Endometrial delay is found to be part of a normal individual dynamic transformation process
暂无分享,去创建一个
M. Beckmann | R. Popovici | A. Fattahi | R. Dittrich | Nathalie Bleisinger | J. Alfer | J. Krieg | A. Hartmann
[1] M. Beckmann,et al. Endometrial Dating Method Detects Individual Maturation Sequences During the Secretory Phase , 2020, In Vivo.
[2] B. Borekci,et al. Comparison of pregnancy rates between patients with and without local endometrial scratching before intrauterine insemination. , 2017, Journal of gynecology obstetrics and human reproduction.
[3] M. Eijkemans,et al. Endometrial scratching in women with implantation failure after a first IVF/ICSI cycle; does it lead to a higher live birth rate? The SCRaTCH study: a randomized controlled trial (NTR 5342) , 2017, BMC Women's Health.
[4] D. Valbuena,et al. Introduction: Endometrial function: facts, urban legends, and an eye to the future. , 2017, Fertility and sterility.
[5] C. Simón,et al. Implantation failure of endometrial origin: it is not pathology, but our failure to synchronize the developing embryo with a receptive endometrium. , 2017, Fertility and sterility.
[6] M. Beckmann,et al. Insufficient Angiogenesis: Cause of Abnormally Thin Endometrium in Subfertile Patients? , 2017, Geburtshilfe und Frauenheilkunde.
[7] A. Kriplani,et al. Pregnancy after endometrial scratching in infertile couples undergoing ovulation induction and intrauterine insemination cycles—a randomized controlled trial , 2017, Journal of Assisted Reproduction and Genetics.
[8] Zhaogui Sun,et al. Effect of high ovarian response on the expression of endocrine gland-derived vascular endothelial growth factor (EG-VEGF) in peri-implantation endometrium in IVF women. , 2015, International journal of clinical and experimental pathology.
[9] E. Baştu,et al. Role of Mucin 1 and Glycodelin A in recurrent implantation failure. , 2015, Fertility and sterility.
[10] S. Kahraman,et al. Comparison of endometrial biopsies of fertile women and women with repeated implantation failure at the ultrastructural level. , 2015, Turkish journal of medical sciences.
[11] X. Xi,et al. Endometrial thickness affects the outcome of in vitro fertilization and embryo transfer in normal responders after GnRH antagonist administration , 2014, Reproductive Biology and Endocrinology.
[12] Z. Mazaheri,et al. Assessment of α4, αv, β1 and β3 integrins expression throughout the implantation window phase in endometrium of a mouse model of polycystic ovarian syndromes , 2014, Iranian journal of reproductive medicine.
[13] C. Stewart,et al. The LIF-Mediated Molecular Signature Regulating Murine Embryo Implantation1 , 2014, Biology of reproduction.
[14] R. Savaris,et al. Endometrial beta3 Integrin profile reflects endometrial receptivity defects in women with unexplained recurrent pregnancy loss , 2014, Reproductive Biology and Endocrinology.
[15] T. Gurgan,et al. Recurrent implantation failure: definition and management. , 2014, Reproductive biomedicine online.
[16] J. Levron,et al. Thin endometrium in donor oocyte recipients: enigma or obstacle for implantation? , 2013, Fertility and sterility.
[17] Ming-qing Li,et al. Ovarian stimulation for in vitro fertilization alters the protein profile expression in endometrial secretion. , 2013, International journal of clinical and experimental pathology.
[18] V. Peinado,et al. Use of array comparative genomic hybridization (array-CGH) for embryo assessment: clinical results. , 2013, Fertility and sterility.
[19] D. Blesa,et al. The accuracy and reproducibility of the endometrial receptivity array is superior to histology as a diagnostic method for endometrial receptivity. , 2013, Fertility and sterility.
[20] J. Zhao,et al. The effect of endometrial thickness and pattern measured by ultrasonography on pregnancy outcomes during IVF-ET cycles , 2012, Reproductive Biology and Endocrinology.
[21] M. Eid,et al. Assessment of leukemia inhibitory factor and glycoprotein 130 expression in endometrium and uterine flushing: a possible diagnostic tool for impaired fertility , 2012, BMC Women's Health.
[22] C. Simón,et al. A genomic diagnostic tool for human endometrial receptivity based on the transcriptomic signature. , 2011, Fertility and sterility.
[23] C. Librach,et al. Assisted reproductive technologies (ART) in Canada: 2006 results from the Canadian ART Register. , 2010, Fertility and sterility.
[24] R. Reich,et al. Disrupted gene pattern in patients with repeated in vitro fertilization (IVF) failure. , 2009, Human reproduction.
[25] P. Devroey,et al. In GnRH antagonist/rec-FSH stimulated cycles, advanced endometrial maturation on the day of oocyte retrieval correlates with altered gene expression. , 2009, Human reproduction.
[26] B. Fauser,et al. The feasibility of a less invasive method to assess endometrial maturation—comparison of simultaneously obtained uterine secretion and tissue biopsy , 2009, BJOG : an international journal of obstetrics and gynaecology.
