Background—To limit ischemic myocardial injury, it is important to differentiate viable from infarcted myocardium. Three dimensional (3D) tagged MRI has the ability to quantify myocardial 3D deformation and strain (noninvasively and precisely), and can achieve a true comparison of contraction not only from region to region, but also at different levels of function. In this study, we investigated whether regional strain mapping obtained by 3D-tagged MRI can differentiate between viable but stunned myocardium and nonviable myocardium. Methods and Results—We examined 7 dogs 2 days after a 90-minute closed-chest left anterior descending coronary artery occlusion followed by 48 hours of reperfusion. 3D-tagged MR images spanning the entire left v...
International audienceCardiac Magnetic Resonance Imaging (MRI) allows quantifying myocardial tissue ...
SummaryTissue Doppler imaging and strain rate imaging are quantitative methods for assessing myocard...
A robust algorithm to estimate three-dimensional strain in the left- ventricular heart wall, based o...
Strain-encoded magnetic resonance (MR) imaging was prospectively evaluated for direct imaging of sys...
International audienceObjectivesThe aim of the present study was to evaluate the diagnostic performa...
Early reperfusion has the potential for salvaging ischemic myocardium at risk for infarction. To tes...
The heart pumps blood to deliver oxygen and other metabolites to and remove waste products from the ...
Accurate quantification and timing of regional myocardial function allows early identification of dy...
Feasibility of identifying viable myocardium in rest and stress magnetic resonance imaging (MRI) was...
Three-dimensional regional strain analysis in tion: a 3T magnetic healthy myocardium. The 3D interro...
Accurate quantification and timing of regional myocardial function allows early identification of dy...
Myocardial function assessment is essential for determining the health of the myocardium. Global ass...
Accurate quantification and timing of regional myocardial function allows early identification of dy...
Three-dimensional (3D) strain analysis based on real-time 3-D echocardiography (RT3DE) has emerged a...
To identify viable myocardium before coronary revascularization, we prospectively submitted eleven p...
International audienceCardiac Magnetic Resonance Imaging (MRI) allows quantifying myocardial tissue ...
SummaryTissue Doppler imaging and strain rate imaging are quantitative methods for assessing myocard...
A robust algorithm to estimate three-dimensional strain in the left- ventricular heart wall, based o...
Strain-encoded magnetic resonance (MR) imaging was prospectively evaluated for direct imaging of sys...
International audienceObjectivesThe aim of the present study was to evaluate the diagnostic performa...
Early reperfusion has the potential for salvaging ischemic myocardium at risk for infarction. To tes...
The heart pumps blood to deliver oxygen and other metabolites to and remove waste products from the ...
Accurate quantification and timing of regional myocardial function allows early identification of dy...
Feasibility of identifying viable myocardium in rest and stress magnetic resonance imaging (MRI) was...
Three-dimensional regional strain analysis in tion: a 3T magnetic healthy myocardium. The 3D interro...
Accurate quantification and timing of regional myocardial function allows early identification of dy...
Myocardial function assessment is essential for determining the health of the myocardium. Global ass...
Accurate quantification and timing of regional myocardial function allows early identification of dy...
Three-dimensional (3D) strain analysis based on real-time 3-D echocardiography (RT3DE) has emerged a...
To identify viable myocardium before coronary revascularization, we prospectively submitted eleven p...
International audienceCardiac Magnetic Resonance Imaging (MRI) allows quantifying myocardial tissue ...
SummaryTissue Doppler imaging and strain rate imaging are quantitative methods for assessing myocard...
A robust algorithm to estimate three-dimensional strain in the left- ventricular heart wall, based o...