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The Functional Severity Assessment of Coronary Stenosis Using Coronary Computed Tomography Angiography-Based
Kenji Sadamatsu1, Kazuhiro Nagaoka2, Yasuaki Koga3
1Department of Cardiology, St. Mary's Hospital, Kurume, Japan.
Insights
Myocardial mass at risk (MMAR) combined with minimal lumen diameter (MLD) effectively identifies functionally significant coronary stenosis. This MMAR/MLD ratio aids in determining revascularization needs for patients with coronary artery disease.
Area of Science:
- Cardiology
- Medical Imaging
- Interventional Cardiology
Background:
- Assessing the functional significance of coronary stenosis is crucial for patient management.
- Quantitative coronary angiography (QCA) and fractional flow reserve (FFR) are standard diagnostic tools.
- The utility of myocardial mass at risk (MMAR) in conjunction with QCA for diagnosing significant stenosis requires further investigation.
Purpose of the Study:
- To evaluate the diagnostic value of adding MMAR to QCA for functionally significant coronary stenosis.
- To determine if the MMAR-to-MLD ratio (MMAR/MLD) improves stenosis assessment in clinical practice.
Main Methods:
- Retrospective analysis of 111 patients with 149 coronary lesions.
- Coronary computed tomography angiography (CCTA) for MMAR calculation.
- Quantitative coronary angiography (QCA) for minimal lumen diameter (MLD) and diameter stenosis measurement.
- Fractional flow reserve (FFR) as the gold standard for functional significance.
Main Results:
- MMAR and MLD showed significant correlation with FFR.
- The MMAR/MLD ratio demonstrated good correlation with FFR (AUC=0.746).
- Adding MMAR/MLD to diameter stenosis improved discrimination of significant lesions (AUC=0.750), particularly in proximal left coronary artery lesions (AUC=0.919).
Conclusions:
- The MMAR/MLD index correlates well with the physiological severity of coronary stenosis.
- MMAR/MLD shows good accuracy in detecting functionally significant coronary stenosis.
- MMAR/MLD may serve as a valuable parameter for guiding revascularization decisions.
Background:
We investigated whether or not the addition of myocardial mass at risk (MMAR) to quantitative coronary angiography was useful for diagnosing functionally significant coronary stenosis in the daily practice.
Methods:
We retrospectively enrolled 111 consecutive patients with 149 lesions who underwent clinically indicated coronary computed tomography angiography and subsequent elective coronary angiography with fractional flow reserve (FFR) measurement. MMAR was calculated using a workstation-based software program with ordinary thin slice images acquired for the computed tomography, and the minimal lumen diameter (MLD) and the diameter stenosis were measured with quantitative coronary angiography.
Results:
The MLD and MMAR were significantly correlated with the FFR, and the MMAR-to-MLD ratio (MMAR/MLD) showed a good correlation. The area under the receiver operating characteristic curve (AUC) of MMAR/MLD for FFR ≤ 0.8 was 0.746, and the sensitivity, specificity, positive predictive value, and negative predictive value were 60%, 83%, 68%, and 77%, respectively, at a cut-off value of 29.5 ml/mm. The addition of MMAR/MLD to diameter stenosis thus made it possible to further discriminate lesions with FFR ≤ 0.8 (AUC = 0.750). For the proximal left coronary artery lesions, in particular, MMAR/MLD showed a better correlation with the FFR, and the AUC of MMAR/MLD for FFR ≤ 0.8 was 0.919 at a cut-off value of 31.7 ml/mm.
Conclusions:
The index of MMAR/MLD correlated well with the physiological severity of coronary stenosis and showed good accuracy for detecting functional significance. The MMAR/MLD might be a useful parameter to consider when deciding the indication for revascularization.
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