[27] L. Giudice,et al. Molecular phenotyping of human endometrium distinguishes menstrual cycle phases and underlying biological processes in normo-ovulatory women. , 2006, Endocrinology.
[28] P. Vandekerckhove,et al. Investigation and current management of recurrent IVF treatment failure in the UK , 2005, BJOG : an international journal of obstetrics and gynaecology.
[29] P. Rogers,et al. Molecular classification of human endometrial cycle stages by transcriptional profiling. , 2004, Molecular human reproduction.
[30] E. Myers,et al. Histological dating of timed endometrial biopsy tissue is not related to fertility status. , 2004, Fertility and sterility.
[31] William R Meyer,et al. A critical analysis of the accuracy, reproducibility, and clinical utility of histologic endometrial dating in fertile women. , 2004, Fertility and sterility.
[32] Alison Taylor. Extent of the problem , 2003, BMJ : British Medical Journal.
[33] C. Simón,et al. Gene expression profiling of human endometrial receptivity on days LH+2 versus LH+7 by microarray technology. , 2003, Molecular human reproduction.
[34] A. Mahanta,et al. Histopathological study of endometrium in infertility. , 2003, Indian journal of pathology & microbiology.
[35] U. Bentin-Ley,et al. Biochemical evaluation of endometrial function at the time of implantation. , 2002, Fertility and sterility.
[36] R. Casamitjana,et al. Mid-luteal serum inhibin-A concentration as a marker of endometrial differentiation. , 2001, Human reproduction.
[37] P. Leavis,et al. Leptin upregulates beta3-integrin expression and interleukin-1beta, upregulates leptin and leptin receptor expression in human endometrial epithelial cell cultures. , 2001, Endocrine.
[38] H. M. Beier,et al. The endometrium as a novel target for leptin: differences in fertility and subfertility. , 2000, Molecular human reproduction.
[39] M. Illera,et al. Blockade of the αvβ3 Integrin Adversely Affects Implantation in the Mouse1 , 2000 .
[40] J. Kitawaki,et al. Expression of leptin receptor in human endometrium and fluctuation during the menstrual cycle. , 2000, The Journal of clinical endocrinology and metabolism.
[41] M. Fritz,et al. Use of integrins to date the endometrium. , 2000, Fertility and sterility.
[42] M. Illera,et al. Blockade of the alpha(v)beta(3) integrin adversely affects implantation in the mouse. , 2000, Biology of reproduction.
[43] P. Rogers,et al. Lack of correlation between vascular endothelial growth factor production and endothelial cell proliferation in the human endometrium. , 1999, Human reproduction.
[44] J. Ordi,et al. Integrin expression in normal and out-of-phase endometria. , 1998, Human reproduction.
[45] M. Kusche,et al. Marker molecules of human endometrial differentiation can be hormonally regulated under in-vitro conditions as in-vivo. , 1998, Human reproduction update.
[46] C. Simón,et al. Molecular interactions between embryo and uterus in the adhesion phase of human implantation. , 1998, Human reproduction.
[47] Y. Meng,et al. Ovarian steroid regulation of vascular endothelial growth factor in the human endometrium: implications for angiogenesis during the menstrual cycle and in the pathogenesis of endometriosis. , 1996, The Journal of clinical endocrinology and metabolism.
[48] F. Chehab,et al. Correction of the sterility defect in homozygous obese female mice by treatment with the human recombinant leptin , 1996, Nature Genetics.
[49] M. Paglierani,et al. Aging of the human endometrium: peri-implantation phase endometrium does not show any age-dependent variation in lectin binding. , 1996, European journal of obstetrics, gynecology, and reproductive biology.
[50] S. Akira,et al. Targeted Disruption of the IL‐6 Related Genes: gp130 and NF‐IL‐6 , 1995, Immunological reviews.
[51] L. Senturk,et al. Endometrial biopsy findings in infertility: analysis of 12,949 cases. , 1995, International journal of fertility and menopausal studies.
[52] T. Ord,et al. Oocyte donation in humans: a model to study the effect of age on embryo implantation rate. , 1994, Human reproduction.
[53] T. Inoue,et al. Expression of leukemia inhibitory factor in human endometrium and placenta. , 1994, Biology of reproduction.
[54] C. Stewart,et al. Blastocyst implantation depends on maternal expression of leukaemia inhibitory factor , 1992, Nature.
[55] Christos Coutifaris,et al. Integrin adhesion molecules in the human endometrium. Correlation with the normal and abnormal menstrual cycle. , 1992, The Journal of clinical investigation.
[56] A. C. Wentz. Endometrial biopsy in the evaluation of infertility. , 1980, Fertility and sterility.
[57] R. Noyes,et al. Dating the endometrial biopsy. , 1950, American journal of obstetrics and gynecology.
[58] C. Kaufmann. Therapeutics with Hormones of the Ovary : (Section of Therapeutics and Pharmacology). , 1934, Proceedings of the Royal Society of Medicine.