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1Academic Journal
المؤلفون: Torres Leyva, Guillermo Andrés, Chacón Jaramillo, Liliana, Ardila Silva, Ariosto, Burgos-Paz, William
المصدر: Revista de Investigaciones Veterinarias del Perú; Vol. 33 No. 1 (2022); e19648 ; Revista de Investigaciones Veterinarias del Perú; Vol. 33 Núm. 1 (2022); e19648 ; 1682-3419 ; 1609-9117
مصطلحات موضوعية: fertility, SNPs, sperm, Zebu, Cebú, espermatozoides, fertilidad
وصف الملف: application/pdf
Relation: https://revistasinvestigacion.unmsm.edu.pe/index.php/veterinaria/article/view/19648/17946; https://revistasinvestigacion.unmsm.edu.pe/index.php/veterinaria/article/view/19648
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2Academic Journal
المؤلفون: Chacón Jaramillo, Liliana
المصدر: Agrociencias
مصطلحات موضوعية: desarrollo rural, agricultura, desarrollo sostenible
وصف الملف: application/pdf
Relation: https://ciencia.lasalle.edu.co/edunisalle_agrociencias/1; https://ciencia.lasalle.edu.co/context/edunisalle_agrociencias/article/1000/viewcontent/9786287510302.pdf
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3Academic Journal
المؤلفون: Riveros-Pinilla, Diego Armando, Bespalhok-Jacometo, Carolina, Corrales-Álvarez, Juan David, Olaya-Oyuela, Julio Cesar, Chacón-Jaramillo, Liliana
المصدر: Journal MVZ Cordoba; Vol. 27 No. 3 (2022): Vol. 27 Núm. 3 (2022): Revista MVZ Córdoba Volumen 27(3) Septiembre-Diciembre 2022; e2660 ; Revista MVZ Córdoba; Vol. 27 Núm. 3 (2022): Vol. 27 Núm. 3 (2022): Revista MVZ Córdoba Volumen 27(3) Septiembre-Diciembre 2022; e2660 ; 1909-0544 ; 0122-0268 ; 10.21897/rmvz.v27.n3.2022
مصطلحات موضوعية: Zebu, follicle, in vitro, endocrine marker, embryo transfer, Cebú, folículo, marcador endocrino, transferencia embrionaria
وصف الملف: application/pdf; audio/mpeg
Relation: https://revistamvz.unicordoba.edu.co/article/view/2660/4910; https://revistamvz.unicordoba.edu.co/article/view/2660/4911; https://revistamvz.unicordoba.edu.co/article/view/2660/4912; https://revistamvz.unicordoba.edu.co/article/view/2660/4913; https://revistamvz.unicordoba.edu.co/article/view/2660/4914; 1. Morotti F, Sanches BV, Pontes JHF, Basso AC, Siqueira ER, Lisboa LA, et al. Pregnancy rate and birth rate of calves from a large-scale IVF program using reverse-sorted semen in Bos indicus, Bos indicus-taurus, and Bos taurus cattle. Theriogenology. 2014; 81(5):696–701. https://doi.org/10.1016/j.theriogenology.2013.12.002; 2. Pontes JHF, Melo FA, Basso AC, Ferreira CR, Sanches BV, Rubin KCP, et al. Ovum pick up, in vitro embryo production, and pregnancy rates from a large-scale commercial program using Nelore cattle (Bos indicus) donors. Theriogenology. 2011; 75(9):1640–1646. https://doi.org/10.1016/j.theriogenology.2010.12.026; 3. Ireland J, Ward F, Jimenez-Krassel F, Ireland JLH, Smith GW, Lonergan P, et al. Follicle numbers are highly repeatable within individual animals but are inversely correlated with FSH concentrations and the proportion of good-quality embryos after ovarian stimulation in cattle. Hum Reprod. 2007; 22(6):1687–1695. https://doi.org/10.1093/humrep/dem071; 4. Burns DS, Jimenez-Krassel F, Ireland JLH, Knight PG, Ireland JJ. Numbers of Antral Follicles During Follicular Waves in Cattle: Evidence for High Variation Among Animals, Very High Repeatability in Individuals, and an Inverse Association with Serum Follicle-Stimulating Hormone Concentrations. Biol Reprod. 2005; 73(1):54–62. https://doi.org/10.1095/biolreprod.104.036277; 5. Block E. Quantitative morphological investigation of the system in women. Acta Anat. 1952; 14(1–2):108–123. https://doi.org/10.1159/000140595; 6. Scaramuzzi RJ, Baird DT, Campbell BK, Driancourt M-A, Dupont J, Fortune JE, et al. Regulation of folliculogenesis and the determination of ovulation rate in ruminants. Reprod Fertil Dev. 2011; 23(3):444-467. https://doi.org/10.1071/RD09161; 7. Durlinger AL, Kramer P, Karels B, de Jong FH, Uilenbroek JT, Grootegoed JA, et al. Control of primordial follicle recruitment by anti-Müllerian hormone in the mouse ovary. Endocrinology. 1999; 140(12):5789–5796. https://doi.org/10.1210/endo.140.12.7204; 8. Bezard J, Vigier B, Tran D, Mauleon P, Josso N. Immunocytochemical study of anti-Mullerian hormone in sheep ovarian follicles during fetal and post-natal development. Reproduction. 1987; 80(2):509–516. https://doi.org/10.1530/jrf.0.0800509; 9. La Marca A, Volpe A. Anti-Mullerian hormone (AMH) in female reproduction: is measurement of circulating AMH a useful tool? Clin Endocrinol. 2006; 64(6):603–610. https://doi.org/10.1111/j.1365-2265.2006.02533.x; 11. Hayes E, Kushnir V, Ma X, Biswas A, Prizant H, Gleicher N, et al. Intra-cellular mechanism of Anti-Müllerian hormone (AMH) in regulation of follicular development. Mol Cell Endocrinol. 2016; 433:56–65. https://doi.org/10.1016/j.mce.2016.05.019; 12. Ueno S, Kuroda T, Maclaughlin DT, Ragin RC, Manganaro TF, Donahoe PK. Mullerian Inhibiting Substance in the Adult Rat Ovary During Various Stages of the Estrous Cycle. Endocrinology. 1989; 125(2):1060–1066. https://doi.org/10.1210/endo-125-2-1060; 13. Weenen C, Laven JSE, Von Bergh ARM, Cranfield M, Groome NP, Visser JA, et al. Anti-Müllerian hormone expression pattern in the human ovary: potential implications for initial and cyclic follicle recruitment. Mol Hum Reprod. 2004;10(2):77–83. https://doi.org/10.1093/molehr/gah015; 14. Monniaux D, Barbey S, Rico C, Fabre S, Gallard Y, Larroque H. Anti-Müllerian hormone: a predictive marker of embryo production in cattle? Reprod Fertil Dev. 2010; 22(7):1083-1091. https://doi.org/10.1071/RD09279; 15. Veiga-Lopez A, Ye W, Padmanabhan V. Developmental programming: prenatal testosterone excess disrupts anti-Müllerian hormone expression in preantral and antral follicles. Fertil Steril. 