Coronary artery plaque imaging: Comparison of black-blood MRI and 64-multidetector computed tomography

Yi He1, Qin-Yi Da1, Jing An2

  • 1Department of Radiology, Beijing Institute of Heart, Lung and Blood Vessel Disease, Beijing Anzhen Hospital, Capital Medical University, Beijing 100029, China.

Abstract

Insights

Black-blood coronary wall MRI effectively detects and classifies coronary artery plaques, showing potential for differentiating plaque types based on signal intensity. This imaging technique aids in understanding plaque characteristics in proximal and middle coronary segments.

Area of Science:

  • Cardiovascular Imaging
  • Radiology
  • Medical Diagnostics

Background:

  • Coronary artery plaques are a primary cause of cardiovascular disease.
  • Accurate detection and characterization of plaques are crucial for risk stratification and treatment planning.
  • Current imaging modalities have limitations in plaque characterization.

Purpose of the Study:

  • To compare the efficacy of black-blood coronary arterial wall MRI with 64-multidetector computed tomography (64-MDCT) for detecting and classifying coronary artery plaques.
  • To evaluate the ability of black-blood coronary wall MRI to differentiate between plaque types.

Main Methods:

  • 15 patients with confirmed coronary artery plaques underwent black-blood coronary wall MRI (1.5 T) within 10 days of 64-MDCT.
  • 2D double-inversion-recovery, ECG-triggered, navigator-gated, fat-suppressed, turbo-spin-echo sequence was used for cross-sectional imaging.
  • Quantitative analysis included vessel CSA, luminal CSA, wall thickness, plaque burden, CNR, and SNR, compared with CTA segments.

Main Results:

  • Coronary plaques were identified in 46 slices on both MRI and CTA.
  • MRI showed significantly greater plaque burden, wall thickness, SNR, and CNR in plaque-containing segments compared to normal segments (P < 0.05).
  • Luminal CSA was significantly smaller at plaque sites (P < 0.05), and MRI differentiated soft plaques by higher SNR.

Conclusions:

  • Black-blood coronary wall MRI can reliably identify coronary plaques in proximal and middle segments.
  • The technique demonstrates potential for differentiating plaque types based on signal intensity.
  • Coronary wall MRI offers a valuable tool for plaque characterization in cardiovascular imaging.

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