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Identifying Coronary Artery Calcification on Non-gated Computed Tomography Scans
Published on: August 28, 2018
Early detection of cardiovascular disease in chest population screening: challenges for a rapidly emerging cardiac CT
Anna N H Walstra1,2, Jan Willem C Gratama2,3, Marjolein A Heuvelmans2,4,5
1Department of Public Health, Erasmus Medical Center Rotterdam, Rotterdam 3015 GD, The Netherlands.
Insights
Lung cancer screening (LCS) can identify cardiovascular disease (CVD) risk using coronary artery calcium (CAC) scoring. Advancements in CT technology and AI improve CAC quantification, enabling better CVD management alongside lung cancer screening.
Area of Science:
- Cardiovascular Imaging
- Radiology
- Public Health
Background:
- Cardiovascular disease (CVD) is a leading cause of death, sharing risk factors with lung cancer.
- Lung cancer screening (LCS) offers an opportunity for concurrent CVD screening via coronary artery calcium (CAC) assessment.
- Current guidelines recommend CAC scoring on non-contrast chest CTs, but standardization issues lead to underreporting.
Purpose of the Study:
- To review advancements in cardiac CT technology for opportunistic CVD screening within LCS programs.
- To explore challenges and key factors for integrating CVD screening into LCS.
- To promote high-quality standardization in CAC reporting.
Main Methods:
- Review of recent advancements in CT technologies (e.g., dual-source CT) for CAC quantification.
- Discussion of artificial intelligence (AI) applications in CAC quantification.
- Analysis of factors for successful integration of CVD screening into LCS.
Main Results:
- CT technology advancements improve CAC quantification on low-dose CT scans.
- Dual-source CT enables non-gated CAC protocols, reducing motion artifacts.
- AI-based quantification can decrease the workload of concurrent cardiovascular screening.
Conclusions:
- Integrating CAC scoring into LCS programs can personalize CVD management and reduce unnecessary treatments.
- Technological advancements address prior challenges in opportunistic CVD screening.
- Standardization of CAC reporting is crucial for effective CVD screening within LCS.
Abstract:
While lung cancer screening (LCS) reduces lung cancer-related mortality in high-risk individuals, cardiovascular disease (CVD) remains a leading cause of death due to shared risk factors such as smoking and age. Coronary artery calcium (CAC) assessment offers an opportunity for concurrent cardiovascular screening, with higher CAC scores indicating increased CVD risk and mortality. Despite guidelines recommending CAC-scoring on all non-contrast chest CT scans, a lack of standardization leads to underreporting and missed opportunities for preventive care. Routine CAC-scoring in LCS can enable personalized CVD management and reduce unnecessary treatments. However, challenges persist in achieving adequate diagnostic quality with one combined image acquisition for both lung and cardiovascular assessment. Advancements in CT technology have improved CAC quantification on low-dose CT scans. Electron-beam tomography, valued for superior temporal resolution, was replaced by multidetector CT for better spatial resolution and general usability. Dual-source CT further improved temporal resolution and reduced motion artifacts, making non-gated CT protocols for CAC-assessment possible. Additionally, artificial intelligence-based CAC quantification can reduce the added workload of cardiovascular screening within LCS programs. This review explores recent advancements in cardiac CT technologies that address prior challenges in opportunistic CVD screening and considers key factors for integrating CVD screening into LCS programs, aiming for high-quality standardization in CAC reporting.
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