3D quantitative evaluation of atherosclerotic plaque based on rotational angiography

A Chien1, J Sayre, B Dong

  • 1Division of Interventional Neuroradiology, David Geffen School of Medicine at UCLA, Los Angeles, California, USA. aichi@ucla.edu

Insights

A new method using rotational angiography (RA) accurately determines 3D atherosclerotic plaque volume. This technique shows feasibility in initial patient cases and phantom validation for improved cardiovascular disease assessment.

Area of Science:

  • Cardiovascular Imaging
  • Medical Technology
  • Biomedical Engineering

Background:

  • Atherosclerosis is a systemic disease linked to cardiovascular diseases and stroke.
  • Current technologies for quantifying atherosclerotic plaque volume are limited.
  • Accurate plaque volume assessment is crucial for understanding disease progression.

Purpose of the Study:

  • To present a novel method for determining 3D atherosclerotic plaque volume.
  • To utilize rotational angiography (RA) for plaque volume quantification.
  • To address the limitations in current plaque volume evaluation technologies.

Main Methods:

  • Utilized 3D rotational angiography (3DRA) images from six patients with atherosclerotic lesions.
  • Applied a plaque reconstruction (PR) model developed for 3DRA to analyze vessel geometry.
  • Calculated plaque volume and validated the method using computer-generated phantoms with varying stenosis.
  • Tested the PR model on clinical cases and computer-generated phantoms.

Main Results:

  • The PR model enabled estimation of plaque morphology and quantification of plaque volume in clinical cases.
  • Technique validation demonstrated that PR can reconstruct approximately 92% of the plaque on average.
  • The method provided satisfactory determination of plaque volume, confirmed by phantom studies.

Conclusions:

  • A new, feasible approach for determining 3D plaque volume based on 3DRA has been developed.
  • Initial tests in six clinical cases and phantom validation support the method's potential.
  • Further validation in a larger clinical series is necessary to establish the technique's ultimate clinical value.
Abstract