Maturação nuclear in vitro de ovócitos bovinos selecionados pelo método azul cresil brilhante
- Autores:
-
Otero A, Rafael
Da Costa P, Eduardo
Pereira M, Emílio
- Tipo de recurso:
- Article of journal
- Fecha de publicación:
- 2017
- Institución:
- Universidad de Sucre
- Repositorio:
- Repositorio Unisucre
- Idioma:
- spa
- OAI Identifier:
- oai:repositorio.unisucre.edu.co:001/1550
- Acceso en línea:
- https://repositorio.unisucre.edu.co/handle/001/1550
https://doi.org/10.24188/recia.v9.n2.2017.617
- Palabra clave:
- Ovocytes
Brilliant Cresyl Blue
In vitro maturation.
Ovócitos
Azul cresil brilhante
Maturação in vitro.
- Rights
- openAccess
- License
- https://creativecommons.org/licenses/by-nc-sa/4.0/
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dc.title.spa.fl_str_mv |
Maturação nuclear in vitro de ovócitos bovinos selecionados pelo método azul cresil brilhante |
dc.title.translated.eng.fl_str_mv |
In vitro nuclear maturation of bovine oocytes selected by the brilliant cresyl blue method |
title |
Maturação nuclear in vitro de ovócitos bovinos selecionados pelo método azul cresil brilhante |
spellingShingle |
Maturação nuclear in vitro de ovócitos bovinos selecionados pelo método azul cresil brilhante Ovocytes Brilliant Cresyl Blue In vitro maturation. Ovócitos Azul cresil brilhante Maturação in vitro. |
title_short |
Maturação nuclear in vitro de ovócitos bovinos selecionados pelo método azul cresil brilhante |
title_full |
Maturação nuclear in vitro de ovócitos bovinos selecionados pelo método azul cresil brilhante |
title_fullStr |
Maturação nuclear in vitro de ovócitos bovinos selecionados pelo método azul cresil brilhante |
title_full_unstemmed |
Maturação nuclear in vitro de ovócitos bovinos selecionados pelo método azul cresil brilhante |
title_sort |
Maturação nuclear in vitro de ovócitos bovinos selecionados pelo método azul cresil brilhante |
dc.creator.fl_str_mv |
Otero A, Rafael Da Costa P, Eduardo Pereira M, Emílio |
dc.contributor.author.spa.fl_str_mv |
Otero A, Rafael Da Costa P, Eduardo Pereira M, Emílio |
dc.subject.eng.fl_str_mv |
Ovocytes Brilliant Cresyl Blue In vitro maturation. |
topic |
Ovocytes Brilliant Cresyl Blue In vitro maturation. Ovócitos Azul cresil brilhante Maturação in vitro. |
dc.subject.spa.fl_str_mv |
Ovócitos Azul cresil brilhante Maturação in vitro. |
publishDate |
2017 |
dc.date.accessioned.none.fl_str_mv |
2017-12-01 00:00:00 2022-07-01T17:15:59Z |
dc.date.available.none.fl_str_mv |
2017-12-01 00:00:00 2022-07-01T17:15:59Z |
dc.date.issued.none.fl_str_mv |
2017-12-01 |
dc.type.spa.fl_str_mv |
Artículo de revista |
dc.type.eng.fl_str_mv |
Journal article |
dc.type.coar.fl_str_mv |
http://purl.org/coar/resource_type/c_2df8fbb1 |
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info:eu-repo/semantics/article |
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dc.type.content.spa.fl_str_mv |
Text |
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publishedVersion |
dc.identifier.uri.none.fl_str_mv |
https://repositorio.unisucre.edu.co/handle/001/1550 |
dc.identifier.doi.none.fl_str_mv |
10.24188/recia.v9.n2.2017.617 |
dc.identifier.eissn.none.fl_str_mv |
2027-4297 |
dc.identifier.url.none.fl_str_mv |
https://doi.org/10.24188/recia.v9.n2.2017.617 |
url |
https://repositorio.unisucre.edu.co/handle/001/1550 https://doi.org/10.24188/recia.v9.n2.2017.617 |
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10.24188/recia.v9.n2.2017.617 2027-4297 |
