Publications
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(2024). Enhancing uterine receptivity for embryo implantation through controlled collagenase intervention. Life Science Alliance. 2024; (10).,
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(2024). The differential regulation of placenta trophoblast bisphosphoglycerate mutase in fetal growth restriction: preclinical study in mice and observational histological study of human placenta. eLife. 2024; ().,
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(2023). PREPARATION AND EVALUATION OF OOCYTES FOR INTRACYTOPLASMIC SPERM INJECTION. . 2023; ():103-110.,
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(2023). Stain-Free Sperm Analysis and Selection for Intracytoplasmic Sperm Injection Complying with WHO Strict Normal Criteria. Biomedicines. 2023; (10).,
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(2022). Fyn and argonaute 2 participate in maternal-mRNA degradation during mouse oocyte maturation. Cell Cycle. 2022; (8):792-804.,
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(2021). TNF-α Regulated Endometrial Stroma Secretome Promotes Trophoblast Invasion. Frontiers in Immunology. 2021; ().,
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(2021). Prediction of Ovarian Follicular Dominance by MRI Phenotyping of Hormonally Induced Vascular Remodeling. Frontiers in Medicine. 2021; ().,
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(2020). Hyaluronan control of the primary vascular barrier during early mouse pregnancy is mediated by uterine NK cells. JCI Insight. 2020; (22).,
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(2020). Newly Identified Regulators of Ovarian Folliculogenesis and Ovulation. International Journal of Molecular Sciences. 2020; (12).,
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(2019). High cGMP and low PDE3A activity are associated with oocyte meiotic incompetence. Cell Cycle. 2019; (20):2629-2640.,
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(2019). Magnetic Resonance Imaging Reveals Distinct Roles for Tissue Transglutaminase and Factor XIII in Maternal Angiogenesis during Early Mouse Pregnancy. Arteriosclerosis, Thrombosis, and Vascular Biology. 2019; (8):1602-1613.,
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(2018). A-to-I RNA editing in the rat brain is age-dependent, region-specific and sensitive to environmental stress across generations. BMC Genomics. 2018; ().,
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(2018). Vasorin: A newly identified regulator of ovarian folliculogenesis. FASEB Journal. 2018; (4):2124-2136.,
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(2017). Regulation of GVBD in mouse oocytes by miR-125a-3p and Fyn kinase through modulation of actin filaments. Scientific Reports. 2017; (1).,
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(2015). Appropriate expression of Ube2C and Ube2S controls the progression of the first meiotic division. FASEB Journal. 2015; (11):4670-4681.,
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(2015). Biopsy-induced inflammatory conditions improve endometrial receptivity: The mechanism of action. Reproduction. 2015; (1):75-85.,
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(2014). Implantation: Mutual activity of sex steroid hormones and the immune system guarantee the maternal-embryo interaction. Seminars in Reproductive Medicine. 2014; (5):337-345.,
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(2014). Blastocyst implantation failure relates to impaired translational machinery gene expression. Reproduction. 2014; (1):87-98.,
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(2014). Ovarian dendritic cells act as a double-edged pro- ovulatory and anti-inflammatory sword. Molecular Endocrinology. 2014; (7):1039-1054.,
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(2014). Expression and regulation of the tumor suppressor, SEF, during folliculogenesis in humans and mice. Reproduction. 2014; (5):507-515.,
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(2014). Excess cholesterol induces mouse egg activation and may cause female infertility. Proceedings of the National Academy of Sciences of the United States of America. 2014; (46):E4972-E4980.,
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(2014). The role of inflammation for a successful implantation. American Journal of Reproductive Immunology. 2014; (2):141-147.,
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(2013). Molecular participants in regulation of the meiotic cell cycle in mammalian oocytes. Reproduction Fertility And Development. 2013; (3):484-494.,
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(2012). From ubiquitin-proteasomal degradation to CDK1 inactivation: Requirements for the first polar body extrusion in mouse oocytes. FASEB Journal. 2012; (11):4495-4505.,
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(2012). An In Vitro Model for the Study of Human Implantation. American Journal of Reproductive Immunology. 2012; (2):169-178.,
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(2012). Acquisition of uterine receptivity: Partaking of inflammation. Journal of Reproductive Immunology. 2012; (1):14-14.,
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(2012). Endometrial inflammation and effect on implantation improvement and pregnancy outcome. Reproduction. 2012; (6):661-668.,