2012; 97(3):748–756. https://doi.org/10.1016/j.fertnstert.2011.12.028; 16. Kim JH, Seibel MM, MacLaughlin DT, Donahoe PK, Ransil BJ, Hametz PA, et al. The inhibitory effects of müllerian-inhibiting substance on epidermal growth factor induced proliferation and progesterone production of human granulosa-luteal cells. J Clin Endocrinol Metab. 1992; 75(3):911–917. https://doi.org/10.1210/jcem.75.3.1517385; 17. Monniaux D, Drouilhet L, Rico C, Estienne A, Jarrier P, Touzé J-L, et al. Regulation of anti-Müllerian hormone production in domestic animals. Reprod Fertil Dev. 2013; 25(1):1-16. https://doi.org/10.1071/RD12270; 18. Rico C, Fabre S, Medigue C, Clemente ND., Clement F, Bontoux M, et al. Anti-Mullerian Hormone Is an Endocrine Marker of Ovarian Gonadotropin-Responsive Follicles and Can Help to Predict Superovulatory Responses in the Cow. Biol Reprod. 2009; 80(1):50–59. https://doi.org/10.1095/biolreprod.108.072157; 19. Baldrighi J, Sá Filho M, Batista E, Lopes R, Visintin J, Baruselli P, et al. Anti-Mullerian Hormone Concentration and Antral Ovarian Follicle Population in Murrah Heifers Compared to Holstein and Gyr Kept Under the Same Management. Reprod Domest Anim. 2014; 49(6):1015–1020. https://doi.org/10.1111/rda.12430; 20. Batista E, Macedo G, Sala R, Ortolan M, Sá Filho M, Del Valle T, et al. Plasma Antimullerian Hormone as a Predictor of Ovarian Antral Follicular Population in Bos indicus (Nelore) and Bos taurus (Holstein) Heifers. Reprod Domest Anim. 2014; 49(3):448–452. https://doi.org/10.1111/rda.12304; 21. Ireland JJ, Smith GW, Scheetz D, Jimenez-Krassel F, Folger JK, Ireland JLH, et al. Does size matter in females? An overview of the impact of the high variation in the ovarian reserve on ovarian function and fertility, utility of anti-Müllerian hormone as a diagnostic marker for fertility and causes of variation in the ovarian reserve in. Reprod Fertil Dev. 2011; 23(1):1-14. https://doi.org/10.1071/RD10226; 22. Pfeiffer KE, Jury LJ, Larson JE. Determination of anti-Müllerian hormone at estrus during a synchronized and a natural bovine estrous cycle. Domest Anim Endocrinol. 2014; 46(1):58–64. https://doi.org/10.1016/j.domaniend.2013.05.004; 23. Ribeiro ES, Bisinotto RS, Lima FS, Greco LF, Morrison A, Kumar A, et al. Plasma anti-Müllerian hormone in adult dairy cows and associations with fertility. J Dairy Sci. 2014; 97(11):6888–6900. https://doi.org/10.3168/jds.2014-7908; 24. Souza AH, Carvalho PD, Rozner AE, Vieira LM, Hackbart KS, Bender RW, et al. Relationship between circulating anti-Müllerian hormone (AMH) and superovulatory response of high-producing dairy cows. J Dairy Sci. 2015; 98(1):169–178. https://doi.org/10.3168/jds.2014-8182; 25. Gamarra G, Ponsart C, Lacaze S, Le Guienne B, Humblot P, Deloche M-C, et al. Dietary propylene glycol and in vitro embryo production after ovum pick-up in heifers with different anti-Müllerian hormone profiles. Reprod Fertil Dev. 2015; 27(8):1249–1261. https://doi.org/10.1071/RD14091; 26. Vernnuft A, Schwerhoff M, Viergutz T, Diederich M, Kuwer A. Anti-Muellerian hormone levels in plasma of Holstein-Friesian heifers as a predictive parameter for ovum pick-up and embryo production outcomes. J Reprod Dev. 2015; 61(1):74–79. https://doi.org/10.1262/jrd.2014-091; 27. Baruselli P, Batista E, Ferreira R. Niveles plasmáticos de hormona anti-mülleriana permite la selección de donadoras con alto potencial de producción de embriones. SPERMOVA. 2016; 1(6):1–13. https://doi.org/10.18548/aspe/0003.01; 28. Guerreiro BM, Batista EOS, Vieira LM, Sá Filho MF, Rodrigues CA, Castro Netto A, et al. Plasma anti-mullerian hormone: an endocrine marker for in vitro embryo production from Bos taurus and Bos indicus donors. Domest Anim Endocrinol. 2014; 49:96–104. https://doi.org/10.1016/j.domaniend.2014.07.002; 29. Batista, Vieira LM, Sá Filho MF, Dias EAR, Bayeux BM, Accorsi MF, et al. Ovarian follicular growth suppression by long-term treatment with a GnRH agonist and impact on small follicle number, oocyte yield, and in vitro embryo production in Zebu beef cows. Theriogenology. 2016; 85(9):1680–1687. https://doi.org/10.1016/j.theriogenology.2016.01.023; 30. Batista EOS, Vieira LM, Freitas BG, Guerreiro BM, Carvalho JGS, Mingoti RD, et al. Anti-Mullerian hormone and its relationship to ovulation response and fertility in timed AI Bos indicus heifers. Reprod Domest Anim. 2020; 55(6):753–758. https://doi.org/10.1111/rda.13677; 31. Sanders JO. History and Development of Zebu Cattle in the United States. J Anim Sci. 1980; 50(6):1188–1200. https://doi.org/10.2527/jas1980.5061188x; 32. Jiménez A, Manrique C, Martínez C. Parámetros y valores genéticos para características de composición corporal, área de ojo del lomo y grasa dorsal medidos mediante ultrasonido en la raza. Rev la Fac Med Vet y Zootec. 2010; 57(3):178–190. https://revistas.unal.edu.co/index.php/remevez/article/view/18236/19143; 33. Ireland J, Scheetz D, Jimenez-Krassel F, Themmen A, Ward F, Lonergan P, et al. Antral Follicle Count Reliably Predicts Number of Morphologically Healthy Oocytes and Follicles in Ovaries of Young Adult Cattle1. Biol Reprod. 