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Plaque composition and morphologic characteristics in significant left main bifurcation disease; virtual histology
Mineok Chang1, Soo-Jin Kang, Sung-Han Yoon
1aDepartment of Cardiology, Seoul St Mary's Hospital, The Catholic University of Korea bDepartment of Cardiology, Asan Medical Center, University of Ulsan College of Medicine, Seoul, South Korea cDepartment of Cardiology, Tokai University School of Medicine, Isehara, Kanagawa, Japan dCardiovascular Research Foundation, New York, New York, USA.
Insights
In significant left main coronary artery (LMCA) bifurcation disease, the proximal left anterior descending (LAD) artery exhibits the most vulnerable plaque characteristics. This segment shows the smallest lumen, greatest plaque burden, and highest thin-cap fibroatheroma rates.
Area of Science:
- Cardiovascular Imaging
- Interventional Cardiology
- Vascular Biology
Background:
- The left main coronary artery (LMCA) is a critical site for coronary artery disease.
- Longitudinal plaque distribution and composition in significant LMCA disease remain incompletely understood.
Purpose of the Study:
- To investigate the plaque burden and composition along the LMCA and proximal left anterior descending (LAD) artery in patients with significant LMCA bifurcation disease.
Main Methods:
- Virtual histology intravascular ultrasound (VH-IVUS) data from 120 patients with significant LMCA bifurcation lesions were analyzed.
- Plaque burden and necrotic core percentage (%NC) were measured in four segments: proximal LMCA, distal LMCA, LAD ostium, and proximal LAD.
- Analysis focused on minimal lumen area and maximal %NC sites.
Main Results:
- The proximal LAD segment had the smallest lumen (3.5 mm) and largest plaque burden (73.2%) at the minimal lumen area site.
- A downward trend in IVUS-defined lesions was observed towards the proximal LMCA.
- The proximal LAD segment showed the highest %NC (32.7%) and thin-cap fibroatheroma (67.6%) rates, indicating the most vulnerable plaque.
Conclusions:
- The proximal LAD segment demonstrates the most vulnerable plaque characteristics in significant LMCA bifurcation disease.
- These findings highlight the importance of assessing plaque composition and distribution in the LMCA and proximal LAD.
- VH-IVUS provides valuable insights into plaque vulnerability in this complex coronary anatomy.
Objectives:
Although the left main coronary artery (LMCA) is clinically the most important site, little is known about the longitudinal plaque distribution and composition in the significant LMCA disease.
Methods:
Preprocedure virtual histology intravascular ultrasound data were analyzed in 120 patients with significant LMCA bifurcation lesions (angiographic diameter stenosis>50%) requiring revascularization. Plaque burden and percentage of necrotic core (%NC) at the minimal lumen area site and maximal %NC site were measured in four segments: proximal LMCA, distal LMCA, left anterior descending (LAD) ostium, and proximal LAD.
Results:
Angiographically, a significant LMCA and ostial LAD stenosis were observed in 89.2 and 81.7% of patients, respectively. At the minimal lumen area site, the proximal LAD segment showed the smallest lumen [3.5 mm (2.5-4.7), P<0.001] and the greatest plaque burden [73.2% (63.0-79.3), P<0.001] compared with the other segments. Also, there was a significant downward trend in the number of IVUS-defined lesions toward the proximal LMCA (P=0.001). At the maximal %NC site, the proximal LAD segment carried the largest necrotic core [32.7% (25.7-40.1), P<0.001] and the most frequent virtual histology thin-cap fibroatheroma (67.6%, P<0.001) among the segments, followed by the proximal LMCA [30.3% (22.3-40.0) and 32.9%, respectively]. Most of the plaques carried, at least, one slice of fibroatheroma in every segment; thus, fibroatheroma distributed in a continuous pattern from the proximal LAD to the proximal LMCA.
Conclusion:
In the significant LMCA bifurcation disease, the proximal LAD segment was found to have the smallest lumen, the largest plaque burden, the highest virtual histology thin-cap fibroatheroma rate, and thus presented the most vulnerable characteristics by virtual histology intravascular ultrasound.
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