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Updated: Mar 15, 2026

Identifying Coronary Artery Calcification on Non-gated Computed Tomography Scans
Published on: August 28, 2018
Application of the Novel Two-Compartmental Model to Quantify Coronary Artery Calcium: A Pilot Study
Yu-Tai Shih1,2,3, Zhe-Yu Lin1, Jay Wu1
1Department of Biomedical Imaging and Radiological Sciences, National Yang Ming Chiao Tung University, No. 155, Sec. 2, Linong Street, Taipei 112, Taiwan.
Insights
A new two-compartment coronary artery calcium score (TACS) system offers reliable coronary calcium quantification. This method shows potential for opportunistic screening of coronary artery disease in routine CT scans.
Area of Science:
- Medical Imaging
- Cardiovascular Disease Research
- Radiology
Background:
- Cardiovascular disease (CVD) is a leading global cause of mortality.
- Coronary artery calcification assessment is crucial for CVD detection.
- Conventional coronary artery calcium score (CACS) has limitations including radiation exposure and parameter dependency.
Purpose of the Study:
- To develop and validate a novel two-compartment coronary artery calcium score (TACS) system.
- To overcome limitations of conventional CACS.
- To enable quantitative calcium assessment in routine CT imaging.
Main Methods:
- Development and validation of TACS using a phantom on GE Revolution CT.
- Comparison of TACS-derived volumetric calcium density (VCD) with CACS under varied scanning parameters.
- Retrospective analysis of coronary artery calcium scans from 15 patients.
Main Results:
- TACS demonstrated stable performance across varying tube voltages and slice thicknesses.
- VCD derived from TACS showed consistency with different reconstruction algorithms.
- A strong correlation (r = 0.932) was observed between TACS and CACS in patient data.
Conclusions:
- TACS provides robust and reliable quantification of coronary calcium.
- TACS has potential for opportunistic coronary artery disease screening in routine CT.
- Further studies are needed to confirm clinical applicability in larger cohorts.
Abstract:
Background: Cardiovascular disease (CVD) remains a major global health concern and the leading cause of mortality and disability. Early detection and prevention strategies rely heavily on evaluating coronary artery calcification, traditionally assessed using the coronary artery calcium score (CACS). However, CACS is limited by its dependence on strictly fixed tube voltage and slice thickness, sensitivity to changes in scanning parameters, and the need for an additional dedicated coronary calcium scan that increases radiation exposure. Methods: To address these challenges, we developed a novel two-compartment coronary artery calcium score system (TACS) for quantitative calcium assessment. TACS was established and validated using a QRM Thorax phantom scanned on a GE Revolution CT at 70-140 kVp. Volumetric calcium density (VCD) derived from TACS was compared with conventional CACS under varying slice thickness, pitch, and iterative reconstruction algorithms. Additionally, coronary artery calcium scans from 15 patients were retrospectively analyzed to assess correlations between TACS and CACS. Results: TACS demonstrated stable performance across tube voltages, with VCD errors ranging from 3.8% to -19.0% and maintained consistency under different slice thicknesses (23.9% to -2.3%) and reconstruction algorithms, showing near-zero residual percentages. Patient analyses revealed a strong correlation between TACS and CACS (r = 0.932). Conclusions: These findings suggest that TACS provides robust and reliable quantification of coronary calcium, supporting its potential use for opportunistic coronary artery disease screening, particularly in routine CT imaging. Further studies with larger cohorts are warranted to confirm its clinical applicability.
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