Key result
In a porcine model of acute myocardial infarction, T2-based BOLD MRI at 3 T detected vasodilatory dysfunction in the remote myocardium at weeks 1 and 2 that gradually recovered.
Why the study?
Can T2-based BOLD MRI at 3 T detect regional and longitudinal fluctuations in vasodilatory function in a porcine model of acute myocardial infarction?
Can T2-based BOLD MRI at 3 T detect regional and longitudinal fluctuations in vasodilatory function in a porcine model of acute myocardial infarction?
T2-based BOLD MRI at 3 T can detect transient vasodilatory dysfunction in remote myocardium following AMI in a porcine model, highlighting its potential as a noninvasive tool to evaluate therapies aimed at improving coronary flow reserve.
Feasibility shown in porcine AMI model only; leaves open human validation for BOLD MRI assessment of remote vasodilatory function.
Left ventricular remodeling as a result of acute myocardial infarction (AMI) is associated with significant morbidity, leading to cardiovascular dysfunction, disability, and death. Despite successful revascularization, coronary vasodilatory dysfunction has been shown in infarcted and remote myocardium of patients following AMI. Our study explored the utility of a T(2)-based blood-oxygen-level-dependent approach in probing regional and longitudinal fluctuations in vasodilatory function in a porcine model of AMI at 3 T. Ten pigs underwent MRI in control state and at day 2, weeks 1-6 following 90 min occlusion followed by reperfusion. The remote myocardium exhibited vasodilatory dysfunction at weeks 1 and 2 that gradually recovered, whereas the infarct zone showed no vasodilatory alterations. Our study suggests that microvascular alterations occurring in infarcted and remote myocardium after AMI might serve as an indicator of adverse left ventricular remodeling. The blood-oxygen-level-dependent technique using quantitative T(2) could potentially be a useful noninvasive tool to evaluate novel therapeutic strategies aimed at limiting vasoconstriction and improving coronary flow reserve after AMI.
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Ghugre et al. (2011) studied Acute myocardial infarction (n=10). T2-based blood-oxygen-level-dependent (BOLD) MRI at 3 T vs. Control state (baseline) was evaluated on Regional and longitudinal fluctuations in vasodilatory function. In a porcine model of acute myocardial infarction, T2-based BOLD MRI at 3 T detected vasodilatory dysfunction in the remote myocardium at weeks 1 and 2 that gradually recovered.
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