2008; 79(6):1219–1225. https://doi.org/10.1095/biolreprod.108.071670; 34. Mossa F, Walsh SW, Butler ST, Berry DP, Carter F, Lonergan P, et al. Low numbers of ovarian follicles ≥3mm in diameter are associated with low fertility in dairy cows. J Dairy Sci. 2012; 95(5):2355–2361. https://doi.org/10.3168/jds.2011-4325; 35. Arouche N, Picard J-Y, Monniaux D, Jamin SP, Vigier B, Josso N, et al. The BOC ELISA, a ruminant-specific AMH immunoassay, improves the determination of plasma AMH concentration and its correlation with embryo production in cattle. Theriogenology. 2015; 84(8):1397–1404. https://doi.org/10.1016/j.theriogenology.2015.07.026; 36. Maculan R, Pinto TLC, Moreira GM, Vasconcelos GL de, Sanches JA, Rosa RG, et al. Anti-Müllerian Hormone (AMH), antral follicle count (AFC), external morphometrics and fertility in Tabapuã cows. Anim Reprod Sci. 2018; 189(8):84–92. https://doi.org/10.1016/j.anireprosci.2017.12.011; 37. Jimenez-Krassel F, Scheetz DM, Neuder LM, Ireland JLH, Pursley JR, Smith GW, et al. Concentration of anti-Müllerian hormone in dairy heifers is positively associated with productive herd life. J Dairy Sci. 2015; 98(5):3036–3045. https://doi.org/10.3168/jds.2014-8130; https://revistamvz.unicordoba.edu.co/article/view/2660
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4Academic Journal
المؤلفون: Chacón Jaramillo, Liliana
المصدر: Agrociencias
مصطلحات موضوعية: recuperación de suelos, restauración ecológica, agua de riego, plagas
وصف الملف: application/pdf
Relation: https://ciencia.lasalle.edu.co/edunisalle_agrociencias/3; https://ciencia.lasalle.edu.co/context/edunisalle_agrociencias/article/1002/viewcontent/9789585148956.pdf
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5Academic Journal
المؤلفون: Chacón Jaramillo, Liliana
المصدر: Agrociencias
مصطلحات موضوعية: innovaciones agrícolas, mercadeo cooperativo de productos agrícolas, industria y comercio de la carne, agricultura
وصف الملف: application/pdf
Relation: https://ciencia.lasalle.edu.co/edunisalle_agrociencias/4; https://ciencia.lasalle.edu.co/context/edunisalle_agrociencias/article/1003/viewcontent/9789585136748.pdf
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6Academic Journal
المؤلفون: Gonella Diaza, Ángela María, Atuesta Bustos, Jorge Eduardo, Bernal Ulloa, Sandra Milena, Chacón Jaramillo, Liliana
المصدر: Revista de Investigación Agraria y Ambiental; Vol. 4, Núm. 1 (2013); 65 - 80 ; 2145-6453 ; 2145-6097
مصطلحات موضوعية: biotecnología, desarrollo embrionario, espermatozoides, fertilización, oocitos
وصف الملف: application/pdf
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Reproductive Biomedicine Online, 20(3), 341-349.; Bernal, S., Gonella-Diaza, A.M., Valbuena, D., Mendoza, R., Molina, J. & Chacón, L. (2011). Effect of age and coasting period on oocytes quality and their in vitro development from prepubertal cattle. Revista MVZ Córdoba, 16(2),2499-2506.; Block, J. (2007). Use of insulin-like growth factor-1 to improve post-transfer survival of bovine embryos produced in vitro. Theriogenology, 68, Suppl 1, 49-55.; Block, J., Hansen, P.J., Loureiro, B. & Bonilla, L. (2011). Improving post-transfer survival of bovine embryos produced in vitro: Actions of insulin-like growth factor-1, colony stimulating factor-2 and hyaluronan. Theriogenology, 76 (9), 1602-1609.; Bols, P.E.J. (1997). Transvaginal ovum pick-up in the cow: technical and biological modifications. PhD Thesis. Faculty of Veterinary Medicine, University of Ghent, Belgium, 227p.; Bols, P. (2001). Punction Folicular (Ovum Pick-Up, OPU) en la vaca. En: Palma GA, Editor. Biotecnología de la reproducción, 1ed. (pp.185-224). Buenos Aires: Balcacere.; Brackett, R.G., Bousquet, D., Boice, M.L., Donawick, W.J., Evans, J.F., et al. (1982). Normal development following in vitro fertilization in the cow. Biology of Reproduction, 27, 147-158. 12. Brewis, I.A. & Wong, C.H. (1999). Gamete recognition: sperm proteins that interact with the egg zona pellucida. Reviews of Reproduction, 4(3), 135-142.; Callejas, S. (2001). Fisiología del ciclo estral Bovino. En: Palma GA, Editor. Biotecnología de la reproducción 1ed (pp. 37-59). Buenos Aires: Balcacere.; Callesen, H.T., Greve, T. & Christensen, F. (1987). Ultrasonically guided aspiration of bovine follicular oocytes [Abstract]. Theriogenology, 27(1), 217.; Camargo, L.S.A., Viana, J.H.M., Sá, W.F., Ferreira, A.M., Ramos, A.A., et al. (2006). Factors influencing in vitro embryo production. Animal Reproduction, 3(1), 19-28.; Chang, M.C. (1955). The maturation of rabbit oocytes in the culture and their maturation, activation, fertilization, and subsequent development in the fallopian tubes. Journal of experimental zoology. Part A, Ecological genetics and physiology, 123, 379-386.; Choi, Y.H., Carnevale, E.M., Seidel, G.E. Jr. & Squire, E.L. (2001). Effects of gonadotropins on bovine oocytes matured in TCM-199. Theriogenology, 56(4), 661-70.; Damiani, P., Fissore, R.A., Cibelli, J.B., Long, C.R., Balise, J.J., et al. (1996). Evaluation of developmental competence, nuclear and ooplasmic maturation of calf oocytes. Molecular Reproduction and Development, 45(4), 521-534.; Darzon, A., Labarca, P., Nishigaki, T. & Espinosa, F. (1999). Ion channels in sperm physiology. Physiological Reviews, 79(2), 481-509.; Dellenbach, P., Nisand, I., Moreau, L., Feger, B., Plumere, C., et al. (1984). Transvaginal, sonographically controlled ovarian follicle puncture for egg retrieval. The Lancet, 323(8392), 1467.; Duby, R.T., Damiani, P., Looney, C.R., Fissore, R.S. & Robl, J.M. (1996). Prepubertal calves as oocyte donors: promises and problems. Theriogenology, 49(1): 1077-1082.; Eddy, E.M. (2006). The Spermatozoon. En: Jimmy D. Neill et.al. (eds.) 23. K´nobil and Neill’s Physiology of Reproduction. 