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Coupled Computer Modeling of Atherosclerosis Development in the Coronary Arteries

机译:冠状动脉粥样硬化发展的耦合计算机建模

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Atherosclerosis is characterized by dysfunction of endothelium, vasculitis and accumulation of lipid, cholesterol and cell elements inside blood vessel wall. Determination of plaque location and plaque volume for a specific patient is very important for prediction of atherosclerotic disease progression. In this study coupled computer modeling of atherosclerosis progression is analysed. Continuum approach assumed mass transport of LDL through the wall and the simplified inflammatory process coupled with three additional reaction-diffusion equations and lesion growth model in the intima. Discrete modeling used dissipative particle dynamics method which individual blood constituents (e.g., platelets, RBCs, white blood cells) treated as particle interaction. Coupled continuum and discrete model was investigated with real patient baseline and follow up study for right and left coronary arteries.
机译:动脉粥样硬化的特征在于内皮功能障碍,血管炎和血管壁内脂质,胆固醇和细胞成分的积累。确定特定患者的斑块位置和斑块体积对于预测动脉粥样硬化疾病的进展非常重要。在这项研究中,对动脉粥样硬化进程的耦合计算机建模进行了分析。连续体方法假设LDL通过壁大量运输和简化的炎症过程,再加上内膜中的三个附加反应扩散方程和病变生长模型。离散建模使用耗散粒子动力学方法,该方法将单个血液成分(例如血小板,RBC,白细胞)视为粒子相互作用。用真实的患者基线对连续和离散的耦合模型进行了研究,并对右冠状动脉和左冠状动脉进行了随访研究。

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