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Updated: Feb 6, 2026

A Human Ex Vivo Atherosclerotic Plaque Model to Study Lesion Biology
Published on: May 6, 2014
Interstudy reproducibility of dark blood high-resolution MRI in evaluating basilar atherosclerotic plaque at 3 Tesla
Luguang Chen1, Qi Liu1, Zhang Shi1
1Department of Radiology, Changhai Hospital of Shanghai, Second Military Medical University, Shanghai, China.
Purpose:
We aimed to evaluate the interscan, intraobserver, and interobserver reproducibility of basilar atherosclerotic plaque employing dark blood high-resolution magnetic resonance imaging (HR-MRI) at 3 Tesla.
Methods:
Sixteen patients (14 males and 2 females) with > 30% basilar stenosis as identified by conventional magnetic resonance angiography were prospectively recruited for scan and rescan examinations on a 3 Tesla MRI system using T2-weighted turbo spin-echo protocol. Two observers independently measured the areas of vessels and lumens. Wall area was derived by subtracting the lumen area from the vessel area. Areas of vessels, lumens and walls were compared for the evaluation of interscan variability of basilar plaque. To assess the intraobserver variability, one observer reevaluated all the images of the first scan after a 4-week interval.
Results:
Fourteen patients were included in the final analysis. No clinically significant difference was observed for interscan, intraobserver, and interobserver measurements. The intraclass correlations for vessel, lumen, and wall areas were excellent and ranged from 0.973 to 0.981 for the interscan measurements, 0.997 to 0.998 for the intraobserver measurements and 0.979 to 0.985 for the interobserver measurements. The coefficients of variation for quantitative basilar morphology measurements were 4.31%-10.35% for the interscan measurements, 1.41%-4.62% for the intraobserver measurements and 3.79%-8.46% for the interobserver measurements. Compared with the interscan and interobserver measurements, narrow intervals of the scatterplots were observed for the intraobserver measurements by Bland-Altman plots.
Conclusion:
Basilar atherosclerotic plaque imaging demonstrates excellent reproducibility at 3 Tesla. The study proves that dark blood HR-MRI may serve as a reliable tool for clinical studies focused on the progression and treatment response of basilar atherosclerosis.
Insights
Dark blood high-resolution MRI at 3 Tesla shows excellent reproducibility for imaging basilar atherosclerotic plaque. This technique is a reliable tool for studying atherosclerosis progression and treatment response.
Area of Science:
- Neuroimaging
- Cardiovascular Imaging
- Radiology
Background:
- Atherosclerosis in the basilar artery poses a significant risk for cerebrovascular events.
- Accurate and reproducible imaging of basilar atherosclerotic plaque is crucial for monitoring disease progression and treatment efficacy.
Purpose of the Study:
- To evaluate the interscan, intraobserver, and interobserver reproducibility of basilar atherosclerotic plaque using dark blood high-resolution magnetic resonance imaging (HR-MRI) at 3 Tesla.
Main Methods:
- Sixteen patients with significant basilar stenosis underwent scan and rescan using a 3 Tesla MRI system with a T2-weighted turbo spin-echo protocol.
- Two observers independently measured vessel, lumen, and wall areas. Intraobserver variability was assessed by re-evaluation after a 4-week interval.
Main Results:
- Excellent intraclass correlations (0.973–0.998) were observed for vessel, lumen, and wall area measurements across interscan, intraobserver, and interobserver assessments.
- Coefficients of variation were low, ranging from 1.41% to 10.35%, indicating high precision.
- Bland-Altman plots showed narrow intervals for intraobserver measurements, further supporting reproducibility.
Conclusions:
- Dark blood HR-MRI at 3 Tesla demonstrates excellent reproducibility for imaging basilar atherosclerotic plaque.
- This imaging technique is a reliable tool for clinical studies investigating basilar atherosclerosis progression and treatment response.
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