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Intravascular Ultrasound Image-Based Finite Element Modeling Approach for Quantifying In Vivo Mechanical Properties of Human Coronary Artery
Published on: December 6, 2024
Coronary plaque morphology using virtual histology-intravascular ultrasound analysis in hemodialysis patients
Keiji Kono1, Hideki Fujii, Naoki Miyoshi
1Division of Nephrology and Kidney Center, Kobe University Graduate School of Medicine, Kobe, Japan.
Insights
Dialysis patients show increased coronary plaque volume and calcification, particularly dense calcium, compared to controls. This suggests disordered mineral metabolism may influence plaque composition in hemodialysis patients.
Area of Science:
- Cardiovascular Medicine
- Nephrology
- Medical Imaging
Background:
- Most dialysis patients have coronary artery disease and vascular calcification upon starting dialysis.
- Virtual histology-intravascular ultrasound (VH-IVUS) enables detailed in vivo coronary plaque characterization.
Purpose of the Study:
- To identify coronary plaque characteristics in dialysis patients using VH-IVUS.
- To compare plaque composition between hemodialysis patients and controls with coronary artery disease.
Main Methods:
- Coronary angiography and VH-IVUS analysis were performed on culprit lesions.
- Twenty-three patients with coronary artery disease were divided into a hemodialysis group (n=11) and a control group (n=12).
Main Results:
- The hemodialysis group exhibited greater plaque volume and a higher percentage of dense calcium plaque compared to the control group.
- Hemodialysis patients had a lower percentage of fibrous plaque.
- Serum phosphate levels correlated significantly with necrotic core and dense calcium plaque percentages.
Conclusions:
- Hemodialysis patients demonstrate increased necrotic core and dense calcium plaques.
- Disordered mineral metabolism may be linked to coronary plaque morphology in hemodialysis patients.
Abstract:
Most dialysis patients have coronary artery disease at the initiation of dialysis therapy and these patients also have marked vascular calcification. Virtual histology-intravascular ultrasound (VH-IVUS) provides coronary tissue maps that are color coded by four major plaque components and facilitate the characterization of coronary plaque composition in vivo. The aim of this study was to identify coronary plaque characteristics in dialysis patients using VH-IVUS. Twenty-three patients with coronary artery disease were included in this study. Of these, 12 patients had normal renal function or mild renal insufficiency (control group) and 11 patients were receiving maintenance dialysis therapy (hemodialysis group). We performed coronary angiography and VH-IVUS analysis on culprit lesions of all patients in the study. The result of VH-IVUS analysis showed that the hemodialysis group had a greater plaque volume, lower percentage of fibrous plaque, and higher percentage of dense calcium plaque compared with the control group. In addition, the serum phosphate levels were significantly associated with the percentage of necrotic core and dense calcium plaque in all study patients. Our findings suggest that the amount of necrotic core and dense calcium plaques increase significantly in hemodialysis patients, and that disordered mineral metabolism may be associated with coronary plaque morphology.
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