The biomechanical condition of coronary plaques is governed by the stress and strength distribution. To determine the stress distribution, finite element modeling is often used. Application of this method crucially relies on adequate assessment of the material properties of the plaque components. The mechanically relevant components and what is known about their intrinsic properties are discussed in this chapter. Furthermore, an overview and comparison of the relevant studies that quantified material properties of atherosclerotic coronary arteries using traditional engineering approaches are presented. An alternative approach, using more physiologic loading conditions and avoiding tissue handling issues, to obtain the material properties wa...
The fibrous cap of an atherosclerotic plaque may be prone to rupture if the occurring stresses excee...
International audienceThe peak cap stress (PCS) amplitude is recognized as a biomechanical predictor...
Coronary heart disease is the most frequently occurring cardiovascular disease in Europe. The compon...
International audienceCoronary atheroma develop in local sites that are widely variable among patien...
Atherosclerotic plaque rupture in coronary arteries, an important trigger of myocardial infarction,...
textabstractAccurate material models and associated parameters of atherosclerotic plaques are crucia...
Accurate material models and associated parameters of atherosclerotic plaques are crucial for reliab...
Computational modelling to calculate the mechanical loading within atherosclerotic plaques has been ...
The fibrous cap of an atherosclerotic plaque may be prone to rupture if the occurring stresses excee...
The thesis deals with measurements of the atherosclerothic carotid plaques mechanical properties wit...
Atherosclerotic plaque rupture in coronary arteries, an important trigger of myocardial infarction, ...
Associate Editor Gang Bao oversaw the review of this article. Abstract—Coronary atheroma develop in ...
The majority of cardiovascular clinical events, which are the main causes of mortality and morbidity...
The fibrous cap of an atherosclerotic plaque may be prone to rupture if the occurring stresses excee...
International audienceThe peak cap stress (PCS) amplitude is recognized as a biomechanical predictor...
Coronary heart disease is the most frequently occurring cardiovascular disease in Europe. The compon...
International audienceCoronary atheroma develop in local sites that are widely variable among patien...
Atherosclerotic plaque rupture in coronary arteries, an important trigger of myocardial infarction,...
textabstractAccurate material models and associated parameters of atherosclerotic plaques are crucia...
Accurate material models and associated parameters of atherosclerotic plaques are crucial for reliab...
Computational modelling to calculate the mechanical loading within atherosclerotic plaques has been ...
The fibrous cap of an atherosclerotic plaque may be prone to rupture if the occurring stresses excee...
The thesis deals with measurements of the atherosclerothic carotid plaques mechanical properties wit...
Atherosclerotic plaque rupture in coronary arteries, an important trigger of myocardial infarction, ...
Associate Editor Gang Bao oversaw the review of this article. Abstract—Coronary atheroma develop in ...
The majority of cardiovascular clinical events, which are the main causes of mortality and morbidity...
The fibrous cap of an atherosclerotic plaque may be prone to rupture if the occurring stresses excee...
International audienceThe peak cap stress (PCS) amplitude is recognized as a biomechanical predictor...
Coronary heart disease is the most frequently occurring cardiovascular disease in Europe. The compon...