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NUMERICAL SIMULATION OF THE LEFT VENTRICLE AND ATRIUM AS REFERENCE FOR PATHOLOGICAL HEARTS

机译:左心室和心房作为病理性心脏参考的数值模拟

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To improve the diagnosis and therapy of heart diseases, we are developing a patient specific heart model KAHMO. Since indications as well as limitations of therapies for those diseases are still subject of discussion, this project is aimed at the optimization and the finding of indication criteria using a numerical simulation of the heart. The focus lies on the left ventricle, the atrium and the heart valves. In order to get quantitative information on the respective disease, it is first necessary to model a healthy human heart as a reference for a successful therapy planning. Standard clinical imaging (MRI, CT) is used to get a time-resolved ventricular geometry by segmentation of the fluid movement. A semiautomatic method generates topologically identical grids of the ventricle for each trigger step. A new grid generation method for the atrium is presented. The heart movement for a full cardiac cycle is performed by a third order approximation during simulation. Former publications showed, that the intraventricular flow structure is not only prescribed by the ventricle itself, but also by the movement and shape of the atrium. Enhancements in modeling the atrium and the valve models as well as an optimized grid generation are presented.
机译:为了改善心脏病的诊断和治疗,我们正在开发一种针对患者的心脏模型KAHMO。由于这些疾病的适应症和治疗局限性仍在讨论中,因此该项目旨在通过心脏数值模拟来优化和寻找适应症标准。重点放在左心室,心房和心脏瓣膜上。为了获得有关各个疾病的定量信息,首先必须对健康的人心脏进行建模,以作为成功治疗计划的参考。标准的临床成像(MRI,CT)用于通过对液体运动进行分段来获得时间分辨的心室几何形状。半自动方法为每个触发步骤生成脑室的拓扑相同的网格。提出了一种新的中庭网格生成方法。在仿真过程中,通过三阶近似来执行整个心动周期的心脏运动。以前的出版物表明,心室内的流动结构不仅由心室本身规定,而且由心房的运动和形状决定。提出了对心房和瓣膜模型进行建模的改进,以及优化的网格生成。

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