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Biology of reproduction1979; 20(3); 567-574; doi: 10.1095/biolreprod20.3.567

Influence of photoperiod and ovaries on seasonal reproductive activity in mares.

Abstract: No abstract available
Publication Date: 1979-04-01 PubMed ID: 572238DOI: 10.1095/biolreprod20.3.567Google Scholar: Lookup
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Cite This Article

APA
Freedman LJ, Garcia MC, Ginther OJ. (1979). Influence of photoperiod and ovaries on seasonal reproductive activity in mares. Biol Reprod, 20(3), 567-574. https://doi.org/10.1095/biolreprod20.3.567

Publication

ISSN: 0006-3363
NlmUniqueID: 0207224
Country: United States
Language: English
Volume: 20
Issue: 3
Pages: 567-574

Researcher Affiliations

Freedman, L J
    Garcia, M C
      Ginther, O J

        MeSH Terms

        • Animals
        • Castration
        • Estrus
        • Female
        • Follicle Stimulating Hormone / blood
        • Horses / physiology
        • Light
        • Ovarian Follicle / physiology
        • Ovary / physiology
        • Ovulation
        • Periodicity
        • Pregnancy
        • Seasons

        Citations

        This article has been cited 11 times.
        1. Montano GA, Clough P, Schmitt T, Davis M, O'Brien JK, Steinman K, Robeck T. Follicular and Hormonal Changes after Estrous Synchronization in Bottlenose Dolphins.. Reprod Fertil 2022 Sep 1;3(3):238-54.
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        2. Bianchi CP, Bruno S, Videla Dorna I, Rodríguez E, Aba MA. Effect of short-term artificial light and transvaginal progesterone device on first ovulation in late transitional mares.. J Equine Sci 2022 Apr;33(1):1-6.
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        3. Tucker L, Trumble TN, Groschen D, Dobbs E, Baldo CF, Wendt-Hornickle E, Guedes AGP. Targeting Soluble Epoxide Hydrolase and Cyclooxygenases Enhance Joint Pain Control, Stimulate Collagen Synthesis, and Protect Chondrocytes From Cytokine-Induced Apoptosis.. Front Vet Sci 2021;8:685824.
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        4. Yu X, Hao Y, Kot BC, Wang D. Effect of Photoperiod Extension on the Testicular Sonographic Appearance and Sexual Behavior of Captive Yangtze Finless porpoise (Neophocaena asiaeorientalis asiaeorientalis).. Zool Stud 2016;55:e24.
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        5. Salomon AK, Leon K, Campbell MM, Young KA. Folliculogenic factors in photoregressed ovaries: Differences in mRNA expression in early compared to late follicle development.. Gen Comp Endocrinol 2018 May 1;260:90-99.
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        6. Suzuki T, Mizukami H, Nambo Y, Ishimaru M, Miyata K, Akiyama K, Korosue K, Naito H, Nagaoka K, Watanabe G, Taya K. Different effects of an extended photoperiod treatment on growth, gonadal function, and condition of hair coats in Thoroughbred yearlings reared under different climate conditions.. J Equine Sci 2015;26(4):113-24.
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        7. Kunii H, Nambo Y, Okano A, Matsui A, Ishimaru M, Asai Y, Sato F, Fujii K, Nagaoka K, Watanabe G, Taya K. Effects of an extended photoperiod on gonadal function and condition of hair coats in Thoroughbred colts and fillies.. J Equine Sci 2015;26(2):57-66.
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        8. Salazar-Ortiz J, Camous S, Briant C, Lardic L, Chesneau D, Guillaume D. Effects of nutritional cues on the duration of the winter anovulatory phase and on associated hormone levels in adult female Welsh pony horses (Equus caballus).. Reprod Biol Endocrinol 2011 Sep 29;9:130.
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        9. Jongbloet PH, Mulder A, Hamers AJ. Seasonality of pre-ovulatory non-disjunction and the aetiology of Down syndrome. A European collaborative study.. Hum Genet 1982;62(2):134-8.
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        10. Jongbloet PH, Vrieze OJ. Down syndrome: increased frequency of maternal meiosis I nondisjunction during the transitional stages of the ovulatory seasons.. Hum Genet 1985;71(3):241-8.
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        11. Koskinen E, Kurki E, Katila T. Onset of luteal activity in foaling and seasonally anoestrous mares treated with artificial light.. Acta Vet Scand 1991;32(3):307-12.
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