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Molecular Reproduction and Development|March 1, 1993
Alanine and leucine transport in unfertilized pig oocytes and early blastocystsR S Prather, M S Peters, L J Van WinkleJournal of Animal Science|September 1, 1996
Technical note: porcine non-surgical embryo transferJ Li, A Rieke, B N Day, et al.Biology of Reproduction|July 25, 2000
Mechanism of intracellular pH increase during parthenogenetic activation of In vitro matured porcine oocytesN T Ruddock, Z Macháty, M Milanick, et al.Biology of Reproduction|April 1, 1997
Developmental changes in the intracellular Ca2+ release mechanisms in porcine oocytesZ Macháty, H Funahashi, B N Day, et al.Theriogenology|August 18, 2012
Emerging applications of sperm, embryo and somatic cell cryopreservation in maintenance, relocation and rederivation of swine geneticsH Men, E M Walters, H Nagashima, et al.Molecular Reproduction and Development|September 1, 1993
Aspartate and glutamate transport in unfertilized pig oocytes and blastocystsR S Prather, M S Peters, L J Van WinkleCloning|October 13, 2005
Changes in the structure of nuclei after transfer to oocytesR S Prather, B Kühholzer, L Lai, et al.Molecular Reproduction and Development|December 1, 1996
gamma-Glutamyl transpeptidase of spermatozoa may decrease oocyte glutathione content at fertilization in pigsH Funahashi, Z Machaty, R S Prather, et al.The Journal of Experimental Zoology|January 1, 1995
Activation of murine oocytes with Ca2+ ionophore and cycloheximideL J Hagemann, F L Hillery-Weinhold, M L Leibfried Rutledge, et al.Biology of Reproduction|May 18, 1999
Calcium release and subsequent development induced by modification of sulfhydryl groups in porcine oocytesZ Macháty, W H Wang, B N Day, et al.Pageof 25