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(2011). Reactive oxygen species are indispensable in ovulation. Proceedings of the National Academy of Sciences of the United States of America. 2011; (4):1462-1467.,
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(2011). Survival and size are differentially regulated by placental and fetal PKBalpha/AKT1 in mice. Biology of Reproduction. 2011; (3):537-545.,
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(2011). Functional phenotyping of the maternal albumin turnover in the mouse placenta by dynamic contrast-enhanced MRI. Molecular Imaging and Biology. 2011; (3):481-492.,
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(2011). Colon stem cell and crypt dynamics exposed by cell lineage reconstruction. PLoS Genetics. 2011; (7).,
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(2010). Sustained activity of the EGF receptor is an absolute requisite for LH-induced oocyte maturation and cumulus expansion. Molecular Endocrinology. 2010; (2):402-411.,
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(2010). Inflammation and implantation. American Journal of Reproductive Immunology. 2010; (1):17-21.,
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(2010). Epithelial cell transforming protein 2 (ECT2) depletion blocks polar body extrusion and generates mouse oocytes containing two metaphase II spindles. Endocrinology. 2010; (2):755-765.,
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(2010). Local injury of the endometrium induces an inflammatory response that promotes successful implantation. Fertility and Sterility. 2010; (6):2030-2036.,
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(2009). Hormonal regulation of GnRH and LHβ mRNA expression in cultured rat granulosa cells. Journal of Molecular Neuroscience. 2009; (1-2):78-85.,
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(2009). Implantation disorder related to impaired translation in the oocyte and in the resulting embryo. Developmental Biology. 2009; (2):419-419.,
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(2009). Vascular function and growth is differentially regulated by fetal and placental PKBalpha/Akt1 in a gene dosage dependent manner: Non-invasive dynamic contrast enhanced MRI. Developmental Biology. 2009; (2):499-499.,
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(2009). Endometrial biopsy-induced gene modulation: first evidence for the expression of bladder-transmembranal uroplakin Ib in human endometrium. Fertility and Sterility. 2009; (4):1042-1049.e9.,
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(2008). Gap junctions in the ovary: Expression, localization and function. Molecular and Cellular Endocrinology. 2008; (1-2):18-25.,
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(2008). Uterine DCs are crucial for decidua formation during embryo implantation in mice. Journal of Clinical Investigation. 2008; (12):3954-3965.,
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(2008). Second French-Israeli workshop on mammalian gametogenesis and embryogenesis. Molecular and Cellular Endocrinology. 2008; (2-Jan):1-1.,
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(2008). Oocyte-directed depletion of connexin43 using the Cre-LoxP system leads to subfertility in female mice. Developmental Biology. 2008; (1):1-12.,
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(2008). Local production of the gonadotropic hormones in the rat ovary. Molecular and Cellular Endocrinology. 2008; (1-2):32-38.,
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(2008). Inhibition of rat oocyte maturation and ovulation by nitric oxide: Mechanism of action. Biology of Reproduction. 2008; (6):1111-1118.,
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(2008). Molecular characterization and bioinformatics analysis of Ncoa7B, a novel ovulation-associated and reproduction system-specific Ncoa7 isoform. Reproduction. 2008; (3):321-333.,
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(2007). Cloprostenol, a prostaglandin F2α analog, induces hypoxia in rat placenta: BOLD contrast MRI. NMR in Biomedicine. 2007; (1):28-39.,
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(2007). A novel ovary-specific and ovulation-associated variant of epoxide hydrolase 2. FEBS Letters. 2007; (25):4891-4898.,
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(2007). Low expression of COX-2, reduced cumulus expansion, and impaired ovulation in SULT1E1-deficient mice. FASEB Journal. 2007; (8):1893-1901.,
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(2006). Cytoplasmic polyadenylation controls cdc25B mRNA translation in rat oocytes resuming meiosis. Reproduction. 2006; (1):21-31.,
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(2006). Ovulation-selective genes: The generation and characterization of an ovulatory-selective cDNA library. Journal of Endocrinology. 2006; (3):531-548.,
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(2006). Meiotic arrest of oocytes depends on cell-to-cell communication in the ovarian follicle. Molecular and Cellular Endocrinology. 2006; (1-2):102-106.,
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(2006). An active protein kinase A (PKA) is involved in meiotic arrest of rat growing oocytes. Reproduction. 2006; (1):33-43.,
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(2006). MRI analysis of angiogenesis during mouse embryo implantation. Magnetic Resonance in Medicine. 2006; (5):1013-1022.,
