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Coronary arterial dynamics computation with medical-image-based time-dependent anatomical models and element-based zero-stress state estimates

机译:冠状动脉动力学计算与基于医学图像的时间相关解剖模型和基于元素的零应力状态估计

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摘要

We propose a method for coronary arterial dynamics computation with medical-image-based time-dependent anatomical models. The objective is to improve the computational analysis of coronary arteries for better understanding of the links between the atherosclerosis development and mechanical stimuli such as endothelial wall shear stress and structural stress in the arterialwall. Themethod has two components. The first one is element-based zero-stress (ZS) state estimation, which is an alternative to prestress calculation. The second one is a "mixed ZS state" approach, where the ZS states for different elements in the structural mechanics mesh are estimated with reference configurations based on medical images coming from different instants within the cardiac cycle. We demonstrate the robustness of the method in a patient-specific coronary arterial dynamics computation where the motion of a thin strip along the arterial surface and two cut surfaces at the arterial ends is specified to match the motion extracted from the medical images.
机译:我们提出了一种基于医学图像的时间依赖性解剖模型进行冠状动脉动力学计算的方法。目的是改善冠状动脉的计算分析,以更好地理解动脉粥样硬化的发展与机械刺激(如内皮壁的剪切应力和动脉壁的结构应力)之间的联系。该方法有两个组成部分。第一个是基于元素的零应力(ZS)状态估计,它是预应力计算的替代方法。第二种是“混合ZS状态”方法,其中基于来自心动周期内不同时刻的医学图像,使用参考配置估算结构力学网格中不同元素的ZS状态。我们在特定于患者的冠状动脉动力学计算中证明了该方法的鲁棒性,在该计算中,指定了一条沿动脉表面的细条的运动以及在动脉末端的两个切面的运动,以匹配从医学图像提取的运动。

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