 3 355-357 doi: 10.1016/0011-2240(78)90049-4
Sullivan JJ.No abstract available
Scanning electrons and light microscopy of the equine seminiferous tubule.
Fertility and sterility    February 1, 1978   Volume 29, Issue 2 208-215 
Johnson L, Amann RP, Pickett BW.Changes within the equine seminiferous tubules during the cycle of the seminiferous epithelium were studied light and scanning electron microscopy (SEM). Once observed with SEM, tubules were sectioned and staged using light microscopy. As viewed by SEM, the weblike, spongy cytoplasm of germ cells or Sertoli cells in stages I and II extended over the entire height of the germinal epithelium. The cytoplasm of the basal portion of the germinal epithelium in stages III to VIII was similar to that in stages I and II. However, the cytoplasm which occupied the luminal third of the epithelium in stage...
Factors influencing the quantity and quality of semen harvested from bulls, rams, boars and stallions.
Journal of animal science    January 1, 1978   Volume 47 Suppl 2 1-11 
Foote RH.Several inherited conditions associated with testicular defects, abnormal spermatogenesis and morphologically abnormal sperm have been found. These usually are controlled by single gene pairs. A notable exception is testicular size, with heritability in young bulls ranging from .42 to .88. Testicular size directly affects sperm output potential. The major contributor to variation in semen quality is the environment. Environmental effects may be temporary or permanent. Permanent effects occurring during prenatal and prepubertal periods and temporary or permanent factors acting after spermatogen...
Connection between the seminiferous tubules and the efferent ducts in the stallion.
American journal of veterinary research    October 1, 1977   Volume 38, Issue 10 1571-1579 
Amann RP, Johnson L, Pickett BW.No abstract available
[Dilution of stallion sperm].
Veterinariia    October 1, 1977   Issue 10 86-88 
Naumenkov AI, Roman'kova NK.No abstract available
Methods for quantifying mammalian spermatogenesis: a review.
Journal of animal science    May 1, 1977   Volume 44, Issue 5 818-833 doi: 10.2527/jas1977.445818x
Berndtson WE.No abstract available
Reproductive function in stallions treated with cambendazole.
Journal of the American Veterinary Medical Association    April 1, 1977   Volume 170, Issue 7 730-732 
Amann RP, Bowen JM, Pickett BW, Berndtson WE, Stashak RS, Voss JL.Twenty stallions were used to determine if the anthelmintic cambendazole affected seminal characteristics, spermatogenesis, concentration of testosterone in blood serum, or weights of the reproductive orgrans. With minor exceptions, significant differences were not found between values for 10 control and 10 stallions treated with a single oral dose (40 mg/kg body weight) of cambendazole. The treatment did not affect reproductive function and it was concluded that the drug should have no effect on the fertility of stallions.
Reproductive physiology of the stallion. VIII. Artificial photoperiod, collection interval and seminal characteristics, sexual behavior and concentrations of LH and testosterone in serum.
Journal of animal science    April 1, 1977   Volume 44, Issue 4 656-664 doi: 10.2527/jas1977.444656x
Thompson DL, Pickett BW, Berndtson WE, Voss JL, Mett TM.Stallions were subjected to a gradually increasing photoperiod beginning on October 15, 1973. The maximum artificial daylength (16 hr) was imposed on February 8, 1974, and maintained until October 6, 1974. Two ejaculates were collected from each of five treated and four control stallions weekly, with an interval of 24 hr between die paired ejaculates on the first and alternate weeks, and an interval of 1 hr on the second and alternate weeks. During summer, stallions subjected to the artificial photoperiod produced less (P<.05) gel-free semen and gel per ejaculate and had more (P<.05) spermatoz...
The activity of some nucleolytic enzymes in semen and in the secretion of the male reproductive tract.
Andrologia    January 1, 1977   Volume 9, Issue 1 15-22 doi: 10.1111/j.1439-0272.1977.tb01252.x
Mennella MR, Jones MR.The activity of 5'-nucleotidase (EC 1.3.5), cyclic nucleotide phosphodiesterase (EC 2.1.4.17), non-specific phosphodiesterase (EC 3.1.4.1) and ribonuclease (EC 1.7.7.16)has been investigated in the seminal plasma of whole semen and in the secretions of the seminal vesicle, prostate and epididymis of the bull, boar, ram, stallion, jackass, rabbit and man. Bull seminal plasma showed the highest activity for 5'-nucleotidase, cyclic nucleotide phosphodiesterase and ribonuclease; in contrast, stallion and jackass semen were very poor in these enzymes. Ram, rabbit and boar seminal plasma showed inte...
Artificial insemination of horses.
Australian veterinary journal    November 1, 1976   Volume 52, Issue 11 542 doi: 10.1111/j.1751-0813.1976.tb07006.x
Dowsett KF, Dunn BL, Boothby DL.No abstract available
Examination of stallions.
The Veterinary record    October 23, 1976   Volume 99, Issue 17 342 doi: 10.1136/vr.99.17.342
Sinclair DV.No abstract available
Reproductive physiology of the stallion. VII. Chemical characteristics of seminal plasma and spermatozoa.
Journal of animal science    September 1, 1976   Volume 43, Issue 3 626-632 doi: 10.2527/jas1976.433626x
Gebauer MR, Pickett BW, Faulkner LC, Remmenga EE, Berndtson WE.No abstract available
Reproductive physiology of the stallion. VI. Seminal and behavioral characteristics.