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(2006). Disruption of gap junctional communication within the ovarian follicle induces oocyte maturation. Endocrinology. 2006; (5):2280-2286.,
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(2005). Cellular, biochemical and molecular mechanisms regulating oocyte maturation. Molecular and Cellular Endocrinology. 2005; (1-2):19-25.,
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(2005). Mitogen-activated protein kinase mediates luteinizing hormone-induced breakdown of communication and oocyte maturation in rat ovarian follicles. Endocrinology. 2005; (3):1236-1244.,
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(2004). Selective degradation of cyclin B1 mRNA in rat oocytes by RNA interference (RNAi). Journal of Molecular Endocrinology. 2004; (1):73-85.,
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(2004). Luteinizing hormone-induced connexin 43 down-regulation: Inhibition of translation. Endocrinology. 2004; (4):1617-1624.,
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(2003). Maturation-promoting factor governs mitogen-activated protein kinase activation and interphase suppression during meiosis of rat oocytes. Biology of Reproduction. 2003; (4):1282-1290.,
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(2003). Local injury to the endometrium doubles the incidence of successful pregnancies in patients undergoing in vitro fertilization. Fertility and Sterility. 2003; (6):1317-1322.,
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(2002). cAMP-dependent PKA negatively regulates polyadenylation of c-mos mRNA in rat oocytes. Molecular Endocrinology. 2002; (2):331-341.,
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(2002). Involvement of endothelin-1 and its receptors in PGF2α-induced luteolysis in the rat. Molecular Reproduction and Development. 2002; (1):71-78.,
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(2002). Connexin43 in rat oocytes: Developmental modulation of its phosphorylation. Biology of Reproduction. 2002; (3):568-573.,
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(2002). Expression and modification of PKA and AKAPs during meiosis in rat oocytes. Molecular and Cellular Endocrinology. 2002; (1-2):105-113.,
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(2002). Translational and post-translational modifications in meiosis of the mammalian oocyte. Molecular and Cellular Endocrinology. 2002; (2-Jan):161-171.,
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(2002). XIIth International Workshop on Development and Function of the Reproductive Organs - From Follicle Culture to Nuclear Transfer and Embryonic Stem Cells. Molecular and Cellular Endocrinology. 2002; (1-2):1-2.,
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(2002). The ovarian gap junction protein Connexin43: Regulation by gonadotropins. Trends in Endocrinology and Metabolism. 2002; (7):310-313.,
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(2001). Inactivation of M-phase promoting factor at exit from first embryonic mitosis in the rat is independent of cyclin B1 degradation. Biology of Reproduction. 2001; (3):871-878.,
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(2000). A fast signal-induced activation of poly(ADP-ribose) polymerase: A novel downstream target of phospholipase C. Journal of Cell Biology. 2000; (2):293-307.,
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(2000). Temporal analysis of connexin43 protein and gene expression throughout the menstrual cycle in human endometrium. Fertility and Sterility. 2000; (2):381-386.,
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(2000). The proteasome is involved in the first metaphase-to-anaphase transition of meiosis in rat oocytes. Biology of Reproduction. 2000; (5):1270-1277.,
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(1998). Cell-to-cell communication in the ovarian follicle: developmental and hormonal regulation of the expression of connexin43. Human Reproduction. 1998; ():85-97.,
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(1997). Developmental expression and regulation of the gap junction protein and transcript in rat ovaries. Molecular Reproduction and Development. 1997; (3):231-239.,
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(1995). Experimental extension of the time interval between oocyte maturation and ovulation: effect on fertilization and first cleavage. Fertility and Sterility. 1995; (5):1023-1028.,
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(1995). Endocrinology: The effect of pre-treatment with a gonadotrophin-releasing hormone agonist on reproductive functions in mature cycling rats. Human Reproduction. 1995; (3):509-512.,
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(1995). THE GATING MECHANISM OF GAP JUNCTIONS IN RAT OVARIAN FOLLICLES. Intercellular Communication Through Gap Junctions. 1995; ():443-445.,
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(1994). Phosphorylation and expression of connexin-43 ovarian gap junction protein are regulated by luteinizing hormone. Journal of Biological Chemistry. 1994; (48):30502-30509.,
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(1994). MAINTENANCE OF MEIOTIC ARREST BY A PHOSPHORYLATED P34(CDC2) IS INDEPENDENT OF CYCLIC ADENOSINE-3',5'-MONOPHOSPHATE. Biology of Reproduction. 1994; (5):956-962.,
