A significant portion of human infertility is presumably due to defective ovulation, including patients who fail to conceive despite medical induction of ovulation, those who fail despite repeated timely donor inseminations, and those with "infertility of unknown etiology". All point out the inadequacy of standard criteria for normal ovulation. This investigation correlates preovulatory serum estradiol and gonadotropin concentrations with dominant follicle growth measured ultrasonographically and serum progesterone levels. The data indicate a 35% incidence of cycles with significantly abnormal serum estradiol levels, decreased dominant follicle size, and abnormal progesterone levels despite biphasic basal body temperature curves and normal cycle length. If these cycles represent inadequate or abnormal ovulation, they can be distinguished from adequate cycles prior to follicle rupture and may benefit the treatment of human infertility.
PMID 7060784 7060784 DOI 10.1016/s0015-0282(16)46093-0 10.1016/s0015-0282(16)46093-0 Polan et al. 1982, Polan 1982
Cite this article
Polan, M. N., Totora, M., Caldwell, B. V., DeCherney, A. H., Haseltine, F. P., & Kase, N. (1982). Abnormal ovarian cycles as diagnosed by ultrasound and serum estradiol levels. Fertility and sterility, 37(3), 342-347. https://doi.org/10.1016/s0015-0282(16)46093-0
Polan MN, Totora M, Caldwell BV, DeCherney AH, Haseltine FP, Kase N. Abnormal ovarian cycles as diagnosed by ultrasound and serum estradiol levels. Fertil Steril. 1982;37(3):342-347. doi:10.1016/s0015-0282(16)46093-0
Polan, Meltem Nermin, et al. "Abnormal ovarian cycles as diagnosed by ultrasound and serum estradiol levels." Fertility and sterility, vol. 37, no. 3, 1982, pp. 342-347.
To characterize how the menstrual cycle pattern relates to fertility regardless of potential biases caused by inappropriate coital timing during the menstrual cycle or early embryonal loss. Prospective follow-up study. Healthy couples recruited throughout Denmark. PATIENT(S): Two hundred ninety-five couples who were planning their first pregnancy were followed up from the discontinuation of birth control until a pregnancy was recognized within six menstrual cycles. Early embryonal losses were detected by changes in urinary hCG levels. INTERVENTION(S): None. MAIN OUTCOME MEASURE(S): The probability of pregnancy occurring within one menstrual cycle (fecundity). RESULT(S): In women who had a cycle length that differed by >10 days from the usual cycle length, fecundity was approximately 25% that of women who had no variation (odds ratio 0.25, 95% confidence interval 0.09-0.68). When the combined effect of cycle variation and cycle length was assessed, cycle variation was a persistent strong predictor of fecundity. CONCLUSION(S): The mechanisms of the present findings probably are female functional disturbances in ovulation, conception, implantation, or sustained pregnancy, linked with variable menstrual cycle length. Thus, identification of medical and environmental causes of abnormal menstrual cycle patterns may provide clues to the causes of infertility. Moreover, the menstrual cycle pattern also should be taken into consideration in the clinical decision-making process.
To assess the sensitivity and specificity of common clinical tests used for the diagnosis of luteal phase defect (LPD). The sensitivity and specificity of these tests for predicting low integrated P levels over the luteal phase were calculated. Outpatient reproductive endocrinology and infertility clinic at a university medical center. Fifty-eight strictly defined normal women were used to determine normal integrated luteal phase P levels. The study population was a separate 34 women who either were normal (n = 15) or were being evaluated for infertility or recurrent abortion (n = 19). These 34 study subjects all had the following tests performed in the same menstrual cycle: daily reproductive hormone levels, daily assessment of preovulatory follicle size, late luteal endometrial biopsies, and BBT charts. Basal body temperature, maximum preovulatory follicle size, dated endometrial biopsies, and serum P levels (single and multiple) were used in an attempt to predict which patients had low integrated P levels. Unacceptably low sensitivity and/or specificity levels were found for the following tests: appearance of BBT charts, luteal phase length, and preovulatory follicle diameter. Timed endometrial biopsy was found to have marginally acceptable sensitivity and specificity levels whether dated by next menstrual period or midcycle events. The best test for the prediction of low integrated P was a single serum P level from the midluteal phase that was < 10 ng/mL (31.8 nmol/L) or a sum of three random serum P measurements that was < 30 ng/mL (95.4 nmol/L) (also obtained in the midluteal phase). Luteal phase defect is a relatively uncommon but important cause of infertility and/or habitual abortion. The recommended test for the determination of LPD is a midluteal phase single serum P level < 10 ng/mL or the sum of three serum P levels that is < 30 ng/mL. The endometrial biopsy is a second line test that is only recommended when LPD needs to be evaluated in a treated cycle (ovulation induction or supplemental P).
A prospective, controlled study of ovarian function using ovarian ultrasound and daily plasma hormone estimations (estradiol, progesterone [P], follicle-stimulating hormone [FSH], luteinizing hormone [LH]) was carried out on 175 spontaneously cycling patients with unexplained infertility. Forty-one (23.4%) demonstrated luteal phase cyst formation. In 21 cycles the dominant follicle reduced in size after the LH peak (cystic corpus luteum cycles), and in 20 no shrinkage was seen (luteinized unruptured follicles). Progesterone concentrations in the early luteal phase were significantly reduced in the luteinized unruptured follicle cycles. Elevation in plasma FSH was seen in the early follicular and luteal phases of both cyst forming groups and may be due to disturbances in ovarian metabolism. Follicular rupture is important for efficient P release by the corpus luteum.
The authors have further analyzed women diagnosed as having luteal phase insufficiency in hope of determining the value of specific screening tests as well as determining the degree of heterogeneity of pathophysiologic mechanisms involved in the disorder. Twelve women with the disorder were identified, 6 with two consecutive midluteal serum progesterone (P) levels less than 10 ng/ml (group 1) and 6 with two consecutive late luteal phase endometrial biopsies out of phase (group 2); 4 infertile women with normal serum P and late luteal biopsies also were studied (group 3). All underwent serum sampling for P and luteinizing hormone (LH) at 20-minute intervals for 24 hours, beginning at 9:00 A.M. of day 7 post-LH surge. No significant differences were noted among the three groups for LH area under the curve, pulse frequency, or pulse amplitude. Furthermore, no differences were ascertained for P area under the curve. However, individuals were identified who had one or more hormonal abnormalities but no abnormal biopsy, as well as patients with normal hormonal profiles but having abnormal endometrial development. Receiver Operating Characteristic curves demonstrated that pooled morning serum P levels provided optimal predictive ability of biopsy results. The authors conclude that luteal phase insufficiency is a heterogeneous disorder, and that neither endometrial biopsy nor serum hormonal analysis obviates the need for the other.