Role of CMR Mapping Techniques in Cardiac Hypertrophic Phenotype
Andrea Baggiano1, Alberico Del Torto1, Marco Guglielmo1
1Cardiovascular Imaging Department, Centro Cardiologico Monzino IRCCS, 20138 Milan, Italy.
Insights
Cardiovascular magnetic resonance (CMR) mapping offers advanced tissue characterization for non-ischemic cardiomyopathies. This review highlights its role in diagnosing hypertrophic phenotypes, improving accuracy and prognosis.
Area of Science:
- Cardiology
- Medical Imaging
- Biomedical Engineering
Background:
- Non-ischemic cardiomyopathies are diverse myocardial diseases leading to heart failure and arrhythmias.
- Classification relies on morphological phenotypes: dilated, hypertrophic, restrictive, and right ventricular.
- Cardiovascular imaging is crucial for diagnosis and prognosis, with CMR being the preferred modality.
Purpose of the Study:
- To review the evidence for mapping techniques in assessing the hypertrophic phenotype of cardiomyopathies.
- To recommend integrating mapping into routine CMR evaluations for cardiomyopathies with increased wall thickness.
Main Methods:
- Cardiovascular magnetic resonance (CMR) utilizes imaging to assess myocardial morphology and function.
- Quantitative mapping techniques (native T1, post-contrast T1, T2) provide detailed myocardial tissue characterization.
- Pixel-wise color-coded maps enhance visualization of tissue abnormalities.
Main Results:
- Mapping techniques provide valuable insights into myocardial tissue abnormalities.
- Quantitative mapping improves diagnostic accuracy and prognostic assessment, particularly for hypertrophic cardiomyopathy.
- Integration of mapping enhances the diagnostic capabilities of CMR.
Conclusions:
- Mapping techniques are essential for detailed tissue characterization in non-ischemic cardiomyopathies.
- Routine integration of mapping in CMR protocols can significantly improve the diagnosis and management of hypertrophic phenotypes.
- Further research should focus on standardizing mapping protocols and expanding its application across all cardiomyopathy types.
Abstract:
Non-ischemic cardiomyopathies represent a heterogeneous group of myocardial diseases potentially leading to heart failure, life-threatening arrhythmias, and eventually death. Myocardial dysfunction is associated with different underlying pathological processes, ultimately inducing changes in morphological appearance. Thus, classification based on presenting morphological phenotypes has been proposed, i.e., dilated, hypertrophic, restrictive, and right ventricular cardiomyopathies. In light of the key diagnostic and prognostic role of morphological and functional features, cardiovascular imaging has emerged as key element in the clinical workflow of suspected cardiomyopathies, and above all, cardiovascular magnetic resonance (CMR) represents the ideal technique to be used: thanks to its physical principles, besides optimal spatial and temporal resolutions, incomparable contrast resolution allows to assess myocardial tissue abnormalities in detail. Traditionally, weighted images and late enhancement images after gadolinium-based contrast agent administration have been used to perform tissue characterization, but in the last decade quantitative assessment of pre-contrast longitudinal relaxation time (native T1), post-contrast longitudinal relaxation time (post-contrast T1) and transversal relaxation time (T2), all displayed with dedicated pixel-wise color-coded maps (mapping), has contributed to give precious knowledge insight, with positive influence of diagnostic accuracy and prognosis assessment, mostly in the setting of the hypertrophic phenotype. This review aims to describe the available evidence of the role of mapping techniques in the assessment of hypertrophic phenotype, and to suggest their integration in the routine CMR evaluation of newly diagnosed cardiomyopathies with increased wall thickness.
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