Machine learning for predicting hemorrhage in pediatric patients with brain arteriovenous malformation

J Neurosurg Pediatr. 2022 Jun 3;30(2):203-209. doi: 10.3171/2022.4.PEDS21470. Print 2022 Aug 1.

Abstract

Objective: Ruptured brain arteriovenous malformations (bAVMs) in a child are associated with substantial morbidity and mortality. Prior studies investigating predictors of hemorrhagic presentation of a bAVM during childhood are limited. Machine learning (ML), which has high predictive accuracy when applied to large data sets, can be a useful adjunct for predicting hemorrhagic presentation. The goal of this study was to use ML in conjunction with a traditional regression approach to identify predictors of hemorrhagic presentation in pediatric patients based on a retrospective cohort study design.

Methods: Using data obtained from 186 pediatric patients over a 19-year study period, the authors implemented three ML algorithms (random forest models, gradient boosted decision trees, and AdaBoost) to identify features that were most important for predicting hemorrhagic presentation. Additionally, logistic regression analysis was used to ascertain significant predictors of hemorrhagic presentation as a comparison.

Results: All three ML models were consistent in identifying bAVM size and patient age at presentation as the two most important factors for predicting hemorrhagic presentation. Age at presentation was not identified as a significant predictor of hemorrhagic presentation in multivariable logistic regression. Gradient boosted decision trees/AdaBoost and random forest models identified bAVM location and a concurrent arterial aneurysm as the third most important factors, respectively. Finally, logistic regression identified a left-sided bAVM, small bAVM size, and the presence of a concurrent arterial aneurysm as significant risk factors for hemorrhagic presentation.

Conclusions: By using an ML approach, the authors found predictors of hemorrhagic presentation that were not identified using a conventional regression approach.

Keywords: arteriovenous malformation; hemorrhage; machine learning; model; pediatric; vascular disorders.

Publication types

  • Research Support, N.I.H., Extramural
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Brain
  • Child
  • Hemorrhage
  • Humans
  • Intracranial Arteriovenous Malformations* / complications
  • Intracranial Arteriovenous Malformations* / diagnostic imaging
  • Intracranial Hemorrhages* / complications
  • Intracranial Hemorrhages* / etiology
  • Machine Learning
  • Retrospective Studies