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Updated: Aug 8, 2026

Three-Dimensional Imaging of Aortic Tissues in Atherosclerosis
Published on: October 25, 2024
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
Purpose:
To achieve a high spatial resolution in MR imaging that allows for clear visualization of anatomy and even histology and documentation of plaque morphology in in vitro samples from patients with advanced atherosclerosis. A further objective of our study was to evaluate whether T2-weighted high-resolution MR imaging can provide accurate classification of atherosclerotic plaque according to a modified American Heart Association classification.
Methods:
T2-weighted images of arteries were obtained in 13 in vitro specimens using a 3 T MR unit (Medspec 300 Avance/Bruker, Ettlingen, Germany) combined with a dedicated MR microscopy system. Measurement parameters were: T2-weighted sequences with TR 3.5 sec, TE 15-120 msec; field of view (FOV) 1.4 x 1.4; NEX 8; matrix 192; and slice thickness 600 microm. MR measurements were compared with corresponding histologic sections.
Results:
We achieved excellent spatial and contrast resolution in all specimens. We found high agreement between MR images and histology with regard to the morphology and extent of intimal proliferations in all but 2 specimens. We could differentiate fibrous caps and calcifications from lipid plaque components based on differences in signal intensity in order to differentiate hard and soft atheromatous plaques. Hard plaques with predominantly intimal calcifications were found in 7 specimens, and soft plaques with a cholesterol/lipid content in 5 cases. In all specimens, hemorrhage or thrombus formation, and fibrotic and hyalinized tissue could be detected on both MR imaging and histopathology.
Conclusion:
High-resolution, high-field MR imaging of arterial walls demonstrates the morphologic features, volume, and extent of intimal proliferations with high spatial and contrast resolution in in vitro specimens and can differentiate hard and soft plaques.
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.
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