A machine learning analysis of predictors of future hypertension in a young population

Ozge Turgay Yildirim1, Mehmet Ozgeyik2, Selim Yildirim3,4

  • 1Department of Cardiology, Eskisehir City Hospital, Eskisehir, Türkiye - ozgeturgay@gmail.com.

Insights

Machine learning models identified key risk factors for future hypertension (HT) in young adults. Diabetes history, age, triglycerides, HDL cholesterol, and blood pressure variability are crucial predictors.

Area of Science:

  • Cardiovascular Medicine
  • Biostatistics
  • Artificial Intelligence in Healthcare

Background:

  • Early hypertension diagnosis is vital to prevent end-organ damage.
  • Identifying hypertension risk factors in young adults is crucial for proactive intervention.
  • Machine learning offers novel approaches for predicting future hypertension.

Purpose of the Study:

  • To identify risk factors for future hypertension in young individuals (18-40 years).
  • To apply and evaluate machine learning models for hypertension prediction.
  • To determine the most significant predictors of future hypertension.

Main Methods:

  • Utilized ambulatory blood pressure monitoring (ABPM) data from 516 individuals without prior hypertension diagnosis.
  • Employed three machine learning models: Support Vector Machine, Random Forest, and Least Absolute Shrinkage and Selection Operator.
  • Identified significant variables for future hypertension prediction based on model outcomes.

Main Results:

  • Age, high-density lipoprotein cholesterol, triglycerides, and standard deviation of systolic blood pressure (SDsis) were identified as predictors.
  • Logistic regression analysis indicated that a unit increase in most factors, except diabetes history, increased future HT probability by 50%.
  • A history of diabetes mellitus emerged as the most crucial predictor, increasing future HT probability by over two-thirds.

Conclusions:

  • Machine learning models are valuable tools for predicting future hypertension.
  • These findings highlight key modifiable and non-modifiable risk factors for early intervention.
  • Further development of comprehensive ML models is recommended for enhanced predictive accuracy.
Abstract

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