The effect of gamete co-incubation time during in vitro fertilization with frozen-thawed unsorted and sex-sorted ram spermatozoa on the development of in vitro matured adult and prepubertal ewe oocytes.
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[1] D. Rath,et al. 304 Production of porcine embryos of a predetermined sex after in vitro fertilization of in vitro-matured oocytes with sex-sorted frozen-thawed boar sperm. , 2005 .
[2] G. Evans,et al. Production of lambs after the transfer of fresh and cryopreserved in vitro produced embryos from prepubertal lamb oocytes and unsorted and sex-sorted frozen-thawed spermatozoa. , 2004, Reproduction in domestic animals = Zuchthygiene.
[3] K. Lu,et al. Effects of heparin and sperm concentration on cleavage and blastocyst development rates of bovine oocytes inseminated with flow cytometrically-sorted sperm. , 2004, Theriogenology.
[4] G. Evans,et al. 205. The effect of FSH concentration during IVM and gamete co-incubation length during IVF on the development of unstimulated prepubertal ewe oocytes , 2004 .
[5] G. Evans,et al. Integration of sperm sexing technology into the ART toolbox. , 2004, Animal reproduction science.
[6] K. M. Evans,et al. Birth of lambs of a pre-determined sex after in vitro production of embryos using frozen-thawed sex-sorted and re-frozen-thawed ram spermatozoa. , 2004, Reproduction.
[7] R. Aitken,et al. The importance of redox regulated pathways in sperm cell biology , 2004, Molecular and Cellular Endocrinology.
[8] Ming Li,et al. The Effects of Brief Gamete Co-incubation in Human In Vitro Fertilization , 2000, Journal of Assisted Reproduction and Genetics.
[9] M. Medina,et al. 329 PREGNANCY RATE IN EWES INSEMINATED WITH SEXED SEMEN IN ARGENTINA , 2004 .
[10] G. Evans,et al. 280 LAMBS BORN AFTER IN VITRO EMBRYO PRODUCTION FROM PREPUBERTAL LAMB OOCYTES AND FROZEN-THAWED UNSORTED AND SEX-SORTED SPERMATOZOA , 2004 .
[11] R. Sartori. Fertilization rate and embryo quality in superovulated Holstein heifers artificially inseminated with X-sorted or unsorted sperm , 2004 .
[12] G. Evans,et al. In vitro and in vivo assessment of functional capacity of flow cytometrically sorted ram spermatozoa after freezing and thawing. , 2003, Reproduction, fertility, and development.
[13] Christopher Chen,et al. Short coincubation of gametes in in vitro fertilization improves implantation and pregnancy rates: a prospective, randomized, controlled study. , 2003, Fertility and sterility.
[14] K. Kochhar,et al. Influence of the duration of gamete interaction on cleavage, growth rate and sex distribution of in vitro produced bovine embryos. , 2003, Animal reproduction science.
[15] P. Lonergan,et al. Optimization of in vitro bovine embryo production: effect of duration of maturation, length of gamete co-incubation, sperm concentration and sire. , 2002, Theriogenology.
[16] W. A. King,et al. Maturation status, protein synthesis and developmental competence of oocytes derived from lambs and ewes. , 2002, Reproduction in domestic animals = Zuchthygiene.
[17] C. Fernandes,et al. The effect of sperm preparation and co-incubation time on in vitro fertilization of Bos indicus oocytes. , 2002, Animal reproduction science.
[18] G. Evans,et al. Production of lambs of predetermined sex after the insemination of ewes with low numbers of frozen-thawed sorted X- or Y-chromosome-bearing spermatozoa. , 2002, Reproduction, fertility, and development.
[19] W. Son,et al. Effect of Short-Time Exposure of Sperm on the Fertilization Parameter , 2000 .
[20] D. G. Cran,et al. In vitro fertilization with flow-cytometrically-sorted bovine sperm. , 1999, Theriogenology.
[21] D. G. Cran,et al. Insemination of heifers with sexed sperm. , 1999, Theriogenology.
