Analyze Diet

Topic:Testes

The testes in horses are reproductive organs responsible for the production of sperm and the secretion of hormones such as testosterone. Located in the scrotum, the testes play a vital role in male fertility and reproductive behavior. They consist of seminiferous tubules where spermatogenesis occurs, and interstitial cells, also known as Leydig cells, which produce testosterone. The function and health of equine testes can be influenced by factors such as age, season, and overall health status. This page compiles peer-reviewed research studies and scholarly articles that explore the anatomy, physiology, and pathology of the testes in horses, providing insights into their role in equine reproduction and breeding management.
A complication of cryptorchid castration in three horses.
Journal of the American Veterinary Medical Association    February 1, 1981   Volume 178, Issue 3 246-248 
Trotter GW, Aanes WA.During an 8-month period, 3 horses were examined because of incomplete cryptorchid castration. Each horse had had surgery to remove 1 retained testis. In each case, the attending veterinarian believed castration had been adequately completed. History, rectal examination findings, and in 2 cases, high serum testosterone concentration were factors that led to the decision to do exploratory surgery on each horse. In each case, initial surgery had resulted in surgical removal of the tail of the epididymis, which was mistaken for testicular tissue.
Torsion of the spermatic cord in a horse.
Journal of the American Veterinary Medical Association    February 1, 1981   Volume 178, Issue 3 242-245 
Pascoe JR, Ellenburg TV, Culbertson MR, Meagher DM.A 360-degree torsion of the left spermatic cord was diagnosed in a 2 1/2-year-old Quarter Horse colt. Clinical signs included abdominal discomfort, with slight elevations in heart and respiratory rates. The scrotum on the left side was moist and edematous. The left testicle was enlarged, firm, and retracted slightly toward the abdominal cavity. The colt resented palpation of the testicle. On rectal palpation, the left vaginal ring and the structures passing through the ring were edematous and painful to pressure. Surgical correction was achieved by emasculation. The tail of the epididymis and ...
Smooth muscle cells in the testicular capsule of the horse, pig and sheep.
Journal of anatomy    September 1, 1980   Volume 131, Issue Pt 2 263-273 
Chacon-Arellano JT, Woolley DM.Smooth muscle cells are present in the tunica albuginea testis of the horse, pig and sheep. typical fusiform muscle cells constitute a distinct layer up to 0.3 micrometer thick in the horse; there are fewer muscle cells, mainly of the branched form, in the pig; whereas in the sheep the muscle component is least well developed, with some cells intermediate in form between smooth muscle cells and fibroblasts (myofibroblasts). Attention is drawn to the continuity of this capsular muscle with the smooth muscle associated with the vasculature of the spermatic cord in the horse. This association sug...
[On the examination of the genital organs of Warm Blood stallions before licencing (author’s transl)].
DTW. Deutsche tierarztliche Wochenschrift    May 5, 1980   Volume 87, Issue 5 178-180 
Flüge A.No abstract available
Teratoma and cyst formation of the equine cryptorchid testicle.
Journal of the American Veterinary Medical Association    February 1, 1980   Volume 176, Issue 3 211-214 
Stick JA.In three horses with abdominally retained testicles, teratomas with cyst formation were found. Bone development in the head of the epididymis, near the vascular supply of the tumor, was a consistent finding. Aspiration of the cystic portion of the tumor was necessary for surgical removal in two cases. Although germinal carcinoma cells have been suggested as the cause of teratomas, evidence of malignancy was not seen in any of the three tumors.
The establishment and sexual differentiation of the horse gonad.
Boletin de estudios medicos y biologicos    January 1, 1980   Volume 31, Issue 1-2 3-23 
Merchant-Larios .No abstract available
An examination of chromosomes in the stallion (Equus caballus) during meiosis.
Cytogenetics and cell genetics    January 1, 1980   Volume 26, Issue 1 7-13 doi: 10.1159/000131415
Scott IS, Long SE.Meiotic preparations were made from testicular material obtained after surgical castration of eight stallions (Equus caballus) with normal spermatogenesis. The material was examined after conventional Giemsa staining and C-banding. C-banding demonstrated that the Y chromosome at diakinesis associated with the short arm of the X chromosome. In 315 cells at diplotene or diakinesis, 56 (17.7%) had univalents and 51 (16.1%) of these involved the sex chromosomes. The overall mean chiasma number was 54.4 +/- 1.8 SD, and the mean calculated nondisjunction (ND) frequency was 3.4%. These results are di...
