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2022 · Medicina · open access

Complete Cycle Mapping Using a Quantitative At-Home Hormone Monitoring System in Prediction of Fertile Days, Confirmation of Ovulation, and Screening for Ovulation Issues Preventing Conception

Wegrzynowicz et al.

The finding, in our words

The study found that an at-home urine testing system could predict ovarian reserve, identify up to six fertile days and confirm ovulation by measuring four hormones across the menstrual cycle, potentially screening for ovulatory disorders in a decentralised setting.

A paraphrase to the Library’s standard, never the abstract. The source is one link away and is always the authority.

Labels

  1. 2025

    The Mira fertility monitor's LH surge and urine E1-3G levels correlated strongly with the ClearBlue Fertility Monitor's LH surge and low-to-high shift in both postpartum and perimenopause transitions, supporting at-home urine hormone monitoring for fertility tracking.

    Validating At-Home Urinary Hormone Measurements in Postpartum and Perimenopause Fertility TransitionsBouchard et al., Women's health reports · source ↗

    • urine
    • self-collection
    • validation
    • fertility
    • hormones
  2. 2025

    All five at-home urine ovulation predictor kits demonstrated high accuracy (92–97%) when compared with blood LH levels, though sensitivity varied widely from 38% to 77% with Clinical Guard the lowest. Patient experience was comparable across kits, though Clinical Guard was slightly less favoured for future use.

    Similar accuracy and patient experience with different one-step ovulation predictor kitsVanderhoff et al., Fertility and sterility (paywalled) · source ↗

    • blood
    • urine
    • self-collection
    • validation
    • venous-agreement
    • acceptability
    • fertility
    • hormones
  3. 2024

    This retrospective case series found that a protocol combining home-based urinary hormone testing with a smartphone application supported fertility management and family planning without unintended pregnancies. The findings suggest that integrating self-collected urinary data with digital tools offers a viable decentralised approach for ovulation prediction.

    Helping Patients to Predict and Confirm Ovulation with the Use of Combined Urinary Hormonal and Smartphone Technology: A Proof-of-Concept Retrospective Descriptive Case SeriesLeiva & Ecochard, Seminars in reproductive medicine · source ↗

    • multimodal
    • self-collection
    • fertility
    • hormones
    • urine
  4. 2023

    Quantitative at-home urine monitors clearly demarcated luteal phase transitions, luteinisation, progestation, and luteolysis, and identified anovulation across three clinical scenarios. This proof-of-concept suggests self-collected urine hormone measurements could help women target fertility interventions without clinic visits.

    Using Quantitative Hormonal Fertility Monitors to Evaluate the Luteal Phase: Proof of Concept Case StudyBouchard, Medicina · source ↗

    • urine
    • self-collection
    • fertility
    • hormones
  5. 2023

    Fertility patients commonly use direct-to-consumer ovulation prediction methods, yet reproductive endocrinologists rate the utility of these tests substantially lower than patients do. This discordance highlights the need for better patient education and guidelines to inform self-collection and interpretation of fertility biomarkers in decentralised care.

    Direct-to-consumer fertility testing: utilization and perceived utility among fertility patients and reproductive endocrinologistsPeipert et al., Reproductive biomedicine online (paywalled) · source ↗

    • acceptability
    • self-collection
    • fertility
    • hormones
    • urine