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Updated: May 27, 2025

Cardiac Magnetic Resonance for the Evaluation of Suspected Cardiac Thrombus: Conventional and Emerging Techniques
Published on: June 11, 2019
CT and MR Imaging of Cardiomyopathies in Clinical Practice-An Approach After an Abnormal Echocardiogram or
Pedro Monteiro1, Tiago Peixoto1, Patrícia Rodrigues1,2
1Department of Cardiology, Unidade Local de Saúde de Santo António, Porto, Portugal.
Insights
Cardiac magnetic resonance (CMR) and cardiac computed tomography (CCT) offer advanced imaging for cardiomyopathies, improving diagnosis and prognosis. These techniques provide superior tissue characterization for accurate phenotyping and risk stratification.
Area of Science:
- Cardiology
- Medical Imaging
- Cardiovascular Diseases
Background:
- Cardiomyopathies are myocardial disorders with diverse structural and functional abnormalities.
- Echocardiography is the initial imaging tool, but advanced modalities offer deeper insights.
Purpose of the Study:
- To review the diagnostic and prognostic utility of cardiac magnetic resonance (CMR) and cardiac computed tomography (CCT) in cardiomyopathies.
- To highlight the role of advanced imaging in phenotyping and risk stratification.
Main Methods:
- Review of current literature on CMR and CCT applications in cardiomyopathy assessment.
- Focus on tissue characterization, morphological, and functional evaluation capabilities.
Main Results:
- CMR and CCT provide superior tissue characterization for phenotyping cardiomyopathies (hypertrophic, dilated, restrictive, arrhythmogenic).
- CMR aids in identifying fibrosis, hypertrophy, and risk stratification for sudden cardiac death.
- Advanced CMR techniques (T1 mapping, ECV) help differentiate etiologies and predict outcomes in dilated cardiomyopathy.
- CMR excels in detecting right ventricular abnormalities in arrhythmogenic cardiomyopathy.
- CCT is valuable for excluding coronary artery disease and complementing CMR.
Conclusions:
- Multimodality imaging, integrating CMR and CCT, is crucial for comprehensive cardiomyopathy assessment and clinical management.
- Advanced cardiac imaging significantly enhances the diagnostic accuracy and prognostic value in various cardiomyopathy subtypes.
Abstract:
Cardiomyopathies represent a diverse group of myocardial disorders characterized by structural and functional abnormalities in the absence of significant coronary artery disease or other primary causes. This review highlights the diagnostic and prognostic value of cardiac magnetic resonance and computed tomography in the assessment of cardiomyopathies. While echocardiography remains the first-line imaging modality, cardiac magnetic resonance (CMR) and cardiac computerized tomography (CCT) offer superior tissue characterization, morphological assessment, and functional evaluation, crucial for phenotyping cardiomyopathies into hypertrophic, dilated, restrictive, arrhythmogenic, and non-dilated left ventricular subtypes. For hypertrophic cardiomyopathy, CMR enables precise identification of fibrosis, hypertrophy distribution, and risk stratification for sudden cardiac death. CMR is pivotal in identifying phenocopies, like cardiac amyloidosis and Anderson-Fabry disease, and differentiating between pathological and physiological remodeling in athlete's heart. For dilated cardiomyopathy, late gadolinium enhancement, T1 mapping, and extracellular volume measurements aid in distinguishing etiologies and predicting adverse outcomes. In arrhythmogenic right ventricular cardiomyopathy, CMR demonstrates superior sensitivity for detecting structural abnormalities in the right ventricle, and the presence of fibrosis which is associated with arrhythmic risk. CCT main roles are excluding coronary artery disease and complementing CMR. This review proposes a diagnostic pathway integrating multimodality imaging for clinical management in cardiomyopathies.
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