Coticchio, G., Bonu, M. ., Borini, A., & Flamigni, C. (2004). Oocyte cryopreservation: a biological perspective. European Journal of Obstetrics & Gynecology and Reproductive Biology, 115, S2-S7. doi:10.1016/j.ejogrb.2004.01.006
Lavara, R., Baselga, M., & Vicente, J. S. (2011). Does storage time in LN2 influence survival and pregnancy outcome of vitrified rabbit embryos? Theriogenology, 76(4), 652-657. doi:10.1016/j.theriogenology.2011.03.018
WHITTINGHAM, D. G. (1971). Survival of Mouse Embryos after Freezing and Thawing. Nature, 233(5315), 125-126. doi:10.1038/233125a0
[+]
Coticchio, G., Bonu, M. ., Borini, A., & Flamigni, C. (2004). Oocyte cryopreservation: a biological perspective. European Journal of Obstetrics & Gynecology and Reproductive Biology, 115, S2-S7. doi:10.1016/j.ejogrb.2004.01.006
Lavara, R., Baselga, M., & Vicente, J. S. (2011). Does storage time in LN2 influence survival and pregnancy outcome of vitrified rabbit embryos? Theriogenology, 76(4), 652-657. doi:10.1016/j.theriogenology.2011.03.018
WHITTINGHAM, D. G. (1971). Survival of Mouse Embryos after Freezing and Thawing. Nature, 233(5315), 125-126. doi:10.1038/233125a0
Saragusty, J., & Arav, A. (2011). Current progress in oocyte and embryo cryopreservation by slow freezing and vitrification. REPRODUCTION, 141(1), 1-19. doi:10.1530/rep-10-0236
Garcı́a, M. L., & Baselga, M. (2002). Estimation of genetic response to selection in litter size of rabbits using a cryopreserved control population. Livestock Production Science, 74(1), 45-53. doi:10.1016/s0301-6226(01)00280-9
García ML, Blumeto O, Capra G, Vicente JS, Baselga M (2000) Vitrified embryos transfer of two selected Spanish rabbit lines to Uruguay. 7th World Rabbit Congress Valencia, Spain: Universidad Politecnica de Valencia. A:139–142.
Whittingham, D. G. (1977). Fertilization in vitro and development to term of unfertilized mouse oocytes previously stored at --196 C. Reproduction, 49(1), 89-94. doi:10.1530/jrf.0.0490089
Chen, C. (1986). PREGNANCY AFTER HUMAN OOCYTE CRYOPRESERVATION. The Lancet, 327(8486), 884-886. doi:10.1016/s0140-6736(86)90989-x
AI-Hasani, S., Kirsch, J., Diedrich, K., Blanke, S., van der Ven, H., & Krebs, D. (1989). Successcul embryo transfer of cryopreserved and in-vitro fertilized rabbit oocytes. Human Reproduction, 4(1), 77-79. doi:10.1093/oxfordjournals.humrep.a136849
Fuku, E., Kojima, T., Shioya, Y., Marcus, G. J., & Downey, B. R. (1992). In vitro fertilization and development of frozen-thawed bovine oocytes. Cryobiology, 29(4), 485-492. doi:10.1016/0011-2240(92)90051-3
Hochi, S., Fujimoto, T., Braun, J., & Oguri, N. (1994). Pregnancies following transfer of equine embryos cryopreserved by vitrification. Theriogenology, 42(3), 483-488. doi:10.1016/0093-691x(94)90686-d
Gómez, M. C., Kagawa, N., Pope, C. E., Kuwayama, M., Leibo, S. P., & Dresser, B. L. (2008). 74 IN VIVO SURVIVAL OF DOMESTIC CAT OOCYTES AFTER VITRIFICATION, INTRACYTOPLASMIC SPERM INJECTION, AND TRANSFER TO RECIPIENTS. Reproduction, Fertility and Development, 20(1), 118. doi:10.1071/rdv20n1ab74
Paynter, S. J., Cooper, A., Gregory, L., Fuller, B. J., & Shaw, R. W. (1999). Permeability characteristics of human oocytes in the presence of the cryoprotectant dimethylsulphoxide. Human Reproduction, 14(9), 2338-2342. doi:10.1093/humrep/14.9.2338
Paynter SJ, O'Neil L, Fuller BJ, Shaw RW (2001) Membrane permeability of human oocytes in the presence of the cryoprotectant propane-1,2-diol. Fertil Steril <volume>75</volume>: : 532,538.
