Abecia, J., Forcada, F., & González-Bulnes, A. (2012). Hormonal control of reproduction in small ruminants. Animal reproduction science, 130(3-4), 173-179.
Abu-Ghazal, B. M. A. (2010). Different estrous induction protocols during the non-breeding season in Assaf ewes
Ali, A. (2007). Effect of time of eCG administration on follicular response and reproductive performance of FGA-treated Ossimi ewes. Small Ruminant Research, 72(1), 33-37.
Didarkhah, M. (2018). Overview browsing the different methods of synchronizing and triggering ovulation. Journal of Biosafety, 10, 31-46.
Grant, J., Abreu, F., Hojer, N., Fields, S., Perry, B., & Perry, G. (2011). Influence of inducing luteal regression before a modified controlled internal drug-releasing device treatment on control of follicular development. Journal of animal science, 89(11), 3531-3541.
Hassanein, M., Hussein, S., & Hayat, H. (1999). Some biochemical studies during estrous cycle and after synchronization in Barki ewes. The Egyptian Journal of Biochemistry, 17(2), 281-299.
Hayashi, T. (1992). Effect of prostaglandin E2 on plasma lactic dehydrogenase activity in (NZB× NZW) F1 mice with a chronic infection of lactic dehydrogenase virus. Journal of comparative pathology, 107(1), 41-48.
Juma, F. (2010). Effect of Prostaglandin and PMSG on prolificacy and some serum biochemical changes of Hamdani ewes synchronized with intravaginal progestagen. Al-Anbar J. Vet. Sci, 3(2), 28-35.
Juma, F., Maroff, N., & Mahmood, K. (2009). Effect of some hormones on reproductive performance and some serum biochemical changes in synchronized black goats. Iraqi Journal of Veterinary Sciences, 23(2).
Kadzere, C., Llewelyn, C., & Chivandi, E. (1997). Plasma progesterone, calcium, magnesium and zinc concentrations from oestrus synchronization to weaning in indigenous goats in Zimbabwe. Small Ruminant Research, 24(1), 21-26.
Kalkhoff, R. K. (1982). Metabolic effects of progesterone. American journal of obstetrics and gynecology, 142(6), 735-738.
LaBorde, J., Wall, K., Bolon, B., Kumpe, T., Patton, R., Zheng, Q., Kodell, R., & Young, J. (1999). Haematology and serum chemistry parameters of the pregnant rat. Laboratory animals, 33(3), 275-287.
Lee, S. R., Choi, W.-Y., Heo, J. H., Huh, J., Kim, G., Lee, K.-P., Kwun, H.-J., Shin, H.-J., Baek, I.-J., & Hong, E.-J. (2020). Progesterone increases blood glucose via hepatic progesterone receptor membrane component 1 under limited or impaired action of insulin. Scientific Reports, 10(1), 16316.
López-Sebastian, A., González-Bulnes, A., Carrizosa, J., Urrutia, B., Díaz-Delfa, C., Santiago-Moreno, J., & Gómez-Brunet, A. (2007). New estrus synchronization and artificial insemination protocol for goats based on male exposure, progesterone and cloprostenol during the non-breeding season. Theriogenology, 68(8), 1081-1087.
Melnyk, V., Karatieieva, O., Kravchenko, O., & Kogut, O. (2022). Hematological and biochemical blood indicators of young gilts after estrus synchronization. Scientific Papers. Series D. Animal Science, 65(1).
Muneyyirci-Delale, O., Nacharaju, V. L., Altura, B. M., & Altura, B. T. (1998). Sex steroid hormones modulate serum ionized magnesium and calcium levels throughout the menstrual cycle in women. Fertility and sterility, 69(5), 958-962.
O’Shaughnessy, A., Muneyyirci-Delale, O., Nacharaju, V., Dalloul, M., Altura, B., & Altura, B. (2001). Circulating divalent cations in asymptomatic ovarian hyperstimulation and in vitro fertilization patients. Gynecologic and obstetric investigation, 52(4), 237-242.
Ojeda-Hernández, F., del Moral-Ventura, S., Capataz-Tafur, J., Peña-Castro, J., Abad-Zavaleta, J., Chay-Canul, A., Ramon-Ugalde, J., Ungerfeld, R., & Meza-Villalvazo, V. (2019). Vaginal microbiota in Pelibuey sheep treated with antimicrobials at the removal of intravaginal sponges impregnated with flurogestone acetate. Small Ruminant Research, 170, 116-119.
Omontese, B., Ahmed, H., Salisu, M., Alao, R., & Umar, M. (2017). Changes in haematological parameters following oestrus synchronization using Fluorogestone Acetate (Fga) intravaginal sponge in red sokoto does. Journal of Animal Production Ressearch, 29(1), 83-87.
Prior, J. C., Elliott, T. G., Norman, E., Stajic, V., & Hitchcock, C. L. (2014). Progesterone therapy, endothelial function and cardiovascular risk factors: a 3-month randomized, placebo-controlled trial in healthy early postmenopausal women. PLoS One, 9(1), e84698.
Sarmin, S., Winarsih, S., Hana, A., Astuti, P., & Airin, C. M. (2021). Parameters of blood biochemistry in different physiological status of fat-tailed sheep. AIP Conference Proceedings,
Schlumbohm, C., Sporleder, H., Gürtler, H., & Harmeyer, J. (1997). Effect of insulin on glucose and and fat metabolism in ewes during various reproductive states in normal and hypocalcemia. DTW. Deutsche tierärztliche Wochenschrift, 104(9), 359-365.
Toyoda, Y., Endo, S., Tsuneyama, K., Miyashita, T., Yano, A., Fukami, T., Nakajima, M., & Yokoi, T. (2012). Mechanism of exacerbative effect of progesterone on drug-induced liver injury. Toxicological Sciences, 126(1), 16-27.
Varanis, L. F. M., Oliveira, K. A., Araújo, C. M., da CRUZ, W. F. G., & Júnior, G. (2021). Serum biochemical reference ranges for pregnant sheep. Bioscience Journal, 37(1), e37036.
Wang, J., Zhu, X., Chen, C., Li, X., Gao, Y., Li, P., Zhang, Y., Long, M., Wang, Z., & Liu, G. (2012). Effect of insulin-like growth factor-1 (IGF-1) on the gluconeogenesis in calf hepatocytes cultured in vitro. Molecular and cellular biochemistry, 362, 87-91.