3rd Edition (pp. 3-54). USA: Elsevier academic press.; Fair, T. (2003). Follicular oocyte growth and acquisition of developmental competence. Animal Reproduction Science, 78(3-4), 203-216.; Fair, T., Carter, F., Park, S., Evans, A.C.O. & Lonergan ,P. (2007). Global gene expression analysis during bovine oocyte in vitro maturation. Theriogenology, 68 Suppl 1, S91–S97.; Fair, T., Hyttel, P. & Greve, T. (1995). Bovine oocyte diameter in relation to maturational competence and transcriptional activity. Molecular Reproduction and Development,42(4), 437-442.; Farin, P.W., Crosier, A.E. & Farin, C.E. (2001). Influence of in vitro systems on embryo survival and fetal development in cattle. Theriogenology, 55(1), 151-170.; Ferreira, E.M., Vireque, A.A., Adona, P.R., Meirelles, F.V., Ferriani, R.A., et al. (2010). Cytoplasmic maturation of bovine oocytes: structural and biochemical modifications and acquisition of developmental competence [fe de erratas en Theriogenology, 73(8),1164]. Theriogenology. 2009, 71(5), 836-848.; Florman, H. & Ducibella, T. (2006). Fertilization in mammals. En: Jimmy D. Neill et.al. (eds.). K´nobil and Neill’s Physiology of Reproduction. 3rd Edition (pp. 55-112). USA: Elsevier academic press.; Galli, C., Duchi, R., Crotti, G., Turini, P., Ponderato, N., et al. (2003). Bovine embryo technologies. Theriogenology, 59, 599-616.; Gleicher, N., Friberg, J., Fullan, N., Giglia, R., Mayden, K., et al. (1983). Egg retrieval for in vitro fertilization by sonographically controlled vaginal culdocentesis. The Lancet, 322 (8348), 508-509.; Gonçalves, P.B.D., Visintin, J.A., Oliveira, M.A.L, Montagner, M.M. & Costa, L.F.S. (2001). Produção in vitro de Embriões. En: Gonçalves, P.B.D., Figueiredo, J.R., Freitas, V.J.F. (Ed.), Biotecnias aplicadas á reprodução animal (pp. 195-226). São Paulo: Livraria Varela. 33. Gordon I. (1994). Oocyte recovery and maturation. En: Laboratory production of cattle embryos (pp 30-142). Wallingford, UK: CAB International.; Gordon I. (1994a). Capacitating Bovine Sperm. En: Laboratory production of cattle embryos 2nd Edition (pp 158-176). Wallingford, UK: CAB International.; Guimarães, P. (2012). Genética Básica para Veterinaria. 3a Edición. São Paulo: Roca.; Haccard, O. & Jessus, C. (2006). Oocyte maturation, Mos and cyclins a matter of synthesis: two functionally redundant ways to induce meiotic maturation. Cell cycle, 5 (11), 1152-1159.; Hamatani, T., Yamada, M., Akutsu, H., Kuji, N., Mochimaru, Y., et al. (2008). What can we learn from gene expression profiling of mouse oocytes? Reproduction, 135, 581–592.; Hasler, J.F. (1993). Applications of in vitro fertilization technology to infertile dairy cows. En: Proceedings of the 12th Annual Convention American Embryo Transfer Association; Portland, Maine, USA.; Holm, P., Booth, P.J., Schmidt, M.H., Greve, T. & Callesen, H. (1999). High bovine blastocyst development in a static in vitro production system using SOFaa medium supplemented with sodium citrate and myo-inositol with or without serum-proteins. Theriogenology, 52(4), 683-700.; Hu, X.Q., Ji, S.Y., Li, Y.C., Fan, C.H., Cai, H., et al. (2010). Acrosome formation-associated factor is involved in fertilization. Fertility and Sterility, 93(5),1482-1492.; Karja, N.W., Medvedev, S., Onishi, A., Fuchimoto, D., Iwamoto, M., et al. (2004). Effect of replacement of pyruvate/lactate in culture medium with glucose on preimplantation development of porcine embryos in vitro. Journal of Reproduction and Development, 50(5), 587-592.; Keefer, C.L., Stice, S.L. & Dobrinsky, J. (1993). Effect of follicle-stimulating hormone and luteinizing hormone during bovine in vitro maturation on development following in vitro fertilization and nuclear transfer. Molecular Reproduction and Development, 36(4),469-74.; Krisher, R.L. (2004). The effect of oocyte quality on development. Journal of Animal Science, 82, E-Suppl, E14-E23 44. Latham, K.E., Akutsu, H., Patel, B. & Yanagimachi, R. (2002). Comparison of gene expression during preimplantation development between diploid and haploid mouse embryos. Biology of Reproduction, 67(2), 386-392.; Ledda, S., Bogliolo, L., Leoni, G. & Naitana, S. (1999). Production and Lambing rate of blastocysts derived from in vitro matured oocytes after gonadotropin treatment of prepubertal ewes. Journal of Animal Science, 77(8), 2234-2239.; Leibfried, L. & First, N.L. (1979). Characterization of bovine follicular oocytes and their ability to mature in vitro. Journal of Animal Science, 48(1), 76-86.; Leibfried-Rutledge, M.L. (1999). Factors determining competence of in vitro produced cattle embryos. Theriogenology, 51(2), 473-485.; Leidenfrost, S., Boelhauve, M., Reichenbach, M., Güngör, T., Reichenbach, H.D., et al. (2011). Cell arrest and cell death in mammalian preimplantation development: lessons from the bovine model. PLoS One, 6(7), e22121.; Leivas, F.G., Brum, D.S., Fialho, S.S., Saliba, W.P., Alvim, M.T.T., et al. (2011). Fetal calf serum enhances in vitro production of Bos taurus indicus embryos. Theriogenology, 75(3), 429–433.; Lim, K.T., Jang, G., Ko, K.H., Lee, W.W., Park, H.J., et al. (2007). Improved in vitro bovine embryo development and increased efficiency in producing viable calves using defined media. Theriogenology, 67(2), 293-302.; Lonergan, P., Monaghan, P., Rizos, D., Boland, M.P. & Gordon, I. (1994). Effect of follicle size on bovine oocyte quality and developmental competence following maturation, fertilization, and culture in vitro. Molecular Reproduction and Development, 37(1), 48-53.; Looney, C.R., Lindsey, B.R., Gonseth, C.L. & Johnson, D.L. (1994). Commercial aspects of oocyte retrieval and in vitro fertilization (IVF) for embryo production in