Nottola, S., Coticchio, G., De Santis, L., Macchiarelli, G., Maione, M., Bianchi, S., … Borini, A. (2008). Ultrastructure of human mature oocytes after slow cooling cryopreservation with ethylene glycol. Reproductive BioMedicine Online, 17(3), 368-377. doi:10.1016/s1472-6483(10)60220-9
Pereira, R. M., & Marques, C. C. (2008). Animal oocyte and embryo cryopreservation. Cell and Tissue Banking, 9(4), 267-277. doi:10.1007/s10561-008-9075-2
Noyes, N., Boldt, J., & Nagy, Z. P. (2010). Oocyte cryopreservation: is it time to remove its experimental label? Journal of Assisted Reproduction and Genetics, 27(2-3), 69-74. doi:10.1007/s10815-009-9382-y
DIEDRICH, K., AL-HASANI, S., VAN DER VEN, H., & KREBS, D. (1988). Successful in Vitro Fertilization of Frozen?Thawed Rabbit and Human Oocytes. Annals of the New York Academy of Sciences, 541(1 In Vitro Fert), 562-570. doi:10.1111/j.1749-6632.1988.tb22292.x
Vincent, C., Garnier, V., Heyman, Y., & Renard, J. P. (1989). Solvent effects on cytoskeletal organization and in-vivo survival after freezing of rabbit oocytes. Reproduction, 87(2), 809-820. doi:10.1530/jrf.0.0870809
Siebzehnruebl, E. R., Todorow, S., van Uem, J., Koch, R., Wildt, L., & Lang, N. (1989). Cryopreservation of human and rabbit oocytes and one-cell embryos: a comparison of DMSO and propanediol. Human Reproduction, 4(3), 312-317. doi:10.1093/oxfordjournals.humrep.a136895
Cai, X. Y., Chen, G. A., Lian, Y., Zheng, X. Y., & Peng, H. M. (2005). Cryoloop vitrification of rabbit oocytes. Human Reproduction, 20(7), 1969-1974. doi:10.1093/humrep/deh805
Salvetti, P., Buff, S., Afanassieff, M., Daniel, N., Guérin, P., & Joly, T. (2010). Structural, metabolic and developmental evaluation of ovulated rabbit oocytes before and after cryopreservation by vitrification and slow freezing. Theriogenology, 74(5), 847-855. doi:10.1016/j.theriogenology.2010.04.009
Wang, J., Cong, L., Zhang, Z. G., Cao, Y. X., Wei, Z. L., Zhou, P., … He, X. J. (2009). Double activation improves rabbit freeze–thawed oocytes developmental potential. Zygote, 18(1), 27-32. doi:10.1017/s0967199409990098
Jiménez-Trigos, E., Naturil-Alfonso, C., Vicente, J., & Marco-Jiménez, F. (2011). Effects of Cryopreservation on the Meiotic Spindle, Cortical Granule Distribution and Development of Rabbit Oocytes. Reproduction in Domestic Animals, 47(3), 472-478. doi:10.1111/j.1439-0531.2011.01906.x
Jiménez-Trigos, E., Naturil-Alfonso, C., Vicente, J., & Marco-Jiménez, F. (2012). Post-Warming Competence ofIn VivoMatured Rabbit Oocytes Treated with Cytoskeletal Stabilization (Taxol) and Cytoskeletal Relaxant (Cytochalasin B) Before Vitrification. Reproduction in Domestic Animals, 48(1), 15-19. doi:10.1111/j.1439-0531.2012.02018.x
Jiménez-Trigos, E., Vicente, J. S., Mocé, E., Naturil-Alfonso, C., Fernandez-Gonzalez, R., Gutierrez-Adan, A., & Marco-Jiménez, F. (2013). Treatment with cholesterol-loaded methyl-β-cyclodextrin increased the cholesterol in rabbit oocytes, but did not improve developmental competence of cryopreserved oocytes. Cryobiology, 67(1), 106-108. doi:10.1016/j.cryobiol.2013.05.006
III. Preliminary note on the transplantation and growth of mammalian ova within a uterine foster-mother. (1891). Proceedings of the Royal Society of London, 48(292-295), 457-458. doi:10.1098/rspl.1890.0053
CHANG, M. C., CASAS, J. H., & HUNT, D. M. (1970). Prevention of Pregnancy in the Rabbit by Subcutaneous Implantation of Silastic Tube containing Oestrogen. Nature, 226(5252), 1262-1263. doi:10.1038/2261262a0
