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Serial progesterone levels more accurately predict the time of ovulation in subfertile women: a prospective cohort study

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SPRINGER/PLENUM PUBLISHERS

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10.1007/s10815-023-02864-2

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PurposeTo predict ovulation in subfertile women using serial follicular growth (FG) and serum hormone measures (estradiol (E2), luteinizing hormone (LH), and progesterone (P) levels) in mathematical models.MethodsThis was a prospective observational study of 116 subfertile women aged between 18 and 40 years. FG was assessed by serial transvaginal ultrasonography starting from cycle days 8-12, depending on cycle length. Once the dominant follicle reached 15-16 mm, hormone levels were assessed daily. The primary outcome measure was ovulation (O-v), with a serum LH level & GE;15 IU/l defining the start of the LH surge (the day prior to ovulation) and a serum P level >1 & mu;g/ml concurrent with a drop in serum E2 levels indicating O-v. To determine O-v, mathematical models were generated using FG, LH, E2, and P measurements.ResultsA mathematical model was constructed using exponential regression to relate days until and after ovulation with P levels. The O-v(P) model was found to be superior to the O-v(LH) model in the prediction of O-v, with high R2 and low RMSE values of 0.9983 and 0.2454, respectively. In the range of [-2, 2] days, the net accuracy of the O-v(P) model was 63.0%, while with an allowed one-day error, the accuracy was 99.6%.ConclusionSerum P levels display a highly predictable linear curve in natural cycles, which enables the prediction of ovulation. The O-v(P) model can be independently used to schedule embryo transfer in natural frozen-thaw cycles and could therefore replace the O-v(LH) model in clinical practice.

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JOURNAL OF ASSISTED REPRODUCTION AND GENETICS

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1058-0468

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