High-resolution 3 T MR microscopy imaging of arterial walls

Johannes Sailer1, Thomas Rand, Andreas Berg

  • 1Department of Angiography and Interventional Radiology, University of Vienna, Vienna, Austria. johannes.sailer@univie.ac.at

Abstract

Insights

High-resolution magnetic resonance (MR) imaging of arterial walls provides detailed plaque morphology. This technique accurately differentiates hard and soft atherosclerotic plaques in vitro.

Area of Science:

  • Cardiovascular Imaging
  • Medical Physics
  • Pathology

Background:

  • Advanced atherosclerosis necessitates detailed plaque characterization.
  • In vitro models are crucial for evaluating imaging techniques.
  • Histopathology remains the gold standard for plaque analysis.

Purpose of the Study:

  • To achieve high spatial resolution MR imaging for visualizing arterial anatomy and histology.
  • To document plaque morphology in in vitro atherosclerotic samples.
  • To evaluate T2-weighted MR imaging for classifying atherosclerotic plaque using a modified AHA classification.

Main Methods:

  • T2-weighted MR images of 13 in vitro arterial specimens were acquired using a 3 T MR unit and MR microscopy.
  • Specific parameters included TR 3.5 sec, TE 15-120 msec, FOV 1.4x1.4, NEX 8, matrix 192, and slice thickness 600 microm.
  • MR measurements were compared with corresponding histologic sections.

Main Results:

  • Excellent spatial and contrast resolution were achieved in all specimens.
  • High agreement between MR images and histology was observed for intimal proliferation morphology and extent.
  • Differentiated hard plaques (calcifications) from soft plaques (lipid content) based on signal intensity.
  • Hemorrhage, thrombus, fibrotic, and hyalinized tissues were detectable via MR imaging and histopathology.

Conclusions:

  • High-resolution, high-field MR imaging effectively visualizes arterial wall morphology, volume, and intimal proliferation extent in vitro.
  • The technique achieves high spatial and contrast resolution, enabling differentiation of hard and soft plaques.
  • T2-weighted MR imaging shows potential for accurate atherosclerotic plaque classification.