BEDFORD, J. M., & CHANG, M. C. (1962). Fertilization of Rabbit Ova in vitro. Nature, 193(4818), 898-899. doi:10.1038/193898a0
Brackett, B. G., & Williams, W. L. (1968). Fertilization of Rabbit Ova in a Defined Medium. Fertility and Sterility, 19(1), 144-156. doi:10.1016/s0015-0282(16)36555-4
Keefer, C. L. (1989). Fertilization by sperm injection in the rabbit. Gamete Research, 22(1), 59-69. doi:10.1002/mrd.1120220107
Deng, M., & Yang, X. (Jerry). (2001). Full term development of rabbit oocytes fertilized by Intracytoplasmic sperm injection. Molecular Reproduction and Development, 59(1), 38-43. doi:10.1002/mrd.1005
Li, G.-P., Chen, D.-Y., Lian, L., Sun, Q.-Y., Wang, M.-K., Liu, J.-L., … Han, Z.-M. (2000). Viable rabbits derived from reconstructed Oocytes by germinal vesicle transfer after intracytoplasmic sperm injection (ICSI). Molecular Reproduction and Development, 58(2), 180-185. doi:10.1002/1098-2795(200102)58:2<180::aid-mrd7>3.0.co;2-7
Zheng, Y.-L., Jiang, M.-X., Zhang, Y.-L., Sun, Q.-Y., & Chen, D.-Y. (2004). Effects of oocyte age, cumulus cells and injection methods on in vitro development of intracytoplasmic sperm injection rabbit embryos. Zygote, 12(1), 75-80. doi:10.1017/s0967199404002643
Garcı́a-Ximénez, F., & Escribá, M. J. (2002). Viable offspring derived from cryopreserved haploid rabbit parthenotes. Theriogenology, 57(4), 1319-1325. doi:10.1016/s0093-691x(01)00718-x
Naturil-Alfonso, C., Saenz-de-Juano, M. D., Peñaranda, D. S., Vicente, J. S., & Marco-Jiménez, F. (2011). Parthenogenic blastocysts cultured under in vivo conditions exhibit proliferation and differentiation expression genes similar to those of normal embryos. Animal Reproduction Science, 127(3-4), 222-228. doi:10.1016/j.anireprosci.2011.08.005
Curry, M. R., Kleinhans, F. W., & Watson, P. F. (2000). Measurement of the Water Permeability of the Membranes of Boar, Ram, and Rabbit Spermatozoa Using Concentration-Dependent Self-Quenching of an Entrapped Fluorophore. Cryobiology, 41(2), 167-173. doi:10.1006/cryo.2000.2277
Carnevale, E. M., Coutinho da Silva, M. A., Panzani, D., Stokes, J. E., & Squires, E. L. (2005). Factors affecting the success of oocyte transfer in a clinical program for subfertile mares. Theriogenology, 64(3), 519-527. doi:10.1016/j.theriogenology.2005.05.008
Deleuze, S., Goudet, G., Caillaud, M., Lahuec, C., & Duchamp, G. (2009). Efficiency of embryonic development after intrafollicular and intraoviductal transfer of in vitro and in vivo matured horse oocytes. Theriogenology, 72(2), 203-209. doi:10.1016/j.theriogenology.2009.02.001
Vicente, J. S., Lavara, R., Marco-Jiménez, F., & Viudes-de-Castro, M. P. (2011). Detrimental effect on availability of buserelin acetate administered in seminal doses in rabbits. Theriogenology, 76(6), 1120-1125. doi:10.1016/j.theriogenology.2011.05.020
Viudes-de-Castro, M. P., & Vicente, J. S. (1997). Effect of sperm count on the fertility and prolificity rates of meat rabbits. Animal Reproduction Science, 46(3-4), 313-319. doi:10.1016/s0378-4320(96)01628-4
Besenfelder, U., & Brem, G. (1993). Laparoscopic embryo transfer in rabbits. Reproduction, 99(1), 53-56. doi:10.1530/jrf.0.0990053
Mehaisen GM, Vicente JS, Lavara R (2004) In vivo Embryo Recovery Rate by Laparoscopic Technique from Rabbit Does Selected for Growth Rate. Reprod Dom Anim <volume>39</volume>: 347–351.
