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Updated: Aug 5, 2025

In Vivo Quantitative Assessment of Myocardial Structure, Function, Perfusion and Viability Using Cardiac Micro-computed Tomography
Published on: February 16, 2016
Objective, observer-independent evaluation of myocardial perfusion and function: role of SPECT
Wojciech Szot1, Ewa Kwiecień2, Łukasz Tekieli2,3
1Nuclear Imaging Laboratory, John Paul II Hospital, Krakow, Poland.
Insights
The increasing prevalence of heart failure necessitates objective imaging. Single-photon emission computed tomography offers an observer-independent method for evaluating cardiac function and perfusion, crucial for patient management.
Area of Science:
- Cardiology
- Medical Imaging
- Nuclear Medicine
Background:
- Coronary artery disease and heart failure prevalence are rising despite advanced therapies.
- Objective imaging is vital for assessing myocardial revascularization and novel treatments.
- Clinical study designs should align with everyday clinical practice for broader applicability.
Purpose of the Study:
- To review the evidence for single-photon emission computed tomography (SPECT) in cardiac imaging.
- To highlight SPECT's role in the objective evaluation of left ventricular (LV) function and perfusion.
- To assess SPECT's suitability for clinical practice and research.
Main Methods:
- Review of current evidence on cardiac imaging techniques.
- Comparison of 2D/3D echocardiography, MRI, SPECT, and PET.
- Focus on observer-independent and reproducible assessment of LV parameters.
Main Results:
- SPECT provides observer-independent evaluation of myocardial perfusion and LV function.
- SPECT offers objective assessment of left ventricular ejection fraction and volumes.
- SPECT demonstrates strengths in evaluating the evolution of cardiac conditions.
Conclusions:
- SPECT is a valuable tool for objective cardiac assessment in clinical practice.
- Its observer-independent nature makes it ideal for tracking disease progression and treatment efficacy.
- SPECT aids in the management of patients with ischemic heart disease and heart failure.
Abstract:
The number of patients with coronary artery disease and ischaemic heart failure - and those with terminal heart failure - is increasing despite improvements in medical and interventional therapies of ischaemic heart disease - and, over the next decades, it is projected to continue to increase further. Observer-independent, reproducible imaging techniques play a fundamental role in objective evaluation of both conventional (such as surgical or percutaneous) myocardial revascularization and novel therapeutic approaches to reduce myocardial ischaemia, improve contractility and prevent adverse myocardial remodelling. To be applicable to clinical practice, the clinical study design and data should best be rooted in everyday clinical practice. Accurate and reproducible assessment of left ventricular ejection fraction, left ventricular volumes, myocardial perfusion and function is one of the most important objectives of cardiac imaging. Current techniques used both in clinical studies and in everyday clinical practice include 2- and 3-dimensional echocardiography, magnetic resonance imaging, single-photon emission computed tomography and positron emission tomography; each of these has its strengths and limitations. We review present evidence on the role of single-photon emission computed tomography as a technique that may offer, through being observer-independent, the most objective evaluation of evolution of left ventricular perfusion, volumes and ejection fraction.
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