problem cows. Theriogenology, 41 (1), 67-72.; Lussier, J.G., Matton, P. & Dufour, J.J. (1987). Growth rates of follicles in the ovary of the cow. Journal of Reproduction and Fertility, 81(2), 301-307.; Mamo, S., Carter, F., Lonergan, P., Leal, C.L.V., Al Naib, A., et al. (2011). Sequential analysis of global gene expression profiles in immature and in vitro matured bovine oocytes: potential molecular markers of oocyte maturation. BMC Genomics, 12, 151.; Mayorga, L.S., Tomes, C.N. & Belmonte, S.A. (2007). Acrosomal exocytosis, a special type of regulated secretion. IUBMB Life, 59(4-5), 286-292.; Miller, G.F., Gliedt, D.W., Rakes, J.M. & Rorie, R.W. (1994). Addition of penicillamine, hypotaurine and epinephrine (PHE) or bovine oviductal epithelial cells (BOEC) alone or in combination to bovine in vitro fertilization medium increases the subsequent embryo cleavage rate. Theriogenology, 41(3), 689-696; Miller, J.G.O. & Schultz, G.A. (1987). Amino acid content of preimplantation rabbit embryos and fluids of the reproductive tract. Biology of Reproduction, 36(1), 125-129.; Oropeza, A., Wrenzycki, C., Herrmann, D., Hadeler, K.G. & Niemann, H. (2004). Improvement of the developmental capacity of oocytes from prepubertal cattle by intraovarian Insulin-Like Growth Factor-I application. Biology of Reproduction, 70(6), 1634-1643.; Oyamada, T. & Fukui, Y. (2004). Oxygen tension and medium supplements for in vitro maturation of bovine oocytes cultured individually in a chemically defined medium. Journal of Reproduction and Development, 50(1), 107-117.; Palma GA. (2001). Producción in vitro de embriones bovinos. En: Palma GA, Editor. Biotecnología de la reproducción, 1ed (pp. 225-294). Buenos Aires: Balcacere.; Parrish, J.J., Foote, R.H. (1987). Quantification of bovine sperm separation by a swim-up method. Relationship to sperm motility, integrity of acrosomes, sperm migration in polyacrylamide gel and fertility. Journal of Andrology, 8(4), 259-266.; Parrish, J.J., Krogenaes, A. & Susko-Parrish, J.L. (1995). Effect of bovine sperm separation by either swimup or Percoll method on success of in vitro fertilization and early embryonic development. Theriogenology, 44(6),859-69.; Peippo, J., Machaty, Z. & Peter, A. (2011). Terminologies for the pre-attachment bovine embryo. Theriogenology, 76(8), 1373-1379.; Pieterse, M.C., Kappen, K.A., Kruip, T.A., Taverne, M.A. (1988). Aspiration of bovine oocytes during transvaginal ultrasound scanning of the ovaries. Theriogenology, 30(4), 751-762.; Pieterse, M.C, Vos, P.L., Kruip, A.M., Willemse, A.H., Taverne, M.A. (1991). Characteristics of bovine estrous cycles during repeated transvaginal ultrasound-guided puncturing of follicles for ovum pick-up. Theriogenology, 35(2), 401-413.; Pontes, J.H., Melo Sterza, F.A., Basso, A.C., Ferreira, C.R., Sanches, B.V., et al. (2011). Ovum pick up, in vitro embryo production, and pregnancy rates from a largescale commercial program using Nelore cattle (Bosindicus) donors. Theriogenology, 75(9), 1640–1646.; Ptak, G., Loi, P., Dattena, M., Tischner, M. & Cappai, P. (1999). Offspring from one-month-old lambs: studies on the developmental capability of prepubertal oocytes. Biology of Reproduction, 61(6), 1568-1574.; Räty, M., Ketoja, E., Pitkänen, T., Ahola, V., Kananen, K., et al. (2011). In vitro maturation supplements affect developmental competence of bovine cumulus-oocyte complexes and embryo quality after vitrification. Cryobiology, 63(3), 245-255.; Rizos, D., Burke, L., Duffy, P., Wade, M., Mee, J.F., et al. (2005). Comparisons between nulliparous heifers and cows as oocyte donors for embryo production in vitro. Theriogenology, 63(3), 939-949.; Rizos, D., Gutiérrez-Adán, A. & Pérez-Garnelo, S., De La Fuente, J., Boland, M.P., et al. (2003). Bovine embryo culture in the presence or absence of serum: implications for blastocyst development, cryotolerance, and messenger RNA expression. Biology of Reproduction, 68(1), 236-243.; Rizos, D., Lonergan, P., Boland, M.P., Arroyo-García, R., Pintado, B., et al. (2002). Analysis of differential messenger RNA expression between bovine blastocysts produced in different culture systems: implications for blastocyst quality. Biology of Reproduction, 66(3), 589-595.; Rodriguez-Martinez, H. (2012). Assisted Reproductive Techniques for Cattle Breeding in Developing Countries: A Critical Appraisal of Their Value and Limitations. Reproduction in Domestic Animals. 47 Suppl(1), 21-26.; Salamone, D.F., Damiani, P., Fissore, R.A., Robl, J.M. & Duby, R.T. (2001). Biochemical and developmental evidence that ooplasmic maturation of prepubertal bovine oocytes is compromised. Biology of Reproduction, 64(6), 1761-1768.; Samardzija, M., Karadjole, M., Matkovic, M., Cergolj, M., Getz, I., et al. (2006). A comparison of BoviPure and Percoll on bull sperm separation protocols for IVF. Animal Reproduction Science, 91(3-4),237-247.; Sirard, M.A. (2011). Follicle environment and quality of in vitro matured oocytes. Journal of Assisted Reproduction and Genetics, 28(6), 483–488.; Sirard, M.A. & Lambert, R.D. (1985). In vitro fertilization of follicular oocytes obtained by laparoscopy. Biology of Reproduction, 33(2): 487-494.; Sirard, M.A., Lambert, R.D., Beland, R. & Bernard, C. (1985). The effects of repeated laparoscopic surgery used for ovarian examination and follicular aspiration in cows. Animal Reproduction Science, 9(1), 25-30.; Sirard, M.A., Lambert, R.D., Guay, P., Menard, D.P. & Bedoya, M. (1985a). In vivo and in vitro development of in vitro fertilized bovine follicular oocytes obtained by laparoscopy [Abstract]. Theriogenology, 23(1), 230.; Smeaton, DC., Harris, B.L., Xu, Z.Z. & Vivanco, W.H. (2003). Factors affecting commercial application of embryo technologies in New Zealand: a modelling approach. Theriogenology 59(2): 617-634.; Somfai, T., Bodó, S., Nagy, S., Papp, A.B., Iváncsics, J., et al. (2002). Effect of swim up and Percoll treatment on viability and acrosome integrity of frozenthawed bull spermatozoa. Reproduction in Domestic Animals, 37(5),285-290.; Takahashi, Y. & First, N.L. (1992). In vitro development of bovine one-cell embryos: Influence of glucose, lactate, pyruvate, amino acids and vitamins. Theriogenology, 37(5), 963-978.; Taneja, M., Bols, P., Van De Velde, A., Ju, J.C., Schreiber, D., et al. (2000). Developmental competence of juvenile calf oocytes in vitro and in vivo: influence of donor animal variation and repeated gonadotropin stimulation. Biology of Reproduction, 62(1), 206-213.; Thompson, J.G. (1996). Defining the requirements for bovine embryo culture. Theriogenology, 45(1), 27-40.; Thompson,J.G., Allen, N.W., McGowan, L.T., Bell, A.C. & Lambert, M.G. (1998). Effect of delayed supplementation of fetal calf serum to culture medium on bovine embryo development in vitro and following transfer. Theriogenology, 49(6), 1239-1249.; Thompson, J.G. & Peterson, A.J. (2000). Bovine embryo culture in vitro: new developments and post-transfer consequences. Human Reproduction. 15, Suppl (5), 59-67.; Viana, J.H.M. & Bols, P.E.J. (2005). Biologic variables associated with Cummulus oocyte Complex recovery using follicular aspiration. Acta Scientiae Veterinariae, 33 Suppl (1), 1-4.; Viana, K.S., Caldas-Bussiere, M.C., Matta, S.G.C., Paes De Carvalho, C.S. & Faes, M.R., et al. (2005). Effect of nitric oxide addiction in bovine oocyte during maturation in vitro. Acta Scientiae Veterinariae,33 Suppl (1), 169.; Wirtu, G., Pope, C.E., Damiani, P., Miller, F., Dresser, B.L., et al. (2003). Development of in-vitro-derived bovine embryos in protein-free media: effects of amino acids, glucose, pyruvate, lactate, phosphate and osmotic pressure. Reproduction Fertility and Development, 15(7-8), 439-449.; Wrenzycki, C., Herrmann, D., Lucas-Hahn, A., Lemme, E., Korsawe, K., et al.(2004). Gene expression patterns in in vitro-produced and somatic nuclear transfer-derived preimplantation bovine embryos: relationship to the large offspring syndrome? Animal Reproduction Science. 82-83, 593–603.; http://hemeroteca.unad.edu.co/index.php/riaa/article/view/1967; https://repository.unad.edu.co/handle/10596/29358
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7Academic Journal
المؤلفون: Andrade Souza, Fernando, Matias Martins, Jorge André, Perez Osorio, Jair, do Vale Filho, Vicente Ribeiro, de Andrade, Venicio José, D`Oliveira-Sousa, Abisai, do Carmo Patrício, Felipe Albano, Chacón Jaramillo, Liliana
المصدر: Revista Medicina Veterinaria; Núm. 20 (2010): julio-diciembre; 9-25
وصف الملف: application/pdf
Relation: http://revistas.lasalle.edu.co/index.php/mv/article/view/578/498; http://revistas.lasalle.edu.co/index.php/mv/article/view/578; http://hdl.handle.net/10185/19297
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8Academic Journal
المؤلفون: Pérez Osorio, Jair, Chacón Jaramillo, Liliana, Otero Arroyo, Rafael José, Cardona Álvarez, José, Andrade Souza, Fernando
المصدر: Revista Medicina Veterinaria; Núm. 27 (2014): enero-junio; 73-87
مصطلحات موضوعية: Bos indicus, maduración sexual, testículo, toro, Sexual maturity, testicle, bull, Amadurecimento sexual, touro
وصف الملف: application/pdf
Relation: http://revistas.lasalle.edu.co/index.php/mv/article/view/3025/2493; Corrëa B, Vale Filho VR, Correa GSS, Andrade VJ, Silva MA, Dias JC. Características do sêmen e maturidade sexual de touros jovens da raça Tabapuã (Bostaurus indicus) em diferentes manejos alimentares. Arq Bras Med Vet Zootec. 2006; 58(5):823-30.; Devkota B, Koseki T, Matsui M, Sasaki M, Kaneko E, Miyamoto A, Amaya-Montoya C, Miyake I. Relationships among age, body weight, scrotal circumference, semen quality and peripheral testosterone and estradiol concentrations in pubertal and postpubertal Holstein bulls. J Vet Med Sci. 2008; 70(1):119-21.; Silva AEDF, Dode MAN, Unanian MM. Capacidade reproductiva do touro de corte: funções, anormalidades e outros fatores que a influenciam. Campo Grande, Brasil: EMBRAPA-CNPGC; 1993.; Coulter GH, Rounsaville TR, Foote, RH. Heritability of testicular size and consistency in Holstein bulls. J Anim Sci. 1976; 43(1):9-12.; Silva MR, Pedrosa VB, Silva JCB, Eler JD, Guimarães JD, Albuquerque LG. Testicular traits as selection criteria for young Nellore bulls. J Anim Sci. 2011; 89(7):2061-67.; Bergmann AG, Quirino CR, Vale Filho VR, Andrade VJ, Fonseca CG. Herdabilidades e correlações genéticas entre medições testiculares e características espermáticas em touros Nelore. Arch Latinoam Prod Anim. 1997; 5(Suppl 1):473-5.; Dias LT, Faro LEl, Albuquerque G. Estimativas de herdabilidade para circunferência escrotal de animais da raça Nelore. R Bras Zootec. 2003; 32(Suppl 2):1878-82.; Boligon AA, Silva JAV, Sesana RC, Sesana JC, Junqueira JB, Albuquerque LG. Estimation of genetic parameters for body weights, scrotal circumference, and testicular volume measured at different ages in Nellore cattle. J Anim Sci. 2010; 88:1215-9.; Gressler SL, Bergmann JAG, Pereira CS, Penna VM, Preira JCC, Gressler MGM. Estudo das associações genéticas entre perímetro escrotal e características reprodutivas nas fêmeas Nelore. Rev Bras Zootec. 