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spa |
language |
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dc.relation.references.spa.fl_str_mv |
ALM, H.; TORNER,H.; LÖHRKE VIERGUTZ, GHONEIM.I.M.; KANITZ, W. 2005. Bovine blastocyst development rate in vitro is influenced by selection of oocytes by brilliant cresyl blue staining before IVM as indicator for glucose-6-phosphate dehydrogenase activity. Theriogenology 63:2194-2205. ANGUITA, B.; JIMENEZ-MACEDO, A.R.; IZQUIERDO, D.; MOGAS, T.; PARAMIO,M.T. 2007. Effect of oocytes diameter on meiotic competence, embryo development, p34(cdc2) expression and MPF activity in prepubertal goat oocytes. Theriogenology 67:526-536. BHOJWANI, S.; ALM, H.; TORNER, H.; KANITZ, W.; POEHLAND, R. 2007. Selection of developmentally competent oocytes through brilliant cresyl blue stain enhances blastocyst development rate after bovine nuclear. Theriogenology 67:341–345. BLONDIN, P. 2017. Logistics of large scale commercial IVF embryo production. Reproduction, Fertility and Development, 29: 32–36 BOLS, P.E.J.; JORSSEN, E.P.A.; GOOVAERTS, I.G.F.; LANGBEEN, A.; LEROY, J.L.M.R. 2012. High throughput non-invasive oocyte quality assessment: the search continues. Animal Reproduction. 9:420-425. BUDNA, J.; CHACHU?A, A.; KA?MIERCZAK, D.; RYBSKA, M.; CIESIÓ?KA, S.; BRYJA, A.; KRANC, W.; BORYS, S.; ?OK, A.; BUKOWSKA, D.; ANTOSIK, P.; BRUSKA, M.; BRÜSSOW, K.P.; NOWICKI, M.; ZABEL, M.; KEMPISTY, B. 2017. Morphogenesis-related gene-expression profile in porcine oocytes before and after in vitro maturation. Zygote. 25(3):331-340. CASTANEDA, C. A. et al. 2013. Lipid content, active mitochondria and brilliant cresyl blue staining in bovine oocytes. Theriogenology, 79 (3): 417-422. ISSN 1879-3231 CETICA, P.; PINTOS, L.; DALVIT, G.; BECONI, M. 2002. Activity of key enzymes involved in glucose and triglyceride catabolism during bovine oocyte maturation in vitro. Reproduction 124: 675-681. CHRISTMANN, L.; JUNG, T.; MOOR, R.M. 1994. MPF components and meiotic competence in growing pig oocytes. Molecular Reproduction and Development. 38:85-90. CONZATTI, M. 2013. Utilização do corante azul cresil brilhante como método de seleção de oócitos humanos destinados à maturação in vitro. Salão de Iniciação Científica UFRGS 25:21-25 : UFRGS, Porto Alegre, RS COSTA, E.P.; VALE FILHO, V.R.; NOGUEIRA, J.C. et al. 1997a. Tipos morfológicos de ovócitos de bovinos. Arq. Bras. Med. Vet. Zoo.49:417-424. COSTA, E.P.; VALE FILHO, V.R.; NOGUEIRA, J.C. et al. 1997b. Técnicas para desnudamento rápido de ovócitos de bovinos. Arq. Bras. Med. Vet. Zoo. 49:425-432. COSTA, E.P.; VALE FILHO, V.R.; NOGUEIRA, J.C. et al. 1997c. Técnica para a avaliação do estágio de maturação “in vitro” de ovócitos bovinos. Arq. Bras. Med. Vet. Zootec. 49:433-440. DE LOOS, F.;VAN MAURIK, P.; VAN BENEDEN, T.; KRUIP T. 1992. Structural aspects of bovine oocyte maturation in vitro. Molecular Reproduction Developmental 31:208-14. DENIS, R. 2008. Aspiración folicular in vivo (opu) una nueva perspectiva en el campo de las biotecnologías de la reproducción. Ciencia y tecnologia ganadera (cuba). 