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In Vivo Quantitative Assessment of Myocardial Structure, Function, Perfusion and Viability Using Cardiac Micro-computed Tomography
Published on: February 16, 2016
Cardiac CT for myocardial ischaemia detection and characterization--comparative analysis
A M Bucher1, C N De Cecco, U J Schoepf
11 Department of Radiology and Radiological Science, Medical University of South Carolina, Charleston, SC, USA.
Insights
Assessing myocardial ischemia is challenging. Cardiac CT imaging, including CT-based myocardial perfusion imaging (MPI), offers advanced anatomical and functional views for better diagnosis.
Area of Science:
- Cardiology
- Radiology
- Medical Imaging
Background:
- Myocardial ischemia assessment is a common clinical challenge.
- Current imaging modalities provide anatomical and functional data but anatomical evaluation alone is insufficient.
- Physiological assessment is crucial for evaluating the hemodynamic relevance of coronary blockages.
Purpose of the Study:
- To review current myocardial perfusion imaging (MPI) techniques.
- To focus on the role of computed tomography (CT) in MPI.
- To present recent clinical investigations and trial results for CT-based MPI.
Main Methods:
- Review of CT techniques for myocardial perfusion assessment.
- Discussion of single-energy and dual-energy first-pass CT for myocardial blood pool assessment.
- Analysis of dynamic cardiac CT for quantifying myocardial perfusion using time-resolved attenuation data.
Main Results:
- CT-based MPI demonstrates promising diagnostic accuracy compared to reference modalities.
- Both static and dynamic CT approaches for MPI are available.
- Recent clinical trials support the utility of CT-based MPI.
Conclusions:
- CT technology has advanced, integrating cardiac CT into clinical workflows.
- CT-based MPI provides both anatomical and functional myocardial assessment.
- CT-based MPI is a valuable tool for diagnosing myocardial ischemia.
Abstract:
The assessment of patients presenting with symptoms of myocardial ischaemia remains one of the most common and challenging clinical scenarios faced by physicians. Current imaging modalities are capable of three-dimensional, functional and anatomical views of the heart and as such offer a unique contribution to understanding and managing the pathology involved. Evidence has accumulated that visual anatomical coronary evaluation does not adequately predict haemodynamic relevance and should be complemented by physiological evaluation, highlighting the importance of functional assessment. Technical advances in CT technology over the past decade have progressively moved cardiac CT imaging into the clinical workflow. In addition to anatomical evaluation, cardiac CT is capable of providing myocardial perfusion parameters. A variety of CT techniques can be used to assess the myocardial perfusion. The single energy first-pass CT and dual energy first-pass CT allow static assessment of myocardial blood pool. Dynamic cardiac CT imaging allows quantification of myocardial perfusion through time-resolved attenuation data. CT-based myocardial perfusion imaging (MPI) is showing promising diagnostic accuracy compared with the current reference modalities. The aim of this review is to present currently available myocardial perfusion techniques with a focus on CT imaging in light of recent clinical investigations. This article provides a comprehensive overview of currently available CT approaches of static and dynamic MPI and presents the results of corresponding clinical trials.
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