Development of an accessible 10-year Digital CArdioVAscular (DiCAVA) risk assessment: a UK Biobank study

Nikola Dolezalova1, Angus B Reed1, Aleksa Despotovic1,2

  • 1Department of Research and Development, Huma Therapeutics Limited, Millbank Tower, 21-24 Millbank, London SW1P 4QP, UK.

Insights

A new cardiovascular disease (CVD) risk model, DiCAVA, was developed using machine learning. It accurately predicts 10-year CVD risk remotely and identifies new patient-centric variables, outperforming existing scores.

Area of Science:

  • Cardiology
  • Biostatistics
  • Machine Learning
  • Public Health

Background:

  • Cardiovascular diseases (CVDs) are a leading global cause of mortality.
  • Current CVD risk scores often require physician involvement and lack personalization.
  • There is a need for accessible, remote CVD risk assessment tools.

Purpose of the Study:

  • To develop a novel cardiovascular risk model (DiCAVA) using statistical and machine learning.
  • To enable remote application of CVD risk assessment.
  • To identify novel patient-centric variables for improved CVD risk prediction.

Main Methods:

  • Trained Cox proportional hazards (CPH) and DeepSurv models on 466,052 participants from UK Biobank.
  • Utilized data-driven feature selection to reduce 608 variables to 47.
  • Compared model performance against the Framingham score using c-index and calibration metrics.

Main Results:

  • Both CPH (c-index: 0.7443) and DeepSurv (c-index: 0.7446) models demonstrated superior CVD risk prediction compared to the Framingham score.
  • Performance remained high even when excluding cholesterol and blood pressure (CPH: 0.741, DeepSurv: 0.739).
  • Models exhibited excellent calibration and discrimination on test data.

Conclusions:

  • Developed DiCAVA, a cardiovascular risk model with strong predictive power and novel variables.
  • The model is suitable for remote settings and clinical practice, potentially without requiring cholesterol levels.
  • Future research will focus on external validation in diverse populations.
Abstract

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