2 (2):57-70. DODE, M.A.N.; ADONA, P.R. 2001. Developmental capacity of Bos indicus oocytes after inhibition of meiotic resuption by6-dimethylaminopurine. Animal Reproduction Science 65:171-180. EL SHOURBAGY, S.H.; SPIKINGS, E.C.; FREITAS, M.; ST JOHN, J.C. 2006. Mitochondria directly influence fertilization outcome in pig. Reproduction 131: 233–45. FAIR, T.; HYTTEL, P.; GREVE, T. 1995. Bovine oocyte size in relationship to follicular diameter, maturational competence and rna synthesis. Theriogenology 43:209. GOOVAERTS, I.; LEROY J.L.; JORSSEN, E.P.; BOLS, P.E. 2010. Noninvasive bovine oocyte quality assessment: possibilities of a single oocyte culture. Theriogenology 74(9):1509-1520. ISSN 1879-3231. GANDOLFI, T.A.L.B.; GANDOLFI, F. 2001. The maternal legacy to the embryo: cytoplasmic components and their effects on early development. Theriogenology 55:1255-76. HAWK, H.W.; WALL, R.J. 1994. Improved yields of bovine blastocysts from in vitro-produced oocytes. I. Selection of oocytes and zygotes. Theriogenology, 41:1571-1583. KATSKA-KSIAZKIEWICZ, L.; OPIELA, J.; RYNSKA, B. 2007. Effects of oocyte quality, semen donor and embryo co-culture system on the efficiency of blastocyst production in goats. Theriogenology 68: 736-744. KONRAD, J.L.; SCIAN, R.; GARRIDO, M.J.; TAMINELLI, G.; SANSINENA, M. 2013. Producción de embriones de búfalo por fertilización in vitro luego de la maduración de los ovocitos durante el transporte prolongado. Revista Veterinaria, 24(2): 97-101. LEIVAS, F.G.; BRUM, D.S.; MEZZALIRA, A.; PILLA, L.F.C.; BERNARDI, M.L.; RUBIN, M.I.B.; SILVA, C.A.M. 2004. Transporte de oócitos bovinos em meio de maturação sem controle de atmosfera gasosa. Ciência Rural 34:219-224. MACHATKOVA, M.; KRAUSOVA, K.; JOKESOVA, E.; TOMANEK, M. 2004. Developmental competence of bovine oocytes: effects of follicle size and the phase of follicular wave on in vitro embryo production. Theriogenology 61:329-35. MADISON, V.; AVERY, B.; GREVE, T. 1992. Selection of immature bovine oocytes for developmental potential in vitro. Anim. Reprod. Sci. 27:1-11. MANGIA, F.; EPSTEIN, C.J. 1975. Biochemical studies of growing mouse oocytes: Preparation of oocytes and analysis of glucose-6-phosphate dehydrogenase and lactate dehydrogenase activities. Developmental Biology, 45:211-220. MANJUNATHA, B. et al. 2007. Selection of developmentally competent buffalo oocytes by brilliant cresyl blue staining before IVM. Theriogenology 68(9):1299-304. ISSN 0093-691X. MAPLETOFT, R.J.; HASLER, J.F. 2005. Assisted reproductive Technologies in cattle: a review. Revue Scientifique et Technique 24, 393–403. MIRSHAMSI, S.M. et al. 2013. Combination of oocyte and zygote selection by brilliant cresyl blue (BCB) test enhanced prediction of developmental potential to the blastocyst in cattle. Anim Reprod Sci, 136(4):245-51, ISSN 1873-2232. MONTAGNER, M.M.; GONÇALVES, P.B.D.; NEVES, J.P.; COSTA, L.F.S.; BORTOLOTTO, E.B.; FARIAS, A.M.; STRANIERI, P. 2000. Hepes na produção de embriões bovinos in vitro. Ciência Rural 30:469-474. MOTA, G.B. Desenvolvimento e expressão gênica em oócitos bovinos imaturos selecionados por Azul Cresil Brilhante. 2008. Departamento de Zootecnia – Universidade Federal de Viçosa. Viçosa-MG. 47p. Dissertação (Mestrado em Zootecnia, área de concentração em Reprodução Animal). MOTA, G. et al. 2010. Developmental competence and expression of the MATER and ZAR1 genes in immature bovine oocytes selected by brilliant cresyl blue. Zygote 18(3):209-16. ISSN 1469-8730. OPIELA. J.; KATSKA-KSIAZKIEWICZ, L.; LIPI?SKI, D.; S?OMSKI, R.; BZOWSKA, M.; RY?SKA, B. 2008. Interactions among activity of glucose-6-phosphate dehydrogenase in immature oocytes, expression of apoptosis-related genes Bcl-2 and Bax, and developmental competence following IVP in cattle. Theriogenology 69(5):546-55. OTOI, T.; YAMAMOTOL, K.; KOYAMA, N.; TACHIKAWA, S.; SUZUKI, T. 