To determine the effect of luteinized unruptured follicle (LUF) cycles on frozen thawed embryo transfer (FET).
Design
A retrospective analysis comparing the clinical outcomes after FET among 144 cases of luteinized unruptured follicle (LUF) cycles and 866 cases of ovulation cycles.
Setting
Reproductive medical center, Beijing China.
Patients
Chinese infertile women who underwent FET.
Interventions
None.
Main Outcome Measures
Clinical pregnancy rate (PR), implantation rate.
Results
The implantation rate, clinical pregnancy rate, on-going pregnancy rate and live birth rate in LUF group were 12.76% (49/384), 27.78% (40/144), 24.31% (35/144) and 19.44% (28/144), respectively, and in ovulation group, 14.74% (332/2251), 31.29% (271/866), 28.29% (245/866) and 22.23% (193/866), respectively (p > 0.05).
Conclusions
LUF does not affect the clinical outcomes of FET. Patients of LUF should be included in FET treatment.
PMID 18566885 18566885 DOI 10.1007/s10815-008-9225-2 10.1007/s10815-008-9225-2
Cite this article
Wang, L., Qiao, J., Liu, P., & Lian, Y. (2008). Effect of luteinized unruptured follicle cycles on clinical outcomes of frozen thawed embryo transfer in Chinese women. Journal of assisted reproduction and genetics, 25(6), 229-233. https://doi.org/10.1007/s10815-008-9225-2
Wang L, Qiao J, Liu P, Lian Y. Effect of luteinized unruptured follicle cycles on clinical outcomes of frozen thawed embryo transfer in Chinese women. J Assist Reprod Genet. 2008;25(6):229-233. doi:10.1007/s10815-008-9225-2
Wang, Lina, et al. "Effect of luteinized unruptured follicle cycles on clinical outcomes of frozen thawed embryo transfer in Chinese women." Journal of assisted reproduction and genetics, vol. 25, no. 6, 2008, pp. 229-233.
Although adequate luteal hormone production is essential for establishing pregnancy, luteal phase deficiency (LPD) is poorly characterized among eumenorrheic women. We assessed the prevalence and overlap of two established short luteal phase duration less than10 days (clinical LPD) and suboptimal luteal progesterone of 5 ng/mL or less (biochemical LPD) and their relationship with reproductive hormone concentrations.
Design, Setting, We conducted a prospective study in western New York (2005-2007) following 259 women, aged 18-44 years, for up to two menstrual cycles. Among ovulatory cycles with recorded cycle lengths (n = 463), there were 41 cycles (8.9%) with clinical LPD, 39 cycles (8.4%) with biochemical LPD, and 20 cycles (4.3%) meeting both criteria. Recurrent clinical and biochemical LPD was observed in eight (3.4%) and five (2.1%) women, respectively. Clinical and biochemical LPD were each associated with lower follicular estradiol (both P ≤ .001) and luteal estradiol (P = .03 and P = .02, respectively) after adjusting for age, race, and percentage body fat. Clinical, but not biochemical, LPD was associated with lower LH and FSH across all phases of the cycle (P ≤ .001). Clinical and biochemical LPD were evident among regularly menstruating women. Estradiol was lower in LPD cycles under either criterion, but LH and FSH were lower only in association with shortened luteal phase (ie, clinical LPD), indicating that clinical and biochemical LPD may reflect different underlying mechanisms. Identifying ovulation in combination with a well-timed luteal progesterone measurement may serve as a cost-effective and specific tool for LPD assessment by clinicians and researchers.
Hilgers TW, 2004·The Medical and Surgical Practice of NaProTECHNOLOGY
A CrMS-synchronized hormone sampling protocol is detailed in which progesterone, estradiol, and other reproductive hormones are drawn at cycle-phase-specific time points defined by the charted Peak Day rather than by fixed cycle day, producing a targeted hormone profile that accurately reflects luteal and follicular function. This Peak Day-referenced approach substantially improves the diagnostic sensitivity for luteal phase deficiency, follicular dysfunction, and other endocrine abnormalities that fixed-day sampling routinely misclassifies.
Platelet-rich plasma (PRP) has become a novel treatment in various aspects of medicine including orthopedics, cardiothoracic surgery, plastic surgery, dermatology, dentistry, and diabetic wound healing. PRP is now starting to become an area of interest in reproductive medicine more specifically focusing on infertility. Poor ovarian reserve, menopause, premature ovarian failure, and thin endometrium have been the main areas of research. The aim of this article is to review the existing literature on the effects of autologous PRP in reproductive medicine providing a summation of the current studies and assessing the need for additional research. A literature search is performed using PubMed, MEDLINE, and CINAHL Plus to identify studies focusing on the use of PRP therapy in reproductive medicine. Articles were divided into 3 PRP in thin lining, PRP in poor ovarian reserve, and PRP in recurrent implantation failure. In women with thin endometrium, the literature shows an increase in endometrial thickness and increase in chemical and clinical pregnancy rates following autologous PRP therapy. In women with poor ovarian reserve, autologous intraovarian PRP therapy increased anti-Mullerian hormone (AMH) levels and decreased follicle-stimulating hormone (FSH), with a trend toward increasing clinical and live birth rates. This trend was also noted in women with recurrent implantation failure. Limited literature shows promise in increasing endometrial thickness, increasing AMH, and decreasing FSH levels, as well as increasing chemical and clinical pregnancy rates. The lack of standardization of PRP preparation along with the lack of large randomized controlled trials needs to be addressed in future studies. Until definitive large RCTs are available, PRP use should be considered experimental.