2000; 29(2):427-37.; Lunstra DD, Ford JJ, Echterkamp SE. Puberty in beef bulls: Hormone concentration, growth, testicular development, sperm production and sexual aggressiveness in bulls of different breeds. J Anim Sci. 1978; 46(4):1054-62.; Aman R. Reproductive capacity of dairy bulls: IV. Spermatogenesis and testicular germ cell degeneration. Am J Anat. 1962; 110(1):69-78.; Kastelic JP, Cook RB, Pierson RA, Coulter GH. Relationships among scrotal and testicular characteristics, sperm production, and seminal quality in 129 beef bulls. Can J Vet Res. 2001; 65(2):111-5.; Palasz AT, Cates WF, Barth AD, Mapletoft RJ. The relationship between scrotal circumference and quantitative testicular traits. Theriogenology. 1994; 42(4):715-26.; Hahn J, Foote RH, Seidel GE. Quality and freezability of semen from growing and aged dairy bulls. J Dairy Sci. 1969; 52(11):1843-8.; Bertschinger HJ, Ehrt WJ, Wood R. Beer bull performance, scrotal circumference and semen quality. En: International Congress on Animal Reproduction. The Hague; 1992.; Trocóniz JF, Beltrán J, Bastidas H, Larreal H, Bastidas P. Testicular development, body weight changes, puberty and semen traits of growing. Theriogenology. 1991; 35(4):815-26.; Torres-Júnior JRS, Henry M. Sexual development of Guzerat (Bos taurus indicus) bulls raised in a tropical region. Anim Reprod. 2005; 2(2):114-21.; Henry M, Carmo AS, Osorio JP. Avaliação da biometria e morfologia testicular em machos Guzerá criados em região de cerrado a pasto com suplementação volumosa na seca. En Congresso Brasileiro de Reprodição Animal, Curitiba, Brasil; 2007.; CBRA. Manual para exame andrológico e avaliação de sêmen animal. 2a ed. Belo Horizonte: Colégio Brasileiro de Reprodução Animal; 1998. p. 49.; Hancock JL. The morphology of boar spermatozoa. J R Microsc Soc. 1957; 76(3):84-97.; Garcia JM, Pinheiro LEL, Okuda HT. Body development and semen phisical and morphological characteristics of young Guzera bulls. Arch Vet. 1987; 3:47-53.; SAS, SAS/STAT User's Guide. Statistical Analysis System Institute, USA: Inc, Cary, NC; 1996.; Sampaio IBM. Estatística aplicada à experimentação animal. 2a ed. Belo Horizonte: FEP-MVZ; 2002. p. 265.; Gilardi SGT, Pinho TG, Martins CB. Perímetro escrotal características do sêmen de touros Nelore aos 18 meses de idade. Rev Bras Cienc Vet. 2001; 8:13-15.; Wolf FR, Almquist JO, Hale EB. Prepuberal behavior and pubertal characteristics of beef bulls on high nutrient allowance. J Anim Sci. 1965; 24:761-5.; Chase JC, Chenoweth CC, Larsem RE, Olson TA, Hammond AC, Menchaca MA, Randel RD. Growth and reproductive development from weaning through 20 months of age among breeds of bulls in subtropical Florida. Theriogenology. 1997; 47(3):723-45.; Vale-Filho VR, Fonseca VO, Freneau GE. Desenvolvimento testicular e maturidade sexual em bovinos. Cad Tec Esc Vet UFMG. 1997; 8:63-75.; Cartaxo WO, Peña-Alfaro CE, Bacalhaua A, Albuquerque RPF, Silva MAV, Azevedo Neto J, Bakke AO, Souza NL, Torres LL, Guedes PL, Guedes PL. Parâmetros seminais e perímetro escrotalde touros jovens da raça Guzerá criados no Estado da Paraíba. Rev Bras Reprod Anim. 2001; 25:214-5.; Torres Júnior JR, Henry M. Sexual development of Guzerat (Bos Taurus indicus) bulls raised in a tropical region. Anim Reprod. 2005; 2(2):114-21.; Evans ACO, Davies FJ, Nasser LF, Bowman P, Rawlings NC. Differences in early patterns of gonadotrophin secretion between early and late maturing bulls, and changes in semen characteristics at puberty. Theriogenology. 1995; 43(3):569-78.; Jiménez-Severiano H. Sexual development of dairy bulls in the Mexican tropics. Theriogenology. 2002; 58(5):921-32.; Taylor JF, Bean B, Marshall CE, Sullivan JJ. Genetic and environmental components of semen production traits of artificial insemination Holstein bulls. J Dairy Sci. 1985; 68(10):2703-22.; Quirino CR, Bergmann JAG, Vale-Filho VR, Andrade VJ, Pereira JC. Evaluation of four mathematical functions to describe scrotal circumference maturation in Nelore bulls. Theriogenology. 1999; 52(1):25-34.; Schmidth-Hebbel J, Toniollo GH, Leite FG, Ferraudo AS, Perecin D, Figuereiredo LA, Razook AG, Ruggieri AC, Mercadante ME, Santos JN, Gonçalves JNS. Desenvolvimento reprodutivo e alterações do peso corporal em touros jovens das raças Gir, guzerá, Nelore (Bos taurus indicus) e Caracu (Bos taurus taurus) I. Biometria testicular. Ars Vet. 2000; 16:178-87.; Freneau GE, Vale-Filho VR, Marques Jr AP, Maria AP. Puberdade em touros Nelore criados a pasto no Brasil: características corporais, testiculares, seminais e índice de capacidade andrológica por pontos (ICAP). Arq Bras Med Vet Zootec. 2006; 58(6):1107-15.; Caballero J, Frenette G, Sul R. Post testicular sperm maturational changes in the bull: Important role of the epididymosomes and prostasomes. Vet Med Int. 2011; Oct,:ID 757194.; Rawlins N, Evans ACO, Chandolia RK, Bagu ET. Sexual maturation in the bull. Reprod Domest Anim. 2008; 43(suppl. 2):295-301.; Boockfor FR, Barnes MA, Dickey JF. Effects of unilateral castration and unilateral cryptorchidism of the Holstein bull on in vitro Leydig cell response. J Anim Sci. 1983; 56(6):1386-92.; Griffin, JE. Male reproductive function. En: Textbook of endocrine physiology. Nueva York: Oxford University Press; 1988. p. 165-85.; Brito LF. Nutrition, metabolic hormones, and sexual development in bulls. Saskatoon: 179f Doctorado; 2006.; Brito LF, Silva AE, Unanian MM, Dode MA, Barbosa R. Sexual development in early and late maturing Bos indicus and Bos indicus x Bos taurus. Theriogenology. 2004; 62(7):1198-217.; Johanisson E, Campna A, Luthi R, Agostini AD. Evaluation of round cells in semen analysis: a comparative study. Hum Reprod Update. 2000; 6(4):404-12.; Hess RA, Hughes BL, Thurston RJ. Frequency and structure of macrophages and abnormal sperm cells in guinea fowl semen. Reprod Nutr Dev. 1986; 26(1A):39-51.; http://revistas.lasalle.edu.co/index.php/mv/article/view/3025; http://hdl.handle.net/10185/19209
