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Myocardial contrast echo effect: the dilemma of coronary blood flow and volume
D Rovai1, A N DeMaria, A L'Abbate
1Consiglio Nazionale delle Ricerche, Clinical Physiology Institute, Pisa, Italy.
Insights
Myocardial contrast echocardiography intensity is determined by physical factors like microbubble properties and biologic factors such as coronary blood flow and myocardial blood volume. Understanding these elements is key for clinical applications.
Area of Science:
- Cardiovascular Imaging
- Biophysics
- Physiology
Background:
- Myocardial contrast echocardiography (MCE) provides valuable data, but the interpretation of myocardial contrast intensity is not fully understood.
- The precise determinants of contrast intensity in MCE require further elucidation.
Purpose of the Study:
- To define the physical and biologic factors influencing myocardial contrast.
- To clarify the roles of coronary blood flow and intramyocardial blood volume in MCE signal intensity.
Main Methods:
- Review of physical factors: microbubble properties (radius, compressibility, stability, concentration), signal processing, instrument settings, and signal attenuation.
- Analysis of biologic factors: coronary blood flow and myocardial blood volume.
- Examination of the relationship between time-intensity curve parameters (area under the curve, mean transit time) and these factors.
Main Results:
- Physical factors can be managed through experimental or clinical setup optimization.
- Biologic factors, specifically coronary blood flow and myocardial blood volume, are primary determinants of MCE intensity.
- Coronary blood flow and myocardial vascularity/volume influence contrast intensity in opposing directions.
Conclusions:
- Increased coronary flow without increased vascularity/volume decreases MCE signal intensity (area under curve, mean transit time).
- Increased coronary flow coupled with increased vascularity/volume enhances MCE signal intensity.
- A comprehensive understanding of MCE determinants is crucial for advancing clinical use of new agents and technologies.
Abstract:
Despite the useful information provided by myocardial contrast echocardiography, the meaning of myocardial contrast intensity remains elusive. This review is meant to define the contribution of physical and biologic factors in producing myocardial contrast and to elucidate the relative roles of coronary blood flow and intramyocardial blood volume in determining contrast effect. The main physical factors influencing the contrast echo effect include the properties of microbubbles as scattering elements (mainly their radius, compressibility, stability and concentration), electronic signal processing, instrument setting and contrast-induced signal attenuation. The effect of these factors can be limited by an appropriate experimental or clinical setup. Biologic factors are less easily controllable, and changes in coronary blood flow and alterations in myocardial blood volume appear to be the main determinants of myocardial contrast intensity. Moreover, these factors influence contrast intensity in opposite directions. Both the area under the time-intensity curve and the mean transit time of myocardial contrast are inversely related to coronary blood flow but directly related to myocardial vascularity and blood volume. Therefore, an increase in coronary flow not accompanied by an increase in myocardial vascularity and volume is accompanied by a decrease in the area under the curve and mean transit time of contrast. Conversely, an increase in coronary flow mediated by augmented myocardial vascularity and volume will produce an increase in the area under the curve and mean transit time. A better understanding of the physical and biologic determinants of contrast echo intensity will be fundamental in the clinical application of new agents and technologies.