Temporal phenotyping of medically complex children via PARAFAC2 tensor factorization

Ioakeim Perros1, Evangelos E Papalexakis2, Richard Vuduc1

  • 1Georgia Institute of Technology, United States.

Insights

This study used PARAFAC2 on electronic health records to identify four key phenotypes in medically complex children. This computational approach aids in understanding patient conditions and improving clinical outcomes.

Area of Science:

  • Computational biology
  • Health informatics
  • Pediatric medicine

Background:

  • Medically complex children consume significant healthcare resources with suboptimal outcomes.
  • Electronic health records (EHRs) offer rich data for understanding complex conditions.
  • Manual chart review is time-consuming for phenotype extraction.

Purpose of the Study:

  • To computationally extract clinically meaningful phenotypes from longitudinal EHRs of medically complex children.
  • To identify phenotypes and their temporal evolution in a scalable manner.
  • To avoid manual chart review for phenotype identification.

Main Methods:

  • Analysis of longitudinal EHRs from 1045 medically complex patients.
  • Application of the PARAFAC2 tensor factorization method.
  • Extraction of patient representations and temporal phenotype signatures.

Main Results:

  • Identification of four distinct phenotypes: gastrointestinal, oncological, blood-related, and neurological disorders.
  • Demonstration of patient representations for survival variation analysis.
  • Showcasing of temporal phenotypic trends for individual patients.

Conclusions:

  • PARAFAC2 enables unsupervised temporal phenotyping with variable patient record lengths.
  • The method minimizes the burden on clinical experts for phenotype validation.
  • Computational phenotypes have applications in decision support, mortality prediction, and clinical trial recruitment.
Abstract

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