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Updated: Jun 23, 2026

In Vivo Quantitative Assessment of Myocardial Structure, Function, Perfusion and Viability Using Cardiac Micro-computed Tomography
Published on: February 16, 2016
Regional myocardial perfusion rates in patient with coronary artery disease
Insights
Coronary artery disease significantly alters heart blood flow, causing uneven perfusion. This study reveals reduced and heterogeneous myocardial perfusion rates in patients with coronary artery disease.
Area of Science:
- Cardiology
- Nuclear Medicine
- Medical Imaging
Background:
- Regional myocardial perfusion is crucial for assessing heart health.
- Coronary artery disease (CAD) can lead to impaired blood flow to the heart muscle.
- Estimating myocardial perfusion helps diagnose and understand the severity of CAD.
Purpose of the Study:
- To quantify regional myocardial perfusion rates in patients with and without coronary artery disease.
- To investigate the relationship between coronary artery disease severity and patterns of myocardial perfusion.
- To assess the heterogeneity of myocardial blood flow in different regions of the heart.
Main Methods:
- Utilized Xenon-133 (133Xe) myocardial washout to estimate perfusion rates.
- Injected 133Xe into coronary arteries and monitored washout using a multi-crystal scintillation camera.
- Calculated local myocardial perfusion rates using the Kety formula.
Main Results:
- Normal subjects showed higher perfusion in the left ventricle than right or atrial regions.
- Patients with CAD exhibited reduced and more heterogeneous myocardial perfusion, particularly in the left ventricle.
- Perfusion deficits were widespread in diffuse CAD and localized in discrete CAD; collateral flow could normalize perfusion distally.
Conclusions:
- Coronary artery disease is strongly associated with increased heterogeneity of local myocardial perfusion.
- Significant coronary artery pathology can lead to substantial reductions in myocardial capillary blood flow.
- Myocardial perfusion imaging provides valuable insights into the functional consequences of coronary artery disease.
Abstract:
Regional myocardial perfusion rates were estimated from the myocardial washout of (133)Xenon in 24 patients with heart disease whose coronary arteriograms were abnormal and 17 similar subjects whose coronary arteriograms were judged to be normal. Disappearance rates of (133)Xe from multiple areas of the heart were monitored externally with a multiple-crystal scintillation camera after the isotope had been injected into a coronary artery and local myocardial perfusion rates were calculated by the Kety formula. The mean myocardial perfusion rates in the left ventricle exceeded those in the right ventricle or atrial regions in subjects without demonstrable coronary artery disease. In this group there was a significant lack of homogeneity of local perfusion rates in left ventricular myocardium; the mean coefficient of variation of left ventricular local perfusion rates was 15.8%. In the patients with radiographically demonstrable coronary artery disease, a variety of myocardial perfusion patterns were observed. Local capillary blood flow rates were depressed throughout the myocardium of patients with diffuse coronary disease but were subnormal only in discrete myocardial regions of others with localized occlusive disease. Local myocardial perfusion rates were similar to those found in the group with normal coronary arteriograms in patients with slight degrees of coronary disease and in those areas of myocardium distal to marked coronary constrictions or occlusions which were well supplied by collateral vessels. In subjects with right coronary disease, the mean right ventricular perfusion rates were significantly subnormal; in seven subjects of this group perfusion of the inferior left ventricle by a dominant right coronary artery was absent or depressed. The average mean left ventricular perfusion rate of 12 subjects with significant disease of two or more branches of the left coronary artery was significantly lower than that of the group with normal left coronary arteriograms. In the patients with abnormal left coronary arteriograms, the average coefficient of variation of local left ventricular perfusion rates was significantly increased (24.8%). The studies provide evidence that coronary artery disease is associated with increased heterogeneity of local myocardial perfusion rates. They indicate that radiographically significant vascular pathology of the right or left coronary artery may be associated with significant reductions of myocardial capillary perfusion in the region supplied by the diseased vessel.

