Item does not contain fulltextBiomechanical models have the potential to predict plaque rupture. For reliable models, correct material properties of plaque components are a prerequisite. This study presents a new technique, where high resolution ultrasound displacement imaging and inverse finite element (FE) modeling is combined, to estimate material properties of plaque components. Iliac arteries with plaques were excised from 6 atherosclerotic pigs and subjected to an inflation test with pressures ranging from 10 to 120 mmHg. The arteries were imaged with high frequency 40 MHz ultrasound. Deformation maps of the plaques were reconstructed by cross correlation of the ultrasound radiofrequency data. Subsequently, the arteries were perfusion...
Atherosclerotic plaque rupture and erosion are the most important mechanisms underlying the sudden p...
The rupture of thin-cap fibroatheroma (TCFA) plaques is a major cause of acute coronary events. A TC...
The rupture of thin-cap fibroatheroma (TCFA) plaques is a major cause of acute coronary events. A TC...
Biomechanical models have the potential to predict plaque rupture. For reliable models, correct mate...
Biomechanical models have the potential to predict plaque rupture. For reliable models, correct mate...
textabstractBiomechanical models have the potential to predict plaque rupture. For reliable models, ...
Biomechanical models have the potential to predict plaque rupture. For reliable models, correct mate...
Rupture of carotid plaques accounts for 15 to 20% of ischemic strokes. To prevent a stroke patients ...
Rupture of carotid plaques accounts for 15 to 20% of ischemic strokes. To prevent a stroke patients ...
Rupture of carotid plaques accounts for 15 to 20% of ischemic strokes. To prevent a stroke patients ...
\u3cp\u3eRupture of carotid plaques accounts for 15 to 20% of ischemic strokes. To prevent a stroke ...
The material properties of atherosclerotic plaques govern the biomechanical environment, which is as...
The majority of cardiovascular clinical events, which are the main causes of mortality and morbidity...
Item does not contain fulltextThe material properties of atherosclerotic plaques govern the biomecha...
Assessment of atherosclerotic plaque composition is crucial for quantitative monitoring of atheroscl...
Atherosclerotic plaque rupture and erosion are the most important mechanisms underlying the sudden p...
The rupture of thin-cap fibroatheroma (TCFA) plaques is a major cause of acute coronary events. A TC...
The rupture of thin-cap fibroatheroma (TCFA) plaques is a major cause of acute coronary events. A TC...
Biomechanical models have the potential to predict plaque rupture. For reliable models, correct mate...
Biomechanical models have the potential to predict plaque rupture. For reliable models, correct mate...
textabstractBiomechanical models have the potential to predict plaque rupture. For reliable models, ...
Biomechanical models have the potential to predict plaque rupture. For reliable models, correct mate...
Rupture of carotid plaques accounts for 15 to 20% of ischemic strokes. To prevent a stroke patients ...
Rupture of carotid plaques accounts for 15 to 20% of ischemic strokes. To prevent a stroke patients ...
Rupture of carotid plaques accounts for 15 to 20% of ischemic strokes. To prevent a stroke patients ...
\u3cp\u3eRupture of carotid plaques accounts for 15 to 20% of ischemic strokes. To prevent a stroke ...
The material properties of atherosclerotic plaques govern the biomechanical environment, which is as...
The majority of cardiovascular clinical events, which are the main causes of mortality and morbidity...
Item does not contain fulltextThe material properties of atherosclerotic plaques govern the biomecha...
Assessment of atherosclerotic plaque composition is crucial for quantitative monitoring of atheroscl...
Atherosclerotic plaque rupture and erosion are the most important mechanisms underlying the sudden p...
The rupture of thin-cap fibroatheroma (TCFA) plaques is a major cause of acute coronary events. A TC...
The rupture of thin-cap fibroatheroma (TCFA) plaques is a major cause of acute coronary events. A TC...