Framework for detection and localization of coronary non-calcified plaques in cardiac CTA using mean radial profiles

Muhammad Moazzam Jawaid1, Atif Riaz2, Ronak Rajani3

  • 1City University of London, Northampton Square, London EC1V 0HB, UK; Mehran University of Engineering & Technology, Jamshoro, Pakistan.

Insights

This study introduces a novel method using mean radial profiles for detecting non-calcified plaques in coronary computed tomography angiography (CTA) scans, achieving 88.4% accuracy. The technique also accurately localizes plaque position and length, improving cardiovascular disease diagnosis.

Area of Science:

  • Medical Imaging
  • Cardiovascular Disease Research
  • Artificial Intelligence in Healthcare

Background:

  • Coronary heart disease (CHD) poses significant mortality risks, necessitating advanced diagnostic tools.
  • Computed tomography angiography (CTA) enables non-invasive detection of coronary artery calcifications.
  • Identifying non-calcified plaques in CTA remains challenging due to low contrast with surrounding tissues.

Purpose of the Study:

  • To develop and validate a novel method for detecting non-calcified coronary plaques in CTA imagery.
  • To improve the accuracy and reliability of non-invasive cardiovascular anomaly diagnosis.

Main Methods:

  • Radial profiles were computed by averaging image intensity in concentric rings around the vessel centerlines.
  • A Support Vector Machine (SVM) classifier was employed to identify abnormal coronary segments.
  • A derivative-based method was developed for precise localization of plaque position and length in occluded segments.

Main Results:

  • The proposed method achieved an 88.4% detection accuracy compared to manual expert analysis across 32 CTA volumes.
  • Plaque localization accuracy, measured by the Dice similarity coefficient, averaged 83.2%.

Conclusions:

  • The mean radial profile method demonstrates robust performance in detecting non-calcified plaques in CTA.
  • The technique shows consistent, reproducible results across multi-vendor and multi-institution CTA datasets, agreeing well with expert annotations.
Abstract

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