textabstractGonadotrophin-releasing hormone agonists (GnRHa) are widely used in in-vitro fertilization (IVF) for the prevention of a premature rise in luteinizing hormone (LH) concentrations. However, the administration of GnRHa during the follicular phase may also impair subsequent luteal function due to retarded recovery of pituitary gonadotrophin secretion. Therefore, luteal supplementation is generally applied. The present study was designed to determine whether a premature LH surge would still be prevented after early cessation of GnRHa during ovarian stimulation and whether subsequent luteal phase LH production would be sufficient to sup...
Knowledge of the physiology of folliculogenesis has led to a better understanding of the role of LH ...
It has been shown that in controlled ovarian hyper stimulation cycles, defective luteal phase is com...
Final oocyte maturation using GnRH-agonist trigger in a GnRH-antagonist protocol is increasingly com...
Replacing GnRH agonist cotreatment for the prevention of a premature rise in LH during ovarian stimu...
Ovarian stimulation in a gonadotropin-releasing hormone (GnRH) antagonist protocol with the use of G...
Gonadotropin-releasing hormone agonists (GnRHa) have gained increasing attention in the last decade ...
Replacing GnRH agonist cotreatment for the prevention of a premature rise in LH during ovarian stimu...
Luteal phase support or supplementation is a mandatory therapeutic intervention following controlled...
SummaryObjectiveWe investigated the influence of premature luteinization in in vitro fertilization u...
OBJECTIVE: The use of gonado-tropin-releasing hormone agonist for ovulation triggering has become an...
The objective of this study was to investigate the effect of luteinizing hormone levels on the day o...
Objective: Luteal phase is defective in in vitro fertilization (IVF) cycles, and many regimens were ...
Background: Luteinizing hormone (LH) is essential for normal follicular development and oocyte matur...
The addition of gonadotropin releasing hormone analog (GnRH-a) to controlled ovarian hyperstimulatio...
BACKGROUND: The aim of the study was to investigate whether intranasal (IN) administration of a GnRH...
Knowledge of the physiology of folliculogenesis has led to a better understanding of the role of LH ...
It has been shown that in controlled ovarian hyper stimulation cycles, defective luteal phase is com...
Final oocyte maturation using GnRH-agonist trigger in a GnRH-antagonist protocol is increasingly com...
Replacing GnRH agonist cotreatment for the prevention of a premature rise in LH during ovarian stimu...
Ovarian stimulation in a gonadotropin-releasing hormone (GnRH) antagonist protocol with the use of G...
Gonadotropin-releasing hormone agonists (GnRHa) have gained increasing attention in the last decade ...
Replacing GnRH agonist cotreatment for the prevention of a premature rise in LH during ovarian stimu...
Luteal phase support or supplementation is a mandatory therapeutic intervention following controlled...
SummaryObjectiveWe investigated the influence of premature luteinization in in vitro fertilization u...
OBJECTIVE: The use of gonado-tropin-releasing hormone agonist for ovulation triggering has become an...
The objective of this study was to investigate the effect of luteinizing hormone levels on the day o...
Objective: Luteal phase is defective in in vitro fertilization (IVF) cycles, and many regimens were ...
Background: Luteinizing hormone (LH) is essential for normal follicular development and oocyte matur...
The addition of gonadotropin releasing hormone analog (GnRH-a) to controlled ovarian hyperstimulatio...
BACKGROUND: The aim of the study was to investigate whether intranasal (IN) administration of a GnRH...
Knowledge of the physiology of folliculogenesis has led to a better understanding of the role of LH ...
It has been shown that in controlled ovarian hyper stimulation cycles, defective luteal phase is com...
Final oocyte maturation using GnRH-agonist trigger in a GnRH-antagonist protocol is increasingly com...