1997. Bovine oocyte diameter in relation to developmental competence. Theriogenology, 48:769-774. PEREIRA, G. R. et al. 2013. Selection of developmentally competent immature equine oocytes with brilliant cresyl blue stain prior to in vitro maturation with equine growth hormone. Zygote, p. 1-5, Feb. ISSN 1469-8730. PRAXEDES, E.A.; DE LIMA, J.M.P.; DE OLIVEIRA, L.O.A.; DOS SANTOS, F.A.; PEREIRA, A.F.; BEZERRA, M.B. 2014. Aspiração folicular em ovários bovinos da região semiárida: tempo de transporte x qualidade oocitária. Acta Veterinaria Brasilica, 8:85-86. PUJOL, M.; LOPEZ-BEJAR, M.; PARAMIO, M. 2004. Developmental competence of heifer oocytes selected using the brilliant cresyl blue (BCB) test. Theriogenology 61(4):735-44. ROCA, J.; MARTINEZ,E.; VAZQUEZ, J.M.; LUCAS,X. 1998. Selection of immature pig oocytes for homologous in vitro penetration assays with the brilliant cresyl blue test. Reproduction Fertility Development 10:479-485. RODRIGUEZ-GONZALEZ, E. et al. 2002. Selection of prepubertal goat oocytes using the brilliant cresyl blue test. Theriogenology 57(5):1397-409. ISSN 0093-691X. RODRÍGUEZ-GONZÁLEZ, E. et al. 2003 Developmental competence of prepubertal goat oocytes selected with brilliant cresyl blue and matured with cysteamine supplementation. Reprod Nutr Dev 43 (2):179- 87. ISSN 0926-5287. RODRIGUES, B. et al. 2009 Preliminary Study in Immature Canine Oocytes Stained with Brilliant Cresyl Blue and Obtained From Bitches with Low and High Progesterone Serum Profiles. Reproduction in Domestic Animals 44 (2):255-258. ISSN 0936-6768. SAMPAIO, I.B.M. 2002. Estatística aplicada à experimentação animal. Fundação de Ensino e Pesquisa em Medicina Veterinária e Zootecnia. Belo Horizonte, Brasil. SCHWARTZ, J.; SCHNEIDER, M.R.; RODRIGUES, J.L.; REICHENBACH, H. D. 1998. Effect of short-term storage of bovine oocytes in different media and temperatures on the subsequent in vitro embryo development. Theriogenology 49:217. SU, J. et al. 2012. Oocytes selected using BCB staining enhance nuclear reprogramming and the in vivo development of SCNT embryos in cattle. PLoS One 7 (4):36181. ISSN 1932-6203. TABANDEH M.R.; GOLESTANI N.; KAFI M.; HOSSEINI A.; SAEB M.; SARKOOHI P. 2012. Gene expression pattern of adiponectin and adiponectin receptors in dominant and atretic follicles and oocytes screened based on brilliant cresyl blue staining. Anim Reprod Sci. 131(1-2):30-40. TIAN, W.N.; BRAUNSTEIN, L.D.; PANG, J.; STUHLMEIER, K.M.; XI, Q.C.; TIAN, X., STANTON, R.C. 1998. Importance of glucose-6-phosphate dehydrogenase activity for cell growth. J Biol Chem 273(17):10609-17. TIFFIN, G.J.; RIEGER,D.; BETTERIDGE, K.J.; YADAV B.R.; KING, W.A. 1991. Glucose and glutamine metabolism in pre-attachment cattle embryos in relation to sex and stage of development. J. Reprod. Fert. 93:25-32. TWAGIRAMUNGU, H.; MORIN, N.; GUILBAULT, L.A.; SIRARD, M.A.; BOUSQUET, D. 1998. Media and time of oocytes transport influence their developmental competence for in vitro production of bovine embryos. Theriogenology, 49:299. YONG, H. Y.; LEE, B. C.; HWANG, W. S. 1997. Effect of oocyte diameter on in vitro nuclear maturation of Korean native cattle oocyte. Theriogenology 47:205. WONGSRIKEAO, P; OTOI , T; YAMASAKI , H; AGUNG, B; TANIGUCHI, M; NAOI, H; SHIMIZU, R; NAGAI, T. 2006.Effects of single and double exposure to brilliant cresyl blue on the selection of porcine oocytes for in vitro production of embryos. Theriogenology 66:366–372. WU, Y.G.; LIU, Y.; ZHOU, P.; LAN, G.C.; HAN, D.; MIAO, D.Q.; TAN, J.H. 2007. Selection of oocytes for in vitro maturation by brilliant cresyl blue staining: a study using the mouse model. Cell Res. 17:722-31. |
