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Utility of CT in the diagnosis of prosthetic valve abnormalities
Pratik S Velangi1, Rajat Kalra1, Jeremy Markowitz1
1Cardiovascular Division, University of Minnesota Medical School, Minneapolis, Minnesota.
Insights
Computed tomography (CT) offers better insights into prosthetic heart valve (PHV) dysfunction causes than echocardiography. For PHV endocarditis, CT complements echocardiography, improving overall diagnostic accuracy for these critical valve conditions.
Area of Science:
- Cardiovascular Imaging
- Medical Diagnostics
- Radiology
Background:
- Prosthetic heart valves (PHV) increase risks of endocarditis and dysfunction.
- Echocardiography faces limitations in PHV assessment due to artifacts.
- Accurate diagnosis of PHV issues is crucial for treatment planning.
Purpose of the Study:
- To evaluate the incremental value of computed tomography (CT) over echocardiography for assessing prosthetic heart valve abnormalities.
- To compare the diagnostic capabilities of CT and echocardiography in identifying the causes of PHV dysfunction and extent of endocarditis.
Main Methods:
- A cohort of 73 patients with PHV undergoing reoperation were included.
- Contrast chest CT and echocardiograms were performed within one year of reoperation.
- Imaging studies were analyzed for etiologies of dysfunction (degeneration, pannus, thrombus) and endocarditis (vegetation, abscess, pseudoaneurysm).
Main Results:
- CT identified the etiology of PHV dysfunction in 33.3% more patients compared to echocardiography.
- CT detected 9 cases of valve degeneration and 8 of pannus missed by echocardiography.
- Combined CT and echocardiography detected all vegetations and abscesses in the endocarditis cohort.
Conclusions:
- CT provides superior characterization for identifying the causes of prosthetic valve dysfunction.
- CT offers complementary information to echocardiography for evaluating prosthetic valve endocarditis.
- Integrating CT may enhance diagnostic accuracy for complex PHV complications.
Background:
Patients with prosthetic heart valves (PHV) are at an increased risk of endocarditis and dysfunction. Knowledge about the etiology of dysfunction and extent of endocarditis can have distinct treatment implications. Echocardiography has limitations due to PHV-related artifacts. We hypothesized that computed tomography (CT) will have incremental value over echocardiography for evaluation of PHV abnormalities with surgical findings as the reference standard.
Methods:
Consecutive patients with PHV that had a reoperation for valve replacement, had a contrast chest CT and echocardiogram within 1 year of the reoperation, between 2010 and 2018 at a single academic center formed the study cohort. CTs and echocardiograms were assessed for potential etiologies of dysfunction (valve degeneration, pannus and thrombus); and for extent of endocarditis (vegetation, abscess, and pseudoaneurysm).
Results:
Seventy-three patients (65.8% male, mean age 62.1 ± 16.5 years) formed the study cohort. The indication for reoperation was PHV dysfunction in 51 and PHV endocarditis in 22. Compared to echocardiography, CT diagnosed the etiology of PHV dysfunction in 17 (33.3%) more patients (9 valve degeneration, 8 pannus). In the PHV endocarditis cohort, CT failed to detect one vegetation and one abscess, whereas echocardiography failed to detect 1 abscess. In combination, CT and echocardiography demonstrated all the vegetations and abscesses.
Conclusion:
CT may provide superior characterization in comparison to echocardiography for the identification of the cause of prosthetic valve dysfunction, and complementary information to echocardiography for the evaluation of prosthetic valve endocarditis.
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