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Investigating Transmembrane Current Source Formulation for Solving the ECG Inverse Problem

机译:调查跨膜电流配方,用于解决心电图逆问题

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The ElectroCardioGraphy (ECG) inverse problem has gained a rising interest over the past decades as a tool to non-invasively retrieve cardiac electrical information from body surface measurements. However it is still very challenging due to its ill-posed nature and needs to be regularized. Many formulations of this problem are well established in the cardiac electrophysiology community: equivalent dipole, potential, and activation time-based formulations. Surprisingly, the ECG inverse problem has never been investigated in terms of transmembrane current source model. The latter are derived from the bidomain theory in terms of transmembrane potentials or local activation time, but not in terms of transmembrane current sources. In this paper, we propose a volumetric transmembrane current based formulation of the ECG inverse problem and compare it with the epicardial potential based approach. This was done by studying the performance of twoL1based and twoL2based regularizations for solving the inverse problem. In [1], the Alternating Direction Method of Multipliers (ADMM) framework combined with the discrepancy principle is successfully used to update the regularization parameter in sparse regularization. We adopt the same strategy and adapt this scheme for Tikhonov regularization. Performance of each formulation is assessed using realistic data generated by a 3D coupled heart-torso propagation model in an idealized geometry. Results in terms of localization error and electrical mappings visualization are presented. It is shown on the one hand that the transmembrane current formulation gives promising results and deserves further investigation. On the other hand, the discrepancy principle applied to a split variable problem was successfully applied to Tikhonov regularization.
机译:电气心电图(ECG)逆问题在过去几十年中获得了兴趣的兴趣,作为从体表测量的非侵入性地检索心脏电气信息的工具。然而,由于其未成病的性质,并且需要进行规范,因此它仍然非常具有挑战性。这种问题的许多配方在心脏电生理社区中已经很好地建立:当量偶极,潜在和激活时间的制剂。令人惊讶的是,在跨膜电流源模型方面从未研究过ECG逆问题。后者在跨膜电位或局部激活时间方面源自非洲群藻理论,但不是跨膜电流源。在本文中,我们提出了一种基于ECG逆问题的体积跨膜电流配方,并将其与基于外膜潜在的方