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Comparison of potential- and activation-based formulations for the inverse problem of electrocardiology

机译:基于电位和活化的制剂对心电学逆问题的比较

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摘要

Two predominant source formulations for the inverse problem of electrocardiology currently exist. They involve the reconstruction of epicardial potentials or myocardial activation times from noninvasively recorded torso surface potentials. Each of these formulations have their advantages, however, they have not been systematically compared against each other. We present results from a simulation study which compared a number of epicardial potential formulations (Tikhonov, truncated singular value decomposition (TSVD), Greensite-Tikhonov and Greensite-TSVD), and a myocardial activation time formulation for the inverse problem of electrocardiology. A number of different methods were also used to determine the appropriate level of regularization (optimal, L-curve, zero-crossing, and composite residual and smoothing operator) to apply to each formulation. The simulation study was conducted using an anatomically based boundary element porcine model with a variety of cardiac sources. Varying levels of geometric error were introduced to the system and solutions were computed using each of the inverse algorithms. Results show that under pure Gaussian noise potential-based methods performed best at low noise levels while the activation-based method was less effected by higher noise levels. In the presence of correlated geometric error, the activation-based method out performed the potential methods, with the Greensite-Tikhonov method being the most favored potential-based method when using the L-curve or zero-crossing method to determine the regularization parameter.
机译:当前存在两种用于心电学逆问题的主要来源公式。它们涉及从无创记录的躯干表面电位重建心外膜电位或心肌激活时间。这些配方中的每一种都有其优势,但是尚未进行系统地比较。我们提供了一项模拟研究的结果,该研究比较了许多心外膜电位制剂(Tikhonov,截短的奇异值分解(TSVD),Greensite-Tikhonov和Greensite-TSVD)和心肌激活时间公式,用于解决心电学的逆问题。还使用了许多不同的方法来确定适用于每种配方的正则化水平(最佳,L曲线,零交叉以及复合残差和平滑算子)。使用具有多种心脏来源的基于解剖学的边界元素猪模型进行了模拟研究。将各种级别的几何误差引入系统,并使用每种逆算法计算解。结果表明,在纯高斯噪声下,基于噪声势的方法在低噪声水平下效果最佳,而基于激活的方法受较高噪声水平的影响较小。在存在相关的几何误差的情况下,基于激活的方法执行了潜在方法,其中使用L曲线或零交叉方法确定正则化参数时,Greensite-Tikhonov方法是最受青睐的基于势的方法。

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