[22] L. Johnson,et al. Sex preselection: laboratory validation of the sperm sex ratio of flow sorted X- and Y-sperm by sort reanalysis for DNA. , 1999, Theriogenology.
[23] H. Abramovici,et al. Shortened exposure of oocytes to spermatozoa improves in-vitro fertilization outcome: a prospective, randomized, controlled study. , 1999, Human reproduction.
[24] L. Johnson,et al. Sexual dimorphism in IVM-IVF bovine embryos produced from X and Y chromosome-bearing spermatozoa sorted by high speed flow cytometry. , 1999, Theriogenology.
[25] W. Rens,et al. Improved flow cytometric sorting of X‐ and Y‐chromosome bearing sperm: Substantial increase in yield of sexed semen , 1999 .
[26] P. Lonergan,et al. The relationship between the time of first cleavage of fertilized cattle oocytes and their development to the blastocyst stage , 1999 .
[27] W. King,et al. Cleavage, sex and cell number of ovine embryos developed after different sperm-oocyte co-incubation intervals☆ , 1999 .
[28] M. Ho,et al. Confirmation of the beneficial effects of brief coincubation of gametes in human in vitro fertilization. , 1998, Fertility and sterility.
[29] W. King,et al. Timing of sperm oocyte interaction and its effect on cleavage and development rate in a bovine IVF system , 1998 .
[30] G. Evans,et al. Assessment of Ram and Boar Spermatozoa during Cell-sorting by Flow Cytometry , 1997 .
[31] N L First,et al. Timing of meiotic progression in bovine oocytes and its effect on early embryo development , 1997, Molecular reproduction and development.
[32] A. de Kruif,et al. Relationship between timing of development, morula morphology, and cell allocation to inner cell mass and trophectoderm in in vitro‐produced bovine embryos , 1997, Molecular reproduction and development.
[33] L. Johnson,et al. Chlortetracycline analysis of boar spermatozoa after incubation, flow cytometric sorting, cooling, or cryopreservation , 1997, Molecular reproduction and development.
[34] J. Aten,et al. Effect of flow cytometrically sorted frozen/thawed semen on success rate of in vitro bovine embryo production , 1997 .
[35] G. Evans,et al. Effect of hormone pre-treatment of prepubertal sheep on the production and developmental capacity of oocytes in vitro and in vivo. , 1997, Reproduction, fertility, and development.
[36] L. Gianaroli,et al. Prolonged sperm-oocyte exposure and high sperm concentration affect human embryo viability and pregnancy rate. , 1996, Human reproduction.
[37] A. Boediono,et al. The influence of sperm-oocyte incubation time and breed of bull on in vitro embryo development in cattle , 1996 .
[38] L. Gianaroli,et al. Reducing the time of sperm-oocyte interaction in human in-vitro fertilization improves the implantation rate. , 1996, Human reproduction.
[39] F. Molinia,et al. Fertility of ram spermatozoa pellet-frozen in zwitterion-buffered diluents. , 1996, Reproduction, nutrition, development.
[40] D. G. Cran,et al. Separation of X- and Y-chromosome bearing bovine sperm by flow cytometry for use in IVF , 1994 .
[41] D. Rath,et al. In vitro culture of porcine embryos: Development to blastocysts after in vitro fertilization (IVF) with flow cytometrically sorted and unsorted semen☆ , 1993 .
[42] N. First,et al. Kinetics of bovine oocyte maturation allows selection for developmental competence and is affected by gonadotropins , 1992 .
[43] G. Evans,et al. Salamons Artificial Insemination of Sheep and Goats , 1987 .
[44] D. Pinkel,et al. Modification of a laser-based flow cytometer for high-resolution DNA analysis of mammalian spermatozoa. , 1986, Cytometry.
[45] H. R. Tervit,et al. Birth of lambs after culture of sheep ova in vitro for up to 6 days. , 1974, Journal of reproduction and fertility.
[46] H. R. Tervit,et al. Successful culture in vitro of sheep and cattle ova. , 1972, Journal of reproduction and fertility.