Adrenal-testis interaction in the stallion.
Equine veterinary journal    July 1, 1979   Volume 11, Issue 3 195-198 doi: 10.1111/j.2042-3306.1979.tb01341.x
Cox JE, Jawad NM.The authors describe the short and long term effects of synthetic adrenocorticotrophin and of cortisol on peripheral plasma testosterone concentrations in 2 stallions. A single injection of either hormone temporarily raised plasma testosterone concentrations but repeated injection (twice daily for 5 days) depressed plasma testosterone concentrations. Cessation of treatment was followed by a rise in plasma testosterone to concentrations higher than those in the pretreatment period. These findings are briefly discussed.
Abdominal cryptorchidectomy in the horse, using inguinal extension of the gubernaculum testis.
Journal of the American Veterinary Medical Association    May 15, 1979   Volume 174, Issue 10 1110-1112 
Valdez H, Taylor TS, McLaughlin SA, Martin MT.Removal of abdominal testes was accomplished in 32 horses ranging in age from 6 to 72 months. Twenty were unilateral and 12 were bilateral abdominal cryptorchids. An incision was made over the superficial inguinal ring, and the extension of the gubernaculum testis was identified and grasped with forceps. Traction was applied to this structure until the vaginal process was everted beyond the superficial inguinal ring. The vaginal process was incised and the protruding structure, usually the epididymis, was grasped. The testis was drawn out by gentle traction on the epididymis, and castration wa...
Regulation of lutropin (luteinizing-hormone) receptors in rat testis by pregnant-mare serum gonadotropin [proceedings].
Biochemical Society transactions    February 1, 1979   Volume 7, Issue 1 57-59 doi: 10.1042/bst0070057
Gosling JP, Morgan P, Ryan M, Fottrell PF.No abstract available
Testicular measurements and reproductive characteristics in stallions.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 13-17 
Thompson DL, Pickett BW, Squires EL, Amann RP.Factors affecting testicular measurements in situ and the relationships among the measurements and various reproductive characteristics were studied using data from 48 stallions. Mean values during the breeding season are provided for scrotal width, widths and lengths of individual testes, combined weight of testicular parenchyma, daily sperm production and daily sperm output. Testicular measurements were highly repeatable from day to day and for repeated measurements on a given day; technician provided the largest source of variation in the measurements of a given stallion. Age significantly ...
Behavior of ovarian and testicular interstitial cells during ontogenesis in the horse. Morphological and histochemical studies “in vivo” and “in vitro”.
Basic and applied histochemistry    January 1, 1979   Volume 23, Issue 2 85-91 
Aureli G, Lauria A.The results of a study on interstitial cells of the horse gonads from foetal life to puberty are reported. The morphological (also ultrastructural) histochemical, histophysical and histoenzymological findings both in the organ and in monolayer cultures, clarify the problem of the ontogenesis of these cells showing that: --foetal interstitial cells give origin to "xanthochrome" cells; --"xanthochrome" cells in the prepuberal gonad are continuously renewed; --the same type of cells which in th prepuberal period undergo lipochromic degeneration, differentiate at puberty into Leydig cells in the t...
Clinical findings, pathological changes and endocrinological secretory patterns in mares with ovarian tumours.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 277-285 
Stabenfeldt GH, Hughes JP, Kennedy PC, Meagher DM, Neely DP.The clinical, structural and functional characteristics of ovarian tumours were studied in 10 mares. Proliferation of the granulosa cells of large and small follicles and the presence of various numbers of Leydig-like cells in the theca interna were the predominant microscopic findings in 9 of the mares. All 9 of these animals had higher than normal (P less than 0.005) concentrations of testosterone in the peripheral plasma; 2 animals which exhibited male behaviour had testosterone concentrations greater than 100 pg/ml and the largest number of Leydig-like cells in the theca. Mares with lower ...
