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Mitral Annulus Calcium Score in Patients With Calcific Mitral Stenosis Undergoing Invasive Hemodynamic Assessment
Abdallah El Sabbagh1, Pragnesh Parikh1, Jordan Ray1
1Department of Cardiovascular Diseases Mayo Clinic Jacksonville FL.
Insights
Mitral annular calcification (MAC) calcium scores do not correlate with the severity of mitral stenosis. These scores should not replace invasive hemodynamic measurements for assessing mitral valve function.
Area of Science:
- Cardiology
- Cardiac Imaging
- Interventional Cardiology
Background:
- Aortic valve calcium scoring predicts stenosis severity.
- The relationship between mitral annular calcification (MAC) calcium scores and calcific mitral stenosis severity is unknown.
Purpose of the Study:
- To investigate the association between MAC calcium score and hemodynamic severity in mitral stenosis.
- To determine if MAC calcium score can serve as a non-invasive surrogate for invasive hemodynamic parameters.
Main Methods:
- Retrospective analysis of patients with MAC-related mitral stenosis undergoing transseptal catheterization.
- Invasive mitral valve assessment via pressure measurements.
- Computed tomography for MAC calcium scoring using the Agatston method.
Main Results:
- Median MAC calcium score was 7280 HU.
- No correlation was found between MAC calcium score and invasive mitral valve area (r=0.07, P=0.6).
- No correlation was found between MAC calcium score and invasive mitral valve gradient (r=-0.03, P=0.8).
Conclusions:
- MAC calcium score does not correlate with invasively measured hemodynamic parameters in mitral stenosis.
- Calcium scoring of the mitral annulus is not a reliable surrogate for invasive assessment of mitral stenosis severity.
Background:
Aortic valve calcium score is associated with hemodynamic severity of aortic stenosis. Whether this association is present in calcific mitral stenosis remains unknown.
Methods And Results:
This study was a retrospective analysis of consecutive patients with mitral stenosis secondary to mitral annular calcification (MAC) undergoing transseptal catheterization. All patients underwent invasive mitral valve assessment via direct left atrial and left ventricular pressure measurement. Computed tomography within 1 year of cardiac catheterization and with adequate visualization of the mitral annulus was included. MAC calcium score quantification by Agatston method was obtained offline using dedicated software (Aquarius, TeraRecon, V.4). Median patient age was 66.9±11.2 years, 47% of patients were women, 50% had coronary artery disease, 40% had atrial fibrillation, 47% had prior cardiac surgery, and 33% had prior chest radiation. Median diastolic mitral valve gradient was 9.4±3.4 mm Hg on echocardiography and 8.5±4 mm Hg invasively. Invasive median mitral valve area using the Gorlin formula was 1.87±0.9 cm2. Median MAC calcium score for the cohort was 7280±7937 Hounsfield units. MAC calcium score correlated with the presence of atrial fibrillation (P=0.02) but was not associated with other comorbidities. There was no correlation between MAC calcium score and mitral valve area (r=0.07; P=0.6) or mitral valve gradient (r=-0.03; P=0.8).
Conclusions:
MAC calcium score did not correlate with invasively measured mitral valve gradient and mitral valve area in patients with MAC-related mitral stenosis, suggesting that calcium score should not be used as a surrogate for invasive hemodynamic parameters.
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