Cycle Biomarkers · Hormonal Markers
Ecochard R et al., 2001 · BJOG
To improve prediction of ovulation in normal cycles. Collection of women's characteristics and their menstrual cycles. Monitoring and analysis of time relationships between several indicators of ovulation: transvaginal ultrasonography, cervical mucus, basal body temperature, urinary luteinising hormone, and ratio of urinary oestrogen to progesterone metabolites. Each of eight natural family planning clinics was to study 12 women for at least three cycles. One hundred and seven normally fertile and cycling women aged 18 to 45. Daily measurements of urinary luteinising hormone, follicle stimulating hormone, oestrone-3-glucuronide and pregnanediol-3alpha-glucuronide. Basal body temperature recording and cervical mucus checking. Transvaginal ultrasound examination of the ovaries. Delays between the expected day of ovulation according to the luteinising hormone peak or to ultrasound evidence and the expected days according to the other indices of ovulation. Ultrasonography was able to show evidence of ovulation in 283 out of 326 cycles. The average time lag between luteinising hormone peak and ultrasound evidence was less than one day (+0.46) but premature and late luteinising hormone-expected date of ovulation were observed in nearly 10% and 23% of cycles, respectively. Basal body temperature rise was observed in 98% of cycles. Cervical mucus peak symptom, rapid drop in the ratio of urinary metabolites, and luteinising hormone initial rise were all close to ultrasonographic evidence in more than 72% of cycles. For accuracy and practical reasons, the cervical mucus peak symptom, the ratio of urinary metabolites and luteinising hormone initial rise might be better indices of ovulation than the luteinising hormone peak.
Cycle Physiology · Hormonal Regulation
Moghissi KS et al., 1972 · Am J Obstet Gynecol
Ten ovulating women were studied to assess the interrelationships of various systemic, hormonal, and reproductive tract changes during normal menstrual cycles. Samples of blood, 24 hour urine specimens, vaginal smears, and cervical mucus were obtained every 2 days preand post-menstrually and daily in mid-cycle. Endometrial biopsies were performed at the onset of or immediately before menstruation, and the basal body temperature was recorded. Data for 10 cycles were fed into a computer, and mean reciprocal relationships were determined. The results were: (1) All endometrial biopsies reflected the late secretory phase; (2) there was a simultaneous mid-cycle surge of luteinizing hormone (LH) and folliclestimulating hormone (FSH), and serum concentrations of FSH and LH were significantly lower in the luteal phase compared to the follicular phase; (3) urinary peaks of estrone, estradiol and total estrogens occurred on the day before and that of estriol occurred on the day of the LH surge; (4) serum progesterone began to rise just before the LH peak, reached a high level 7 days after the LH peak, declined precipitately on Day 9, and rose again on Day 10, to decrease slowly until the onset of menstruation; (5) a significant relationship was observed between the LH peak and the basal body temperature; (6) urinary pregnanediol levels closely paralleled serum progesterone concentrations; (7) vaginal cytology revealed a karyopyknotic index peak the day following the LH peak; (8) properties of cervical mucus showed a remarkable relationship to the ovulatory estrogen peak.
Effectiveness · Fertile Window Estimation
Fehring RJ et al., 1998 · J Nurse Midwifery
The purpose of this pilot study was to correlate the three biologic markers of the Ovulon fertility monitor (a long-term predictive peak about 6 days before ovulation, a short-term predictive peak about 1 day before ovulation, and a nadir at the time of ovulation) with the peak in cervical mucus and the luteinizing hormone (LH) surge in the urine. Ten volunteer subjects (mean age 30.2 years) monitored their cervical-vaginal mucus, the surge of LH in the urine with a home assay test, and their vaginal electrical readings (with Ovulon monitors) on a daily basis for one to four menstrual cycles. In 19 of the 21 cycles that indicated a LH surge, there was a strong positive correlation between the LH surge and the peak of cervical-vaginal mucus (r = 0.96, P < or = .01), and between the LH surge and both the Ovulon nadir and Ovulon short-term predictive peak (r = 0.84, P < or = .01), and a modest positive correlation between the long-term Ovulon predictive peak and the LH surge (r = 0.62, P < or = .01). The time of optimal fertility as determined by the peak in cervical mucus, the LH surge, and the Ovulon was similar. The Ovulon has potential as a reusable device to help women determine their fertile period.
Biomarkers · Cervical Mucus
Fehring RJ, 2002 · Contraception
The (PD) peak day of cervical mucus is an important biologic marker for the self-determination of the optimal time of fertility in a woman's menstrual cycle. The purpose of this article is to provide evidence (literature and empiric) for the accuracy of the PD of cervical mucus as a biologic marker of peak fertility and the estimated day of ovulation. An analysis of data from four published studies that compared the self-determination of the PD of cervical mucus with the urinary luteinizing hormone (LH) surge was conducted. The four studies yielded 108 menstrual cycle charts from 53 women participants. The 108 cycles ranged in length from 22 to 75 days (mean 29.4 SD 6.0). Ninety-three of the 108 cycles had both an identified PD and LH surge. Data charts showed that 97.8% of the PD fell within +/-4 days of the estimated day of ovulation. Use of a standardized mucus cycle scoring system indicated that the peak in cervical mucus ratings was highest on the day of the LH surge. Self-determination of the PD of cervical mucus is a very accurate means of determining peak fertility and a fairly accurate means of determining the day of ovulation and the beginning of the end of the fertile time.