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Otero A, Rafaele02b08ed891a9f22553c7fd36a6c7578300Da Costa P, Eduardo84f27b37f65e95cd1ae4385670685f60300Pereira M, Emíliof73eb76494af34940c5517401554407b3002017-12-01 00:00:002022-07-01T17:15:59Z2017-12-01 00:00:002022-07-01T17:15:59Z2017-12-01https://repositorio.unisucre.edu.co/handle/001/155010.24188/recia.v9.n2.2017.6172027-4297https://doi.org/10.24188/recia.v9.n2.2017.617application/pdfspaUniversidad de Sucrehttps://creativecommons.org/licenses/by-nc-sa/4.0/info:eu-repo/semantics/openAccesshttp://purl.org/coar/access_right/c_abf2https://revistas.unisucre.edu.co/index.php/recia/article/view/617OvocytesBrilliant Cresyl BlueIn vitro maturation.OvócitosAzul cresil brilhanteMaturação in vitro.Maturação nuclear in vitro de ovócitos bovinos selecionados pelo método azul cresil brilhanteIn vitro nuclear maturation of bovine oocytes selected by the brilliant cresyl blue methodArtículo de revistaJournal articleinfo:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionhttp://purl.org/coar/resource_type/c_6501http://purl.org/coar/resource_type/c_6501http://purl.org/coar/resource_type/c_2df8fbb1Texthttp://purl.org/redcol/resource_type/ARTREFhttp://purl.org/coar/version/c_970fb48d4fbd8a85ALM, H.; TORNER,H.; LÖHRKE VIERGUTZ, GHONEIM.I.M.; KANITZ, W. 2005. Bovine blastocyst development rate in vitro is influenced by selection of oocytes by brilliant cresyl blue staining before IVM as indicator for glucose-6-phosphate dehydrogenase activity. Theriogenology 63:2194-2205.ANGUITA, B.; JIMENEZ-MACEDO, A.R.; IZQUIERDO, D.; MOGAS, T.; PARAMIO,M.T. 2007. Effect of oocytes diameter on meiotic competence, embryo development, p34(cdc2) expression and MPF activity in prepubertal goat oocytes. Theriogenology 67:526-536.BHOJWANI, S.; ALM, H.; TORNER, H.; KANITZ, W.; POEHLAND, R. 2007. Selection of developmentally competent oocytes through brilliant cresyl blue stain enhances blastocyst development rate after bovine nuclear. Theriogenology 67:341–345.BLONDIN, P. 2017. Logistics of large scale commercial IVF embryo production. Reproduction, Fertility and Development, 29: 32–36BOLS, P.E.J.; JORSSEN, E.P.A.; GOOVAERTS, I.G.F.; LANGBEEN, A.; LEROY, J.L.M.R. 2012. High throughput non-invasive oocyte quality assessment: the search continues. Animal Reproduction. 9:420-425.BUDNA, J.; CHACHU?A, A.; KA?MIERCZAK, D.; RYBSKA, M.; CIESIÓ?KA, S.; BRYJA, A.; KRANC, W.; BORYS, S.; ?OK, A.; BUKOWSKA, D.; ANTOSIK, P.; BRUSKA, M.; BRÜSSOW, K.P.; NOWICKI, M.; ZABEL, M.; KEMPISTY, B. 2017. Morphogenesis-related gene-expression profile in porcine oocytes before and after in vitro maturation. Zygote. 25(3):331-340.CASTANEDA, C. A. et al. 2013. Lipid content, active mitochondria and brilliant cresyl blue staining in bovine oocytes. Theriogenology, 79 (3): 417-422. ISSN 1879-3231CETICA, P.; PINTOS, L.; DALVIT, G.; BECONI, M. 2002. Activity of key enzymes involved in glucose and triglyceride catabolism during bovine oocyte maturation in vitro. Reproduction 124: 675-681.CHRISTMANN, L.; JUNG, T.; MOOR, R.M. 1994. MPF components and meiotic competence in growing pig oocytes. Molecular Reproduction and Development. 