Bavister, B. D. (1995). Culture of preimplantation embryos: facts and artifacts. Human Reproduction Update, 1(2), 91-148. doi:10.1093/humupd/1.2.91
Rizos, D., Lonergan, P., Boland, M. P., Arroyo-García, R., Pintado, B., Fuente, J. de la, & Gutiérrez-Adán, A. (2002). Analysis of Differential Messenger RNA Expression Between Bovine Blastocysts Produced in Different Culture Systems: Implications for Blastocyst Quality1. Biology of Reproduction, 66(3), 589-595. doi:10.1095/biolreprod66.3.589
Fleming, T. P., Kwong, W. Y., Porter, R., Ursell, E., Fesenko, I., Wilkins, A., … Eckert, J. J. (2004). The Embryo and Its Future1. Biology of Reproduction, 71(4), 1046-1054. doi:10.1095/biolreprod.104.030957
Purpera, M. N., Giraldo, A. M., Ballard, C. B., Hylan, D., Godke, R. A., & Bondioli, K. R. (2009). Effects of culture medium and protein supplementation on mRNA expression of in vitro produced bovine embryos. Molecular Reproduction and Development, 76(8), 783-793. doi:10.1002/mrd.21028
Saenz-de-Juano, M. D., Naturil-Alfonso, C., Vicente, J. S., & Marco-Jiménez, F. (2011). Effect of different culture systems on mRNA expression in developing rabbit embryos. Zygote, 21(1), 103-109. doi:10.1017/s0967199411000414
Guidobaldi, H. A., Teves, M. E., Uñates, D. R., & Giojalas, L. C. (2012). Sperm transport and retention at the fertilization site is orchestrated by a chemical guidance and oviduct movement. REPRODUCTION, 143(5), 587-596. doi:10.1530/rep-11-0478
Besenfelder, U., Havlicek, V., Kuzmany, A., & Brem, G. (2010). Endoscopic approaches to manage in vitro and in vivo embryo development: Use of the bovine oviduct. Theriogenology, 73(6), 768-776. doi:10.1016/j.theriogenology.2009.07.003
Ryan, J. P., & Moore, N. W. (1988). The fate of embryos transferred to the oviducts of entire, unilaterally ovariectomized and bilaterally ovariectomized ewes. Reproduction, 84(1), 171-178. doi:10.1530/jrf.0.0840171
Cortell, C., Vicente, J., Mocé, E., Marco-Jiménez, F., & Viudes De Castro, M. (2010). Efficiency of RepeatedIn VivoOocyte and Embryo Recovery After rhFSH Treatment in Rabbits. Reproduction in Domestic Animals, 45(1), 155-159. doi:10.1111/j.1439-0531.2008.01294.x
Stone, S. L., & Hamner, C. E. (1975). Biochemistry and Physiology of Oviductal Secretions. Gynecologic and Obstetric Investigation, 6(3-4), 234-252. doi:10.1159/000301520
Killian, G. J., Chapman, D. A., Kavanaugh, J. F., Deaver, D. R., & Wiggin, H. B. (1989). Changes in phospholipids, cholesterol and protein content of oviduct fluid of cows during the oestrous cycle. Reproduction, 86(2), 419-426. doi:10.1530/jrf.0.0860419
YANAGIMACHI, R. (1969). IN VITRO CAPACITATION OF HAMSTER SPERMATOZOA BY FOLLICULAR FLUID. Reproduction, 18(2), 275-286. doi:10.1530/jrf.0.0180275