Journal of animal science    September 1, 1976   Volume 43, Issue 3 617-625 doi: 10.2527/jas1976.433617x
Pickett BW, Faulkner LC, Seidel GE, Berndtson WE, Voss JL.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.
Semen collection from a stallion using a dummy mount.
The Canadian veterinary journal = La revue veterinaire canadienne    July 1, 1976   Volume 17, Issue 7 177-180 
Richardson GF, Wenkoff MS.No abstract available
[Preliminary studies on the luteolytic factors in semen of stallions].
Medycyna weterynaryjna    June 1, 1976   Volume 32, Issue 6 337-339 
Bielański W, Okólski A, Tischner M.No abstract available
[The cause of inadequate motility of equine semen (author transl)].
Tijdschrift voor diergeneeskunde    June 1, 1976   Volume 101, Issue 11 613-615 
van der Holst W.No abstract available
Effect of season on some characteristics of stallion semen.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 25-28 
Pickett BW, Faulkner LC, Voss JL.Season had a pronounced effect upon seminal pH and refractometer 'protein', total carbohydrate, dry weight, total N2 and lactic acid in seminal plasma of first and second ejaculates. In addition, total seminal volume, spermatozoa per ml and per ejaculate, non-protein sulphhydryl and glycerylphosphorylcholine of second ejaculates were also influenced. There was a season difference in the concentrations of lactic acid in spermatozoa from first and in total N2 from spermatozoa in second ejaculates. The effects of season on seminal plasma were greater than those on spermatozoa. Spermatozoa in firs...
Preservation of differential staining of spermatozoa by formol citrate.
Journal of reproduction and fertility    October 1, 1975   Volume 45, Issue 1 57-60 doi: 10.1530/jrf.0.0450057
Dott HM, Foster GC.Semen from boar, bull, ram, rabbit, reindeer and stallion was diluted in formol citrate or formol saline and stained with eosinnigrosin. The proportion of eosinophilic spermatozoa did not differ from that in fresh semen after storage for 48 hr in the formol diluent at temperatures ranging from 4 degrees C to 40 degrees C. Some samples were kept for periods up to 3 weeks with very little increase in the proportion of eosinophilic spermatozoa.
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
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...
A study of the morphology of stallion semen during the breeding and non-breeding seasons.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 87-89 
van der Holst W.Season was shown to markedly influence semen characteristics of stallions in Holland, including ejaculate volume, sperm motility, total number of spermatozoa/ejaculate and the percentage of spermatozoa showing morphological abnormalities. Maintenance of normal stallions in continuous light during the winter months and administration of a vitamin and mineral supplement to sub-fertile stallions before the start of the breeding season appeared to improve spermatogenesis significantly.
The relationship between dialy sperm production as determined by quantitative testicular histology and daily sperm output in the stallion.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 
Swierstra EE, Gebauer MR, Pickett BW.The relationship between daily sperm productions (DSP) and daily sperm output (DSO) was determined in eleven stallions. The DSO was determined by collecting single ejaculates, with an artificial vagina, at 24-hr intervals. The stallions were killed 24 hr after the last collection and the DSP was determined by quantitative testicular histology. The mean DSP was 8-0 X 10(9) (S.E. +/- 0-4 X 10(9), and the mean DSO was 7-0 X 10(9) (S.E. +/- 0-4 X 10(9)). It was estimated that 87% of the spermatozoa produced by the testes were harvested. The correlation between DSP and DSO was 0-80 (P less than 0-0...
The evaluation of stallion semen in aspects of fertility control and its use for artificial insemination.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 19-24 
Bielański W.Choice of the best methods for semen examination is dictated by the purpose of the examination, whether it be to assess the fertility of an individual stallion or to evaluate individual semen samples for routine purposes. In the author's experience of examining stallion semen, emphasis should be placed upon morphological examination, sperm cinematography and survival tests in vitro. Special problems concerning examination of frozen semen are discussed and the ultrastructure of spermatozoa frozen in the presence and absence of glycerol is described.
Biochemistry of stallion semen.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 47-52 
Mann T.Stallion semen has several chemical characteristics not commonly encountered in other animals. It contains very little fructose and the spermatozoa possess only limited fructolytic ability under anaerobic conditions. By determining some of the characteristic constituents such as ergothioneine, citric acid, glycerylphosphorylcholine and certain glycosidases, it is possible to obtain a quantitative measure of the secretory contribution of the ampulla, seminal vesicle and epididymis, respectively, towards the final composition of the whole ejaculate. By analysing separately the various fractions ...
Morphology of stallion spermatozoa.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 41-46 
Dott HM.No abstract available
Characteristics of the successive jets of ejaculated semen of stallions.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 59-61 
Kosiniak K.The use of an 'open' artificial vagina made it possible to separate the individual jets in the ejaculate of the stallion. A total of 132 jets were collected in this way from twenty-one ejaculates. After macro- and microscopic examination and sperm counting, glycerylphosphorylcholine (GPC), ergothioneine and fructose levels were determined for every jet. The values obtained for the first three jets were similar and accounted for about 76% of all spermatozoa, and 70% of GPC. These jets also contained the highest concentration of ergothioneine and fructose.
Immature germ cells in the semen of thoroughbred stallions.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 135-137 
Swerczek TW.Small but significant numbers of primary and secondary spermatocytes and spermatids have been observed in the semen of some Thoroughbred stallions. Extensive histological examination of the testes of affected animals has not been undertaken but in one young stallion which died as the result of a leg injury, the premature dehiscence of these cells seemed to be related to segmental defects within the seminiferous tubules. The causes of lesions leading to premature shedding of germ cells are discussed.