Personalized application of machine learning algorithms to identify pediatric patients at risk for recurrent

Erik Drysdale1, Adree Khondker2,3, Jin K Kim2,4

  • 1AI in Medicine Initiative, The Hospital for Sick Children, Toronto, ON, Canada.

World Journal of Urology
|November 13, 2021
PubMed

Insights

Machine learning accurately predicts re-intervention risk after pyeloplasty in children. This tool helps personalize care by assessing survival risk and time to re-intervention for pediatric urology patients.

Area of Science:

  • Pediatric Urology
  • Machine Learning in Medicine
  • Surgical Outcomes Research

Background:

  • Pyeloplasty is a common procedure for pediatric ureteropelvic junction obstruction.
  • Predicting recurrent obstruction and re-intervention needs is crucial for patient management.
  • Current methods for risk stratification are limited.

Purpose of the Study:

  • To develop a machine learning (ML) model for predicting recurrent obstruction after pyeloplasty in children.
  • To determine a survival risk score and estimate time to re-intervention.
  • To provide personalized risk stratification for pediatric pyeloplasty patients.

Main Methods:

  • Retrospective review of 543 pediatric patients undergoing pyeloplasty (2008-2020).
  • Development of a two-stage ML model using clinical data, ultrasound findings, and anatomical variations.
  • Logistic lasso and survival models were fitted and trained; feature importance assessed via post-selection inference.

Main Results:

  • The ML model demonstrated strong performance with leave-one-out cross-validation AUROC of 0.86 and concordance of 0.78.
  • Significant predictors for negative outcomes included larger postoperative anteroposterior diameter and concurrent anomalies.
  • An interactive online tool was developed for risk assessment: https://sickkidsurology.shinyapps.io/PyeloplastyReOpRisk/.

Conclusions:

  • The developed ML model effectively predicts the risk and timing of re-intervention post-pyeloplasty.
  • This novel ML approach offers personalized risk stratification in pediatric urology.
  • Further real-world validation of the model is recommended.
Abstract

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