Sultan, K. M., & Bedford, J. M. (1996). Two modifiers of sperm transport within the Fallopian tube of the rat. Reproduction, 108(2), 179-184. doi:10.1530/jrf.0.1080179
Fatehi, A. ., Zeinstra, E. ., Kooij, R. ., Colenbrander, B., & Bevers, M. . (2002). Effect of cumulus cell removal of in vitro matured bovine oocytes prior to in vitro fertilization on subsequent cleavage rate. Theriogenology, 57(4), 1347-1355. doi:10.1016/s0093-691x(01)00717-8
Mullen SF (2007) Advances in Fundamental Cryobiology of Mammalian Oocytes. University of Missouri, Columbia.
Ledda S, Bogliolo L, Succu S, Ariu F, Bebbere D, <etal>et al</etal>.. (2007) Oocyte cryopreservation: oocyte assessment and strategies for improving survival. Reprod Fertil Dev <volume>19</volume>: : 13–23. Review
Fadini, R., Brambillasca, F., Renzini, M. M., Merola, M., Comi, R., De Ponti, E., & Dal Canto, M. (2009). Human oocyte cryopreservation: comparison between slow and ultrarapid methods. Reproductive BioMedicine Online, 19(2), 171-180. doi:10.1016/s1472-6483(10)60069-7
Suzuki, T., Boediono, A., Takagi, M., Saha, S., & Sumantri, C. (1996). Fertilization and Development of Frozen–Thawed Germinal Vesicle Bovine Oocytes by a One-Step Dilution Methodin Vitro. Cryobiology, 33(5), 515-524. doi:10.1006/cryo.1996.0055
Kubota, C., Yang, X., Dinnyes, A., Todoroki, J., Yamakuchi, H., Mizoshita, K., … Tabara, N. (1998). In vitro and in vivo survival of frozen-thawed bovine oocytes after IVF, nuclear transfer, and parthenogenetic activation. Molecular Reproduction and Development, 51(3), 281-286. doi:10.1002/(sici)1098-2795(199811)51:3<281::aid-mrd7>3.0.co;2-l
Vieira, A. ., Mezzalira, A., Barbieri, D. ., Lehmkuhl, R. ., Rubin, M. I. ., & Vajta, G. (2002). Calves born after open pulled straw vitrification of immature bovine oocytes. Cryobiology, 45(1), 91-94. doi:10.1016/s0011-2240(02)00109-8
Bos-Mikich, A., Wood, M. J., Candy, C. J., & Whittingham, D. G. (1995). Cytogenetical Analysis and Developmental Potential of Vitrified Mouse Oocytes1. Biology of Reproduction, 53(4), 780-785. doi:10.1095/biolreprod53.4.780
Aono, N., Abe, Y., Hara, K., Sasada, H., Sato, E., & Yoshida, H. (2005). Production of live offspring from mouse germinal vesicle–stage oocytes vitrified by a modified stepwise method, SWEID. Fertility and Sterility, 84, 1078-1082. doi:10.1016/j.fertnstert.2005.03.077
Lee, H.-J., Elmoazzen, H., Wright, D., Biggers, J., Rueda, B. R., Heo, Y. S., … Toth, T. L. (2010). Ultra-rapid vitrification of mouse oocytes in low cryoprotectant concentrations. Reproductive BioMedicine Online, 20(2), 201-208. doi:10.1016/j.rbmo.2009.11.012
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