Related Experiment Video
Updated: May 13, 2026

The Immediate Partial Removal of Cumulus-Oocyte Complexes: A Refined Approach for Rapid Observation of In Vitro Fertilization
Published on: October 18, 2024
Personalized prediction of first-cycle in vitro fertilization success
Bokyung Choi1, Ernesto Bosch, Benjamin M Lannon
1Univfy, Los Altos, California 94022, USA.
Objective:
To test whether the probability of having a live birth (LB) with the first IVF cycle (C1) can be predicted and personalized for patients in diverse environments.
Design:
Retrospective validation of multicenter prediction model.
Setting:
Three university-affiliated outpatient IVF clinics located in different countries.
Patient(S):
Using primary models aggregated from >13,000 C1s, we applied the boosted tree method to train a preIVF-diversity model (PreIVF-D) with 1,061 C1s from 2008 to 2009, and validated predicted LB probabilities with an independent dataset comprising 1,058 C1s from 2008 to 2009.
Intervention(S):
None.
Main Outcome Measure(S):
Predictive power, reclassification, receiver operator characteristic analysis, calibration, dynamic range.
Result(S):
Overall, with PreIVF-D, 86% of cases had significantly different LB probabilities compared with age control, and more than one-half had higher LB probabilities. Specifically, 42% of patients could have been identified by PreIVF-D to have a personalized predicted success rate >45%, whereas an age-control model could not differentiate them from others. Furthermore, PreIVF-D showed improved predictive power, with 36% improved log-likelihood (or 9.0-fold by log-scale; >1,000-fold linear scale), and prediction errors for subgroups ranged from 0.9% to 3.7%.
Conclusion(S):
Validated prediction of personalized LB probabilities from diverse multiple sources identify excellent prognoses in more than one-half of patients.
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