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(1994). Meiotic arrest in incompetent rat oocytes is not regulated by cAMP. Developmental Biology. 1994; (1):11-17.,
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(1993). Fertilization and early development of rat oocytes induced to mature by forskolin. Molecular and Cellular Endocrinology. 1993; (1-2):61-68.,
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(1992). Rat oocytes induced to mature by epidermal growth factor are successfully fertilized. Molecular and Cellular Endocrinology. 1992; (1-3):135-141.,
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(1991). Maturation of the rat cumulusoocyte complex: Structure and function. Molecular Reproduction and Development. 1991; (3):297-306.,
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(1991). Serum bioactive and immunoreactive follicle stimulating hormone during chronic treatment with gonadotropin releasing hormone agonist in elderly men. Hormone and Metabolic Research. 1991; (2):76-80.,
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(1990). Embryonic development of fertilized rat oocytes induced to mature by an analogue of gonadotrophin-releasing hormone. Journal of Reproduction and Fertility. 1990; (2):681-687.,
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(1990). Rat oocyte maturation: Role of calcium in hormone action. Molecular and Cellular Endocrinology. 1990; (2):131-138.,
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(1990). Serum bioactive and immunoreactive follicle-stimulating hormone in oligozoospermic and azoospermic men: Application of a modified granulosa cell bioassay. Fertility and Sterility. 1990; (4):709-714.,
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(1989). Embryonic development of fertilization oocytes induced to mature by GnRHa. Cell Differentiation and Development. 1989; (supplement 1):41.,
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(1988). Regulation of Oocyte Maturation: The Role of camp. Annals of the New York Academy of Sciences. 1988; (1):211-216.,
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(1988). Regulation of oocyte maturation: Communication in the rat cumulus-oocyte complex. Human Reproduction. 1988; (6):761-766.,
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(1988). Induction of maturation in follicle-enclosed oocytes: the response to gonadotropins at different stages of follicular development.. Biology of Reproduction. 1988; (3):517-521.,
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(1988). Dissociation between the inhibitory and the stimulatory action of cAMP on maturation of rat oocytes. Molecular and Cellular Endocrinology. 1988; (1-2):115-121.,
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(1988). Receptors for gonadotropin releasing hormone are present in rat oocytes. Endocrinology. 1988; (2):1205-1207.,
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(1987). Fertilization in vitro of rat oocytes undergoing maturation in response to a GnRH analogue. Journal of Reproduction and Fertility. 1987; (2):531-535.,
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(1987). Maintenance of meiotic arrest in isolated rat oocytes by the invasive adenylate cyclase of Bordetella pertussis. Biology of Reproduction. 1987; (3):530-535.,
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(1986). HORMONAL-CONTROL OF OVULATION. Biochemical Actions Of Hormones. 1986; ():57-90.,
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(1985). Epidermal Growth Factor Induces Maturation of Rat Follicle-Enclosed Oocytes. Endocrinology. 1985; (1):406-409.,
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(1985). Mammalian fertilization as seen with the scanning electron microscope. American Journal of Anatomy. 1985; (3):357-372.,
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(1985). Characterization of the maturational changes induced by a GnRH analogue in the rat ovarian follicle. Journal of Reproduction and Fertility. 1985; (2):461-466.,
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(1985). Activators of protein kinase C stimulate meiotic maturation of rat oocytes. Biochemical and Biophysical Research Communications. 1985; (2):570-574.,
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(1984). Spontaneous maturation in vitro of cumulus-enclosed rat oocytes is inhibited by forskolin. Biology of Reproduction. 1984; (2):244-250.,
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(1984). Gonadotropin releasing hormone: Regulation of phospholipid turnover and prostaglandin production in ovarian granulosa cells. Life Sciences. 1984; (4):389-398.,
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(1983). Induction of maturation of rat follicle-enclosed oocyte by forskolin. FEBS Letters. 1983; (1):153-155.,
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(1983). Dissociation between the direct stimulatory and inhibitory effects of a gonadotropin-releasing hormone analog on ovarian functions. Molecular and Cellular Endocrinology. 1983; (2-3):261-270.,
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(1983). A Comparative-Study Of The Mechanism Of Action Of Luteinizing-Hormone And A Gonadotropin-Releasing Hormone Analog On The Ovary. Biology of Reproduction. 1983; (1):161-166.,
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(1982). The Role Of Oocyte Maturation Inhibitor In Follicular Regulation Of Oocyte Maturation. Journal of Reproduction and Fertility. 1982; (2):541-551.,