The binding of FSH, LH and PMSG to equine gonadal tissues.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 431-440 
Stewart F, Allen WR.Gonadotrophin-receptor binding studies involving the use of 125I-labelled highly purified FSH and LH have shown that equine gonadal tissues possess similar numbers of specific FSH and LH receptors per cell as the gonadal tissues of other mammals. However, while rat, cow and pig gonadal tissues were shown to bind as much 125I-labelled PMSG as 125I-labelled LH on a molar basis, the equivalent equine tissues bound only less than or equal to 4% as much of the labelled PMSG as LH. Competitive binding studies involving the use of radioreceptor assay techniques have further demonstrated that the smal...
Ultrastructural events in horse gonadal morphogenesis.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 479-485 
Merchant-Larios H.The establishment and sexual differentiation of the gonads of horse embryos were studied using high-resolution techniques. The most dramatic observation is the early cytodifferentiation of the somatic cells into steroidogenic cells which takes place before sexual differentiation of the gonads. A unique morphogenetic pattern is established during this process: the seminiferous cords of the testis are completely segregated from the steroidogenic tissue by a basal lamina, while in the medulla of the ovary, steroidogenic cells differentiate inside the epithelial cords which contain germ cells. Thi...
Suprapubic paramedian laparotomy for equine abdominal cryptorchidism.
Journal of the American Veterinary Medical Association    September 15, 1978   Volume 173, Issue 6 680-682 
Cox JE, Neal PA, Edwards GB.No abstract available
Retrospective study of 350 cases of equine cryptorchidism.
Journal of the American Veterinary Medical Association    February 1, 1978   Volume 172, Issue 3 343-346 
Stickle RL, Fessler JF.Equine cryptorchidism was examined by a review of the literature and a retrospective study of 350 horses over a 14-year period. The incidence of left vs right testis retention was nearly equal. On the left side, 75.2% of the retained testes were retained abdominally and 24.8% inguinally; on the right side, 41.8% of the retained testes were retained abdominally and 58.2% inguinally. Preoperative diagnosis by rectal palpation of the vaginal rings was considered a valuable technique, with 87.9% accuracy in 190 horses. Invasive and nonivasive surgical techniques for abdominal cryptorchidectomy and...
[Testicular artery and its distribution in the testis and epididymis of the donkey (Equus africanus f. asinus). Corrosion-anatomic and angiographic studies].
Anatomia, histologia, embryologia    February 1, 1978   Volume 7, Issue 1 74-78 doi: 10.1111/j.1439-0264.1978.tb00496.x
Fehlings K, Pohlmeyer K.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
Diagnosis of equine crytorchidism.
The Veterinary record    May 7, 1977   Volume 100, Issue 19 411 doi: 10.1136/vr.100.19.411-b
Cox JE.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...
Seasonal variation in plasma androgens and testosterone in the North American wild horse.
The Journal of endocrinology    February 1, 1977   Volume 72, Issue 2 237-238 doi: 10.1677/joe.0.0720237
Kirkpatrick JF, Wiesner L, Kenney RM, Ganjam VK, Turner JW.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
Effect of temperature and pregnant mare’s serum gonadotropin on testicular function in the spiny-tailed lizard, Uromastix hardwicki.
General and comparative endocrinology    October 1, 1976   Volume 30, Issue 2 162-170 doi: 10.1016/0016-6480(76)90095-2
Jalali S, Arslan M, Qureshi S, Qazi MH.No abstract available
Dehydroepiandrosterone in the fetal gonads of the horse.
Journal of reproduction and fertility    March 1, 1976   Volume 46, Issue 2 423-425 doi: 10.1530/jrf.0.0460423
Raeside JI.No abstract available
Male pseudohermaphroditism of the testicular feminizing type in a horse.
Equine veterinary journal    January 1, 1976   Volume 8, Issue 1 38-41 doi: 10.1111/j.2042-3306.1976.tb03284.x
Kieffer NM.Features characteristic of the hereditary syndrome of testicular feminization (tfm) were observed in a 7-year-old Quarter Horse. The horse had female body habitus and male psychosexual behaviour. Gonads located in the abdomen were testes and the uterus and cervix were absent. The vagina was normal in depth but ended as a blind pocket. The sex chromosome composition of testicular fibroblast and leucocyte cultures was XY. Construction of a family pedigree revealed a pattern of hereditary transmission similar to that reported for tfm in other mammalian species.