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9Academic Journal
المؤلفون: Vargas Reyes, José N., Chacón Jaramillo, Liliana
المصدر: Scopus Unisalle
مصطلحات موضوعية: Ethylene glycol, Expansion, Hatching, Slow freezing
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10Academic Journal
المصدر: Revista Ciencia Animal
مصطلحات موضوعية: sistemas de pastoreo, cebú, crecimiento
وصف الملف: application/pdf
Relation: https://ciencia.lasalle.edu.co/ca/vol1/iss9/5; https://ciencia.lasalle.edu.co/context/ca/article/1081/viewcontent/3501_121_8461_1_10_20150628.pdf
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11Academic Journal
المؤلفون: Souza, Fernando A., Pérez Osorio, Jair, Cardona Álvarez, José Alberto, Otero Arroyo, Rafael José, Chacón Jaramillo, Liliana, González Cuello, José Carlos
المصدر: Revista Ciencia Animal
مصطلحات موضوعية: cálcio, reação acrossômica, zona pelúcida
وصف الملف: application/pdf
Relation: https://ciencia.lasalle.edu.co/ca/vol1/iss7/3; https://ciencia.lasalle.edu.co/context/ca/article/1056/viewcontent/2928_121_6524_1_10_20140627.pdf
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12Academic Journal
المؤلفون: Prada Torres, Jorge Andrés, Castro Cruz, Jefferson Abdelo, Ardila Silva, Ariosto, Chacón Jaramillo, Liliana
المصدر: Revista Ciencia Animal
مصطلحات موضوعية: Brahman, inseminación artificial a tiempo fijo (IATF), progesterona, prostaglandina, Agriculture, Agronomy and Crop Sciences, Animal Sciences, Veterinary Medicine
وصف الملف: application/pdf
Relation: https://ciencia.lasalle.edu.co/ca/vol1/iss6/12; https://ciencia.lasalle.edu.co/context/ca/article/1075/viewcontent/2651_121_5626_1_10_20131206.pdf
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13Academic Journal
المؤلفون: Gonella Diaza, Ángela María, Atuesta Bustos, Jorge Eduardo, Bernal Ulloa, Sandra Milena, Chacón Jaramillo, Liliana
مصطلحات موضوعية: Biotecnología, Espermatozoides, Oocitos, Desarrollo Embrionario, Biotechnology, Embryonic develop- ment, Spermatozoids, Fertilization, Oocytes
وصف الملف: application/pdf
Relation: Revista de Investigación Agraria y Ambiental.-- Vol. 4. No.1. (Ene. - Jun., 2013). -- páginas 65-80; Diaza, A. M. G., Bustos, J. E. A., Ulloa, S. M. B., & Jaramillo, L. C. (2013). Overview of the production of bovine embryos in vitro/Generalidades de la produccion de embriones bovinos in vitro/Panoramica da producao de embrioes bovinos in vitro. Revista de Investigacion Agraria y Ambiental, 4(1), 65.; https://dialnet.unirioja.es/servlet/articulo?codigo=6285691
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14Academic Journal
المؤلفون: Santana do Carmo, Adriana, Pérez Osorio, Jair, Fernandes Mendonça, Luiza, Do Lago, Luiz Alberto, Henry, Marc, Chacón Jaramillo, Liliana
المصدر: Revista Ciencia Animal
مصطلحات موضوعية: bovino, guzerat, pubertad, testículo, ultrasonografía
وصف الملف: application/pdf
Relation: https://ciencia.lasalle.edu.co/ca/vol1/iss5/5; https://ciencia.lasalle.edu.co/context/ca/article/1048/viewcontent/1318_121_2551_1_10_20121203.pdf
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15eBook
المؤلفون: Chacón Jaramillo, Liliana
Resource Type: eBook.
الموضوعات: Irrigation water--Research--Colombia, Reclamation of land--Research--Colombia, Restoration ecology--Research--Colombia
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16eBook
المؤلفون: Chacón Jaramillo, Liliana
Resource Type: eBook.
Categories: TECHNOLOGY & ENGINEERING / General
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17Academic Journal
Alternate Title: Evaluation of environmental and genomic factors associated to fertility traits of elite Brahman bulls in the Colombian Orinoquia. (English)
المؤلفون: Torres Leyva, Guillermo Andrés, Chacón Jaramillo, Liliana, Ardila Silva, Ariosto, Burgos-Paz, William
المصدر: Revista de Investigaciones Veterinarias del Peru; 2022, Vol. 33 Issue 1, p1-16, 16p
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18Academic Journal
المؤلفون: Riveros Pinilla, Diego A., Marin Cossio, Laura Cristina, Parra Arango, Jorge L., Peña Joya, Miguel, Chacón Jaramillo, Liliana, Góngora Orjuela, Agustín
المصدر: Revista MVZ Córdoba, ISSN 1909-0544, Vol. 23, 2018
وصف الملف: application/pdf
Relation: https://dialnet.unirioja.es/servlet/oaiart?codigo=8286171; (Revista) ISSN 1909-0544
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19
المؤلفون: Vargas Reyes, José N, Chacón Jaramillo, Liliana
المصدر: Revista Colombiana de Ciencias Pecuarias, Volume: 29, Issue: 2, Pages: 130-137, Published: APR 2016
مصطلحات موضوعية: congelación lenta, expansion, etilenglicol, expansão, etilenoglicol, eclosión, hatching, expansión, congelamento lento, eclosão, ethylene glycol, slow freezing
وصف الملف: text/html
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20Academic Journal
المؤلفون: Vargas Reyes, José N, Chacón Jaramillo, Liliana
المصدر: Revista Colombiana de Ciencias Pecuarias; Vol. 29 No. 2 (2016): April-June; 130-137 ; Revista Colombiana de Ciencias Pecuarias; Vol. 29 Núm. 2 (2016): April-June; 130-137 ; Revista Colombiana de Ciencias Pecuarias; v. 29 n. 2 (2016): April-June; 130-137 ; 2256-2958 ; 0120-0690
مصطلحات موضوعية: ethylene glycol, expansion, hatching, slow freezing, congelación lenta, eclosión, etilenglicol, expansión, congelamento lento, eclosão, etilenoglicol, expansão
وصف الملف: application/pdf; text/html