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Quantification of Aortic Valve Fibrotic and Calcific Tissue from CTA: Prospective Comparison with Histology
Kajetan Grodecki1, Anna Olasińska-Wiśniewska1, Agata Cyran1
1From the First Department of Cardiology (K.G., J. Kochman, Z.H.) and Department of Pathology (A.C., B.G.), Medical University of Warsaw, Warsaw, Poland; Departments of Biomedical Sciences and Medicine, Biomedical Imaging Research Institute, Cedars-Sinai Medical Center, 116 N Robertson Blvd, Suite 400, Los Angeles, CA 90048 (K.G., J.G., P.J.S., D.D.); Department of Cardiac Surgery and Transplantology, Poznan University of Medical Sciences, Poznan, Poland (A.O.W., T.U., B.P., M.J.); Department of Interventional Cardiology and Angiology, Institute of Cardiology, Warsaw, Poland (J. Kwieciński); Department of Cardiology, Centrum voor Hart- en Vaatziekten, Universitair Ziekenhuis Brussel, Vrije Universiteit Brussel, Brussels, Belgium (J.G.); Department of Cardiology, Banner University Medical Center, Indianapolis, Ind (B.K.T.); Department of Cardiac Surgery (R.G.) and Division of Cardiology and Structural Heart Diseases (J.N.S., W.W.), Medical University of Silesia, Katowice, Poland; and Smidt Heart Institute, Cedars-Sinai Medical Center, Los Angeles, Calif (H.J., R.R.M.).
Insights
Quantitative CT angiography accurately assesses aortic valve fibrotic and calcific tissue in patients with aortic stenosis, showing excellent agreement with histologic findings and high interobserver reproducibility.
Area of Science:
- Cardiovascular Imaging
- Medical Physics
- Histopathology
Background:
- Quantifying aortic valve fibrotic and calcific tissue composition via CT angiography (CTA) is crucial for assessing aortic stenosis (AS) severity and patient outcomes.
- Current validation against quantitative histologic findings is lacking.
Purpose of the Study:
- To compare the quantification of aortic valve fibrotic and calcific tissue composition between CTA and histologic examination.
Main Methods:
- Prospective study of patients undergoing CTA before aortic valve replacement or heart transplant.
- Automated Gaussian mixture modeling used for CTA quantification of tissue components.
- Histologic evaluation of explanted valve cusps using Movat pentachrome and H&E staining, with AI-based quantification.
Main Results:
- Strong correlation (r=0.92) between fibrocalcific tissue composition at CTA and histologic findings.
- Excellent agreement (ICC=0.94) between CTA and histology for fibrocalcific tissue quantification.
- Excellent interobserver repeatability for both fibrotic (ICC=0.99) and calcific (ICC=0.99) tissue volume measurements.
Conclusions:
- Standardized quantitative aortic valve tissue characterization at CTA shows excellent concordance with histologic findings.
- CTA demonstrates high interobserver reproducibility for assessing aortic valve composition.
- This validated method can aid in assessing AS severity and patient outcomes.
Abstract:
Background Quantifying the fibrotic and calcific composition of the aortic valve at CT angiography (CTA) can be useful for assessing disease severity and outcomes of patients with aortic stenosis (AS); however, it has not yet been validated against quantitative histologic findings. Purpose To compare quantification of aortic valve fibrotic and calcific tissue composition at CTA versus histologic examination. Materials and Methods This prospective study included patients who underwent CTA before either surgical aortic valve replacement for AS or orthotopic heart transplant (controls) at two centers between January 2022 and April 2023. At CTA, fibrotic and calcific tissue composition were quantified using automated Gaussian mixture modeling applied to the density of aortic valve tissue components, calculated as [(volume/total tissue volume) × 100]. For histologic evaluation, explanted valve cusps were stained with Movat pentachrome as well as hematoxylin and eosin. For each cusp, three 5-µm slices were obtained. Fibrotic and calcific tissue composition were quantified using a validated artificial intelligence tool and averaged across the aortic valve. Correlations were assessed using the Spearman rank correlation coefficient. Intermodality and interobserver variability were measured using the intraclass correlation coefficient (ICC) and Bland-Altman plots. Results Twenty-nine participants (mean age, 63 years ± 10 [SD]; 23 male) were evaluated: 19 with severe AS, five with moderate AS, and five controls. Fibrocalcific tissue composition strongly correlated with histologic findings (r = 0.92; P < .001). The agreement between CTA and histologic findings for fibrocalcific tissue quantification was excellent (ICC, 0.94; P = .001), with underestimation of fibrotic composition at CTA (bias, -4.9%; 95% limits of agreement [LoA]: -18.5%, 8.7%). Finally, there was excellent interobserver repeatability for fibrotic (ICC, 0.99) and calcific (ICC, 0.99) aortic valve tissue volume measurements, with no evidence of a difference in measurements between readers (bias, -0.04 cm3 [95% LoA: -0.27 cm3, 0.19 cm3] and 0.02 cm3 [95% LoA: -0.14 cm3, 0.19 cm3], respectively). Conclusion In a direct comparison, standardized quantitative aortic valve tissue characterization at CTA showed excellent concordance with histologic findings and demonstrated interobserver reproducibility. Clinical trial registration no. NCT06136689 Published under a CC BY 4.0 license. Supplemental material is available for this article. See also the editorial by Almeida in this issue.
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