首页> 外文会议>International Workshop on Functional Imaging and Modeling of the Heart(FIMH 2007); 20070607-09; Salt Lake City,UT(US) >Forward and Inverse Solutions of Electrocardiography Problem Using an Adaptive BEM Method
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Forward and Inverse Solutions of Electrocardiography Problem Using an Adaptive BEM Method

机译:使用自适应BEM方法的心电图问题的正解和反解

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The construction of geometry models of heart-torso is critical for solving the forward and inverse problems of magneto- and electro-cardiography (MCG/ECG). Boundary element method (BEM) is a commonly used numerical approach for the solution of these problems and it requires the modeling of interfaces between various tissue regions. In this study, a new BEM (h-adaptive type) has been applied to the ECG forward/inverse problems. Compared with those traditional BEMs, the adaptive BEM can self-adjust the number and size of the boundary element (BE) meshes according to an error indicator, and thus can save a lot of computational time and also improve the accuracy of the forward and inverse solutions. In this paper, the procedure of the adaptive triangular mesh generation is detailed and the algorithm is tested using a concentric sphere model and a realistic heart-torso model. For the realistic torso model, to improve the numerical accuracy, a number of new nodes are added on the basis of initial torso BE meshes, and the corresponding node coordinates are determined using an approach called Parametric Fourier Representation (PFR) of closed polygons. The simulation results show that the adaptive BEM is more accurate and efficient than traditional BEMs and therefore it is a very promising numerical scheme for ECG forward/inverse problems.
机译:建立心脏躯干的几何模型对于解决磁心电图和MCG / ECG的正反问题至关重要。边界元方法(BEM)是解决这些问题的常用数值方法,它要求对各个组织区域之间的界面进行建模。在这项研究中,一种新的BEM(h自适应类型)已应用于ECG正向/反向问题。与传统的边界元法相比,自适应边界元法可以根据误差指标自动调整边界元网格的数量和大小,从而节省了大量的计算时间,并提高了正反方向的精度。解决方案。在本文中,详细介绍了自适应三角网格生成的过程,并使用同心球模型和真实的心-躯干模型对算法进行了测试。对于逼真的躯干模型,为了提高数值精度,在初始躯干BE网格的基础上添加了许多新节点,并使用称为闭合多边形的参数傅里叶表示(PFR)的方法确定了相应的节点坐标。仿真结果表明,自适应边界元法比传统边界元法更准确,更有效,因此对于解决心电图的正向/逆向问题是一种非常有前途的数值方案。

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