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Identifying Coronary Artery Calcification on Non-gated Computed Tomography Scans
Published on: August 28, 2018
Distribution of Mitral Annular and Aortic Valve Calcium as Assessed by Unenhanced Multidetector Computed Tomography
Nikoloz Koshkelashvili1, Jose N Codolosa2, Igor Goykhman3
1Department of Internal Medicine, Einstein Medical Center, Philadelphia, Pennsylvania.
Insights
Calcium deposits in the heart
Area of Science:
- Cardiovascular imaging
- Geriatric medicine
- Radiology
Background:
- Aging commonly leads to calcium deposits in cardiovascular structures.
- Specific patterns of mitral annular calcium (MAC) and aortic valve calcium (AVC) are not well understood.
Purpose of the Study:
- To quantitatively assess patterns of mitral annular calcium and aortic valve calcium deposition in older adults.
- To identify demographic and locational patterns of cardiovascular calcification.
Main Methods:
- Quantitative assessment of MAC and AVC using computed tomography (CT) scans from 318 subjects aged ≥65 years.
- Custom templates applied to CT reconstructions for calcium location assignment and Agatston quantification.
- Analysis of prevalence and density by race, sex, and specific anatomical locations.
Main Results:
- Whites showed higher prevalence and density of AVC compared to blacks.
- Men had higher AVC scores than women, primarily driven by white men.
- Specific favored locations for calcification were identified in both the aortic valve (left cusp) and mitral annulus (posterior and anterior segments).
Conclusions:
- Aortic valve calcium is more prevalent in whites and more intense in white men.
- Mitral annular calcium and aortic valve calcium exhibit distinct, location-specific patterns.
- These findings contribute to understanding age-related cardiovascular calcification patterns.
Abstract:
Aging is associated with calcium deposits in various cardiovascular structures, but patterns of calcium deposition, if any, are unknown. In search of such patterns, we performed quantitative assessment of mitral annular calcium (MAC) and aortic valve calcium (AVC) in a broad clinical sample. Templates were created from gated computed tomography (CT) scans depicting the aortic valve cusps and mitral annular segments in relation to surrounding structures. These were then applied to CT reconstructions from ungated, clinically indicated CT scans of 318 subjects, aged ≥65 years. Calcium location was assigned using the templates and quantified by the Agatston method. Mean age was 76 ± 7.3 years; 48% were men and 58% were white. Whites had higher prevalence (p = 0.03) and density of AVC than blacks (p = 0.02), and a trend toward increased MAC (p = 0.06). Prevalence of AVC was similar between men and women, but AVC scores were higher in men (p = 0.008); this difference was entirely accounted for by whites. Within the aortic valve, the left cusp was more frequently calcified than the others. MAC was most common in the posterior mitral annulus, especially its middle (P2) segment. For the anterior mitral annulus, the medial (A3) segment calcified most often. In conclusion, AVC is more common in whites than blacks, and more intense in men, but only in whites. Furthermore, calcium deposits in the mitral annulus and aortic valve favor certain locations.
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