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Published on: June 20, 2014
Utility of cardiac MRI in paediatric myocarditis
Alice Hales-Kharazmi1, Nina Hirsch2, Michael Kelleman1
11Department of Pediatrics,Division of Cardiology,Children's Healthcare of Atlanta,Emory University School of Medicine,Atlanta, Georgia,United States of America.
Insights
Cardiac MRI in pediatric myocarditis has limited utility and does not predict worse outcomes. Further research is needed to evaluate its clinical decision-making and cost-benefit in diagnosing pediatric myocarditis.
Area of Science:
- Pediatric Cardiology
- Cardiovascular Imaging
- Myocarditis Research
Background:
- The diagnostic role of cardiac MRI in myocarditis is evolving, with limited pediatric data.
- Assessing the utility of cardiac MRI in pediatric myocarditis is crucial for improving diagnosis and management.
Purpose of the Study:
- To assess the utility of cardiac MRI in pediatric myocarditis.
- To develop a new prognostic score for risk stratification in pediatric myocarditis.
Main Methods:
- Retrospective investigation of children with a clinical diagnosis of myocarditis.
- Analysis of demographics, clinical presentation, diagnostic studies (including cardiac MRI), and outcomes.
- Evaluation of cardiac MRI findings and their correlation with patient outcomes.
Main Results:
- Cardiac MRI was performed in 20 of 44 pediatric myocarditis patients, who were older and had less severe illness.
- Common cardiac MRI findings included increased early or late gadolinium enhancement.
- Cardiac MRI findings did not predict worse outcomes; predictors of 1-year heart failure medication need included inotrope and ECMO requirement.
Conclusions:
- Cardiac MRI is not uniformly used in pediatric myocarditis, has a low yield, and does not predict worse outcomes.
- Future research should focus on clinical decision-making and cost-benefit analysis of cardiac MRI in pediatric myocarditis.
- Current evidence suggests limited prognostic value of cardiac MRI in this population.
Background:
The diagnostic role of cardiac MRI in myocarditis is evolving, however with extremely limited data in paediatrics. The goal of this study was to assess the utility of cardiac MRI in paediatric myocarditis and present a new prognostic score for risk stratification.
Method:
The present study is a retrospective investigation of children with a clinical diagnosis of myocarditis, including analysis of demographics, clinical presentation, diagnostic studies, including cardiac MRI, and outcomes.
Results:
A total of 44 patients met the inclusion criteria, of whom 20 had undergone cardiac MRI. Patients who underwent cardiac MRI were older (median 15.6 versus 11.1 years, p=0.004), had a shorter length of hospital stay (median 4.0 versus 12.5 days, p=0.004), had overall less-severe illness at presentation as evidenced by a higher left-ventricular ejection fraction on echocardiography, had lower peak brain-type natriuretic peptide, were less likely to require advanced mechanical support, and were less likely to experience cardiac death or transplant. In patients who had undergone cardiac MRI, the most common findings were increased early gadolinium enhancement (n=9) or late gadolinium enhancement (n=9). Cardiac MRI findings did not predict a worse outcome. Independent predictors of the need for heart-failure medications at 1-year follow-up included inotrope requirement, extracorporeal membrane oxygenator requirement, and antiarrhythmic requirement at presentation (p<0.05).
Conclusion:
In paediatric myocarditis, cardiac MRI is not used uniformly, has a low yield, and does not predict worse outcomes. Future research should evaluate clinical decision-making and the cost-benefit analysis of cardiac MRI in the diagnosis of paediatric myocarditis.
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