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Published on: April 13, 2015
Total and effective coronary blood flow in coronary and noncoronary heart disease
1Cardiology and Cardio-Pulmonary Divisions, Departments of Medicine and Surgery, University of Manitoba, Canada.
Insights
This study measured total coronary blood flow (CBF) and myocardial blood flow (MBF) in healthy individuals and patients with heart disease. Results show reduced CBF and MBF in heart disease patients, suggesting perfusion limitations.
Area of Science:
- Cardiology
- Physiology
- Medical Imaging
Background:
- Limited data exists on total coronary blood flow (CBF) in humans.
- The validity of myocardial blood flow (MBF) as a measure of nutrient flow is not well-established.
Purpose of the Study:
- To measure and compare CBF and MBF in normal subjects and patients with coronary heart disease (CHD) and non-coronary heart disease (NCHD).
- To investigate the relationship between blood flow, myocardial oxygen utilization (MVO2), and Rb extraction.
Main Methods:
- Utilized the 84Rb coincidence counting technique with single bolus and continuous infusion methods.
- Measured CBF, MBF, MVO2, and lactate extraction ratio in 9 normal subjects, 26 CHD patients, and 19 NCHD patients.
- Assessed myocardial Rb extraction ratio (epsilon Rb).
Main Results:
- Normal subjects exhibited significantly higher CBF and MBF compared to CHD and NCHD groups.
- Myocardial Rb extraction ratio was significantly lower in normal subjects, supporting its flow-dependent nature.
- Both CHD and NCHD groups showed reduced MVO2 and CBF; CHD presented an anaerobic trend, unlike NCHD.
Conclusions:
- CBF and MBF measurements provide valuable insights into coronary circulation in health and disease.
- Findings suggest MVO2 is perfusion-dependent in CHD, while perfusion is MVO2-dependent in NCHD.
- Differences between CBF and MBF in disease states may reflect altered Rb+ transport rather than true shunting.
Abstract:
There are no data available concerning total coronary blood flow to the whole heart (CBF) in man. "Effective" or "nutrient" coronary blood flow to the whole heart (MBF), supposedly a measure of flow through exchanging channels of the coronary circulation, has been measured but its validity has not been established. Accordingly, CBF and MBF were measured in 9 normal subjects, 26 patients with coronary heart disease (CHD), and 19 with noncoronary, mostly valvular heart disease (NCHD), by coincidence counting 84Rb technique. Two methods were used: single bolus (24 cases) and continuous infusion (30 cases). Various other parameters including myocardial oxygen utilization (MVO2) and lactate extraction ratio were determined. In the normal subjects CBF (386 +/- 77 ml/min) was significantly higher (P < 0.05) than in CHD (288 +/- 124 ml/min) and NCHD (292 +/- 111 ml/min). Likewise the normal MBF (380 +/- 81 ml/min) was significantly higher (P < 0.01) than in CHD (251 +/- 105 ml/min) as well as NCHD (258 +/- 104 ml/min). The myocardial Rb extraction ratio epsilon Rb) was significantly lower in normal subjects (39 +/- 9%) than in CHD (50 +/- 7%) and NCHD (52 +/- 11%) and this supports the view that epsilon Rb is flow-dependent. In both CHD and NCHD there was significant diminution of MVO2 as well as CBF. In CHD this was accompanied by a significant anaerobic trend but in NCHD it was not. It might therefore appear that in CHD, MVO2 is determined by perfusion whereas in NCHD, perfusion is determined by MVO2. In comparing CBF with MBF by paired observation testing, there was no significant difference in the normals (P > 0.3), whereas the differences were significant in CHD (P < 0.01) and NCHD (P < 0.02). This was merely a reflection of a reduced ratio of myocardial to total body epsilon Rb in CHD and NCHD, and available evidence indicates that this may be an expression of depressed transport of Rb+ rather than true shunting.
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