In vitro viability and secretory capacity of human luteinized granulosa cells after gonadotropin-releasing hormone agonist trigger of oocyte maturation
Author:
Publisher
Elsevier BV
Subject
Obstetrics and Gynecology,Reproductive Medicine
Reference23 articles.
1. Serum inhibin A, VEGF and TNFalpha levels after triggering oocyte maturation with GnRH agonist compared with HCG in women with polycystic ovaries undergoing IVF treatment: a prospective randomized trial;Babayof;Hum Reprod,2006
2. The use of gonadotropin-releasing hormone (GnRH) agonist to induce oocyte maturation after cotreatment with GnRH antagonist in high-risk patients undergoing in vitro fertilization prevents the risk of ovarian hyperstimulation syndrome: a prospective randomized controlled study
3. Gonadotropin-releasing hormone agonist trigger: the way to eliminate ovarian hyperstimulation syndrome—a 20-year experience;Kol;Semin Reprod Med,2010
4. Nonsupplemented Luteal Phase Characteristics after the Administration of Recombinant Human Chorionic Gonadotropin, Recombinant Luteinizing Hormone, or Gonadotropin-Releasing Hormone (GnRH) Agonist to Induce Final Oocyte Maturation inin VitroFertilization Patients after Ovarian Stimulation with Recombinant Follicle-Stimulating Hormone and GnRH Antagonist Cotreatment
5. GnRH agonist to induce oocyte maturation during IVF in patients at high risk of OHSS;Engmann;Reprod Biomed Online,2006
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1. Luteal Phase Support Other than Progesterone;Ovarian Stimulation;2022-04-30
2. Does gonadotropin-releasing hormone agonist cause luteolysis by inducing apoptosis of the human granulosa-luteal cells?;Journal of Assisted Reproduction and Genetics;2021-05-24
3. Inhibition of neddylation causes meiotic arrest in mouse oocyte;Cell Cycle;2019-05-21
4. Low dose human chorionic gonadotropin administration at the time of gonadotropin releasing-hormone agonist trigger versus 35 h later in women at high risk of developing ovarian hyperstimulation syndrome – a prospective randomized double-blind clinical trial;Journal of Ovarian Research;2019-01-26
5. PHF1 is required for chromosome alignment and asymmetric division during mouse meiotic oocyte maturation;Cell Cycle;2018-11-11
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