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Application of Cardiovascular Computed Tomography to the Assessment of Patients With Hypertrophic Cardiomyopathy
Andrew M Crean1, Gary R Small1, Zain Saleem2
1Division of Cardiology, Ottawa Heart Institute, Ottawa, Ontario, Canada.
Insights
Cardiac computed tomography (CT) offers a valuable alternative to cardiac magnetic resonance (CMR) imaging for diagnosing hypertrophic cardiomyopathy. This review highlights CT
Area of Science:
- Cardiology
- Medical Imaging
Background:
- Hypertrophic cardiomyopathy (HCM) is a common inherited cardiac condition.
- HCM can cause symptoms like breathlessness, dizziness, chest pain, and syncope.
- Accurate diagnosis requires characterizing anatomy, physiology, and myocardial substrate.
Purpose of the Study:
- To present cardiac computed tomography (CT) as an alternative to cardiac magnetic resonance (CMR) imaging for HCM.
- To review the utility of functional CT in identifying outflow tract obstruction and aiding surgical planning.
- To demonstrate the added value of multiplanar isotropic reformats in challenging HCM cases.
Main Methods:
- Review of functional CT applications in hypertrophic cardiomyopathy.
- Analysis of multiplanar isotropic reformats for improved visualization.
- Comparison of CT capabilities with traditional CMR imaging.
Main Results:
- Functional CT can identify components of outflow tract obstruction in HCM.
- CT aids in interventional and surgical planning for HCM patients.
- Multiplanar isotropic reformats enhance recognition of HCM complications like apical aneurysms.
Conclusions:
- Cardiac CT is a highly valuable and versatile imaging tool for HCM.
- CT provides detailed anatomical and functional information.
- Wider usage and recognition of cardiac CT in HCM patient care are recommended.
Abstract:
Hypertrophic cardiomyopathy is a common inherited cardiac condition in which regional myocardial thickening and scarring can lead to a range of symptoms including breathlessness, dizziness, chest pain, and collapse with loss of consciousness. It is vital to be able to understand the mechanisms behind these epiphenomena and to be able to distinguish, for example, between syncope because of arrhythmia versus syncope because of mechanical outflow tract obstruction. Therefore, we require a technique that can characterize anatomy, physiology, and myocardial substrate. Traditionally, this role has been the preserve of cardiac magnetic resonance (CMR) imaging. This review makes the case for cardiac computed tomography (CT) as an alternative imaging method. We review the use of functional CT to identify the components of outflow tract obstruction (and obstruction at other levels, which may be simultaneous), and as an aid to interventional and surgical planning. We demonstrate the added value of multiplanar isotropic reformats in this condition, particularly in cases where the diagnosis may be more challenging or where complications (such as early apical aneurysm) may be difficult to recognize with 2-dimensional techniques. In conclusion, our aim is to convince readers that cardiac CT is a highly valuable and versatile tool, which deserves wider usage and greater recognition in those caring for patients with hypertrophic cardiomyopathy.
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