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Solving the Inverse Problem of Electrocardiography on the Endocardium Using a Single Layer Source

机译:用单层信号源解决心电图上的心电图逆问题

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The inverse problem of electrocardiography consists in reconstructing cardiac electrical activity from given body surface electrocardiographic measurements. Despite tremendous progress in the field over the last decades, the solution of this problem in terms of electrical potentials on both epi- and the endocardial heart surfaces with acceptable accuracy remains challenging. This paper presents a novel numerical approach aimed at improving the solution quality on the endocardium. Our method exploits the solution representation in the form of electrical single layer densities on the myocardial surface. We demonstrate that this representation brings twofold benefits: first, the inverse problem can be solved for the physiologically meaningful single layer densities. Secondly, a conventional transfer matrix for electrical potentials can be split into two parts, one of which turned out to posess regularizing properties leading to improved endocardial reconstructions. The method was tested in-silico for ventricular pacings utilizing realistic CT-based heart and torso geometries. The proposed approach provided more accurate solution on the ventricular endocardium compared to the conventional potential-based solutions with Tikhonov regularization of the 0th, 1st, and 2nd orders. Furthermore, we show a uniform spatio-temporal behavior of the single layer densities over the heart surface, which could be conveniently employed in the regularization procedure.
机译:心电图的反问题在于从给定的体表心电图测量结果重建心脏电活动。尽管在过去的几十年中该领域取得了长足的进步,但在心外膜和心内膜心脏表面的电势方面以可接受的精度解决该问题仍然具有挑战性。本文提出了一种新颖的数值方法,旨在提高心内膜的溶液质量。我们的方法利用心肌表面电单层密度形式的溶液表示。我们证明了这种表示有两个好处:首先,可以解决生理学上有意义的单层密度的反问题。其次,传统的电位转移矩阵可以分为两部分,其中之一证明具有正则化特性,从而改善了心内膜重建。使用基于CT的真实心脏和躯干几何形状,对该方法进行了计算机模拟的心室起搏测试。与传统的基于电位的解决方案(第0级,第1级和第2级Tikhonov正则化)相比,该方法为心室心内膜提供了更准确的解决方案。此外,我们显示了心脏表面上单层密度的均匀时空行为,可以方便地在正则化程序中使用。

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