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Updated: Apr 27, 2026

In Vivo Quantitative Assessment of Myocardial Structure, Function, Perfusion and Viability Using Cardiac Micro-computed Tomography
Published on: February 16, 2016
Quantitative assessment of myocardial blood flow--clinical and research applications
Thomas H Schindler1, Alessandra Quercioli2, Ines Valenta1
1Division of Nuclear Medicine, Department of Radiology, Johns Hopkins University School of Medicine, Baltimore, MD.
Insights
Positron emission tomography (PET) imaging quantifies myocardial blood flow (MBF) and myocardial flow reserve (MFR), aiding in coronary artery disease (CAD) assessment. Reduced MFR predicts cardiovascular events, offering personalized preventive care insights.
Area of Science:
- Cardiovascular Imaging
- Nuclear Cardiology
- Quantitative Myocardial Perfusion
Background:
- Myocardial perfusion imaging (MPI) with SPECT/CT or PET/CT is crucial for assessing coronary artery disease (CAD).
- Current methods often underdiagnose less severe obstructive CAD lesions.
- Accurate assessment of CAD burden and risk stratification are essential for patient management.
Purpose of the Study:
- To evaluate the role of quantitative myocardial blood flow (MBF) and myocardial flow reserve (MFR) by PET/CT in CAD assessment.
- To explore the potential of PET/CT in identifying subclinical CAD and characterizing disease severity.
- To investigate the prognostic value of PET-derived MFR in predicting cardiovascular events.
Main Methods:
- Utilized PET/CT with radiotracer kinetic modeling for absolute MBF quantification at rest and during stress.
- Calculated regional MFR as an adjunct to visual MPI interpretation.
- Correlated PET-derived MBF and MFR with clinical outcomes and cardiovascular events.
Main Results:
- PET-determined reductions in hyperemic MBF or MFR predict an increased risk of future cardiovascular events.
- Quantitative MBF and MFR assessment can identify subclinical CAD and better characterize CAD burden.
- PET imaging enables the identification of coronary vasodilator dysfunction, a precursor to CAD.
Conclusions:
- Quantitative MBF and MFR assessment by PET/CT enhances the diagnostic and prognostic capabilities beyond traditional MPI.
- PET imaging provides a unique opportunity to monitor CAD progression and response to preventive interventions.
- Personalized, image-guided preventive care for vascular health is becoming increasingly feasible with advancements in PET imaging.
Abstract:
Myocardial perfusion imaging with SPECT/CT or with PET/CT is a mainstay in clinical practice for the diagnostic assessment of downstream, flow-limiting effects of epicardial lesions during hyperemic flows and for risk stratification of patients with known or suspected coronary artery disease (CAD). In patients with multivessel CAD, the relative distribution of radiotracer uptake in the left ventricular myocardium during stress and rest accurately identifies flow-limiting epicardial lesions or the most advanced, so called culprit, lesion. Often, less severe obstructive CAD lesions may go undetected or underdiagnosed. The concurrent ability of PET/CT with radiotracer kinetic modeling to determine myocardial blood flow (MBF) in absolute terms (mL/g/min) at rest and during vasomotor stress allows the computation of regional myocardial flow reserve (MFR) as an adjunct to the visual interpretation of myocardial perfusion studies. Adding the noninvasive evaluation and quantification of MBF and MFR by PET imaging to the visual analysis of myocardial perfusion may (1) identify subclinical CAD, (2) better characterize the extent and severity of CAD burden, and (3) assess "balanced" decreases of MBF in all 3 major coronary artery vascular territories. Recent investigations have demonstrated that PET-determined reductions in hyperemic MBF or MFR in patients with subclinical or clinically manifest CAD are predictive of increased relative risk of future cardiovascular events and clinical outcome. Quantifying MFR with PET enables the identification and characterization of coronary vasodilator dysfunction as functional precursor of the CAD process, which offers the unique opportunity to monitor its response to lifestyle or risk factor modification by preventive medical care. Whether an improvement or even normalization of hyperemic MBF or the MFR in subclinical or in clinically manifest CAD confers an improved long-term cardiovascular outcome remains untested. Nonetheless, given the recent growth in the clinical utilization of myocardial perfusion PET, image-guided and personalized preventive care of vascular health may become a reality in the near future.
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