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Updated: May 20, 2025

High-Resolution Cardiac Positron Emission Tomography/Computed Tomography for Small Animals
Published on: December 16, 2022
Emerging Applications of Positron Emission Tomography in Coronary Artery Disease
Anna Blach1,2, Jacek Kwiecinski1
1Department of Cardiology and Structural Heart Diseases, Medical University of Silesia, 40-055 Katowice, Poland.
Insights
Positron emission tomography myocardial perfusion imaging (PET MPI) offers superior accuracy for coronary artery disease detection compared to SPECT. Advanced PET/CT applications enable precision medicine by integrating multiparametric data and assessing plaque activity.
Area of Science:
- Cardiovascular Imaging
- Nuclear Medicine
- Radiology
Background:
- Coronary artery disease (CAD) is a leading global cause of death.
- Accurate disease phenotyping is crucial for effective CAD management.
- Myocardial perfusion imaging (MPI) is a cornerstone in CAD assessment.
Purpose of the Study:
- To review current applications of PET MPI in CAD.
- To highlight advancements in integrating multiparametric PET MPI data.
- To discuss PET imaging for coronary plaque activity assessment.
Main Methods:
- Review of current literature on PET MPI in CAD.
- Focus on multiparametric data integration and plaque imaging.
- Comparison of PET MPI versus SPECT MPI performance.
Main Results:
- PET MPI demonstrates higher sensitivity and specificity than SPECT MPI.
- PET/CT facilitates comprehensive non-invasive CAD assessment and precision medicine.
- Emerging PET applications include multiparametric data integration and plaque activity imaging.
Conclusions:
- PET MPI is increasingly adopted due to its superior diagnostic accuracy.
- PET/CT offers a powerful platform for personalized CAD management.
- Future directions involve leveraging PET for enhanced risk stratification and understanding CAD biology.
Abstract:
Coronary artery disease remains the leading cause of morbidity and mortality worldwide. With the changing clinical manifestation and novel therapeutical options, precise disease phenotyping becomes increasingly important at the point of care. In the management of coronary artery disease, myocardial perfusion imaging (MPI) remains the cornerstone of clinical practice. Although traditionally MPI has been primarily performed with single photon emission computed tomography (SPECT), nowadays, given the changing spectrum of the disease, greater precision and additional assessment of myocardial blood flow are desired. Due to the fundamental advantages of PET over SPECT, i.e., higher spatial resolution, accurate attenuation correction for each scan, and higher count rates, the sensitivity and specificity of PET MPI are higher than those of SPECT MPI and are estimated to be approximately 90-92% vs. 83-88% and 81-87% vs. 70-76%, respectively, according to meta-analysis data. Consequently, over the past decade, we have witnessed an increased uptake of positron emission tomography (PET) MPI. With the improved spatial resolution, the ability to quantify myocardial blood flow, and the potential to depict the burden of coronary atherosclerosis with low-dose computed tomography, PET/CT is uniquely positioned to facilitate a comprehensive non-invasive assessment of disease, providing an opportunity for precision medicine. The wealth of data obtained during a single imaging session can be challenging to integrate at the time of image analysis. There has therefore been an increasing interest in developing predefined thresholds or variables (scores) which combine the multidimensional data acquired with PET MPI. Beyond MPI, PET can also serve for the assessment of disease activity at the atherosclerotic plaque level, further refining our understanding of the biology of coronary artery disease and providing hope for enhanced prediction of myocardial infarctions. In this narrative review, we present the current applications of PET MPI in coronary artery disease and focus specifically on two areas that have recently garnered considerable interest-the integration of multiparametric PET MPI data and coronary plaque activity PET imaging.
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