38:85-90.CONZATTI, M. 2013. Utilização do corante azul cresil brilhante como método de seleção de oócitos humanos destinados à maturação in vitro. Salão de Iniciação Científica UFRGS 25:21-25 : UFRGS, Porto Alegre, RSCOSTA, E.P.; VALE FILHO, V.R.; NOGUEIRA, J.C. et al. 1997a. Tipos morfológicos de ovócitos de bovinos. Arq. Bras. Med. Vet. Zoo.49:417-424.COSTA, E.P.; VALE FILHO, V.R.; NOGUEIRA, J.C. et al. 1997b. Técnicas para desnudamento rápido de ovócitos de bovinos. Arq. Bras. Med. Vet. Zoo. 49:425-432.COSTA, E.P.; VALE FILHO, V.R.; NOGUEIRA, J.C. et al. 1997c. Técnica para a avaliação do estágio de maturação “in vitro” de ovócitos bovinos. Arq. Bras. Med. Vet. Zootec. 49:433-440.DE LOOS, F.;VAN MAURIK, P.; VAN BENEDEN, T.; KRUIP T. 1992. Structural aspects of bovine oocyte maturation in vitro. Molecular Reproduction Developmental 31:208-14.DENIS, R. 2008. Aspiración folicular in vivo (opu) una nueva perspectiva en el campo de las biotecnologías de la reproducción. Ciencia y tecnologia ganadera (cuba). 2 (2):57-70.DODE, M.A.N.; ADONA, P.R. 2001. Developmental capacity of Bos indicus oocytes after inhibition of meiotic resuption by6-dimethylaminopurine. Animal Reproduction Science 65:171-180.EL SHOURBAGY, S.H.; SPIKINGS, E.C.; FREITAS, M.; ST JOHN, J.C. 2006. Mitochondria directly influence fertilization outcome in pig. Reproduction 131: 233–45.FAIR, T.; HYTTEL, P.; GREVE, T. 1995. Bovine oocyte size in relationship to follicular diameter, maturational competence and rna synthesis. Theriogenology 43:209.GOOVAERTS, I.; LEROY J.L.; JORSSEN, E.P.; BOLS, P.E. 2010. Noninvasive bovine oocyte quality assessment: possibilities of a single oocyte culture. Theriogenology 74(9):1509-1520. ISSN 1879-3231.GANDOLFI, T.A.L.B.; GANDOLFI, F. 2001. The maternal legacy to the embryo: cytoplasmic components and their effects on early development. Theriogenology 55:1255-76.HAWK, H.W.; WALL, R.J. 1994. Improved yields of bovine blastocysts from in vitro-produced oocytes. I. Selection of oocytes and zygotes. Theriogenology, 41:1571-1583.KATSKA-KSIAZKIEWICZ, L.; OPIELA, J.; RYNSKA, B. 2007. Effects of oocyte quality, semen donor and embryo co-culture system on the efficiency of blastocyst production in goats. Theriogenology 68: 736-744.KONRAD, J.L.; SCIAN, R.; GARRIDO, M.J.; TAMINELLI, G.; SANSINENA, M. 2013. Producción de embriones de búfalo por fertilización in vitro luego de la maduración de los ovocitos durante el transporte prolongado. Revista Veterinaria, 24(2): 97-101.LEIVAS, F.G.; BRUM, D.S.; MEZZALIRA, A.; PILLA, L.F.C.; BERNARDI, M.L.; RUBIN, M.I.B.; SILVA, C.A.M. 2004. Transporte de oócitos bovinos em meio de maturação sem controle de atmosfera gasosa. Ciência Rural 34:219-224.MACHATKOVA, M.; KRAUSOVA, K.; JOKESOVA, E.; TOMANEK, M. 2004. Developmental competence of bovine oocytes: effects of follicle size and the phase of follicular wave on in vitro embryo production. 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Cell Res. 17:722-31.https://revistas.unisucre.edu.co/index.php/recia/article/download/617/pdfNúm. 2 , Año 2017 : RECIA 9(SUPL 2):DICIEMBRE35423459Revista Colombiana de Ciencia Animal - RECIAPublicationOREORE.xmltext/xml2665https://repositorio.unisucre.edu.co/bitstreams/cfc40852-2b57-4f80-8682-b1d20156ab6b/downloadbed5135abe2d7afcfd82d3542431eb60MD51001/1550oai:repositorio.unisucre.edu.co:001/15502024-04-17 16:31:15.584https://creativecommons.org/licenses/by-nc-sa/4.0/metadata.onlyhttps://repositorio.unisucre.edu.coRepositorio Institucional Universidad de Sucrebdigital@metabiblioteca.com |