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Dilated cardiomyopathy evaluation with Imagenomics: combining multimodal cardiovascular imaging and genetics
Kristian Galanti1, Ghaith Sharaf Dabbagh2, Fabrizio Ricci1,3,4,5
1Department of Neuroscience, Imaging and Clinical Sciences, G. D'Annunzio University of Chieti-Pescara, Chieti, Italy.
Insights
Dilated cardiomyopathy (DCM) diagnosis requires a systematic approach integrating genetics and clinical findings. Cardiac imaging is crucial for phenotyping, guiding treatment, and monitoring disease progression in DCM patients.
Area of Science:
- Cardiology
- Cardiovascular Imaging
- Genetics
Background:
- Dilated cardiomyopathy (DCM) presents with diverse phenotypes, including isolated scar, preserved ejection fraction, and overt DCM.
- It stems from various inherited and acquired heart muscle disorders, necessitating a broad diagnostic perspective.
Purpose of the Study:
- To propose a systematic diagnostic approach for DCM.
- To highlight the roles of genetics, clinical findings, and cardiac imaging in DCM diagnosis and management.
Main Methods:
- Multimodal non-invasive imaging for morpho-functional assessment and tissue characterization.
- Integration of advanced imaging techniques for deep cardiovascular phenotyping.
- Emphasis on genetic testing and clinical evaluation.
Main Results:
- Cardiac imaging is essential for assessing cardiac phenotype and excluding ischemic causes.
- Novel imaging techniques offer actionable parameters for improved diagnosis and risk stratification.
- Imaging guides etiology-based therapy, treatment response verification, and disease monitoring.
Conclusions:
- A systematic, multimodal approach combining clinical, genetic, and advanced imaging is vital for DCM diagnosis.
- Cardiac imaging plays a pivotal role in refining DCM diagnosis, risk stratification, and therapeutic guidance.
- Optimized diagnostic schemes and risk stratification algorithms enhance patient outcomes.
Abstract:
Dilated cardiomyopathy (DCM) is a clinical diagnosis characterized by the presence of left ventricular dilatation and systolic dysfunction unexplained by abnormal loading conditions or coronary artery disease. However, a broad range of phenotypic manifestations, encompassing isolated scar, DCM with preserved ejection fraction, and overt DCM, should be regarded as a diagnostic classification representing a broad spectrum of underlying aetiologies, including both inherited and acquired heart muscle disorders. A multimodal non-invasive imaging approach is essential for accurate morpho-functional assessment of cardiac chambers and is key to establish the cardiac phenotype and to rule out an underlying ischaemic aetiology. Furthermore, advanced imaging techniques enable deep cardiovascular phenotyping and non-invasive tissue characterization. The aim of this review is to propose a systematic approach to the diagnosis of DCM, emphasizing the importance of genetics and clinical findings for a precise and practical clinical approach. Also, we strive to qualify the role of cardiac imaging in the diagnosis of DCM, particularly on the relevance of novel techniques and clinical utility of actionable parameters to improve current diagnostic schemes and risk stratification algorithms. We further elaborate on the role of cardiac imaging to deliver optimal guidance to aetiology-based therapeutic approaches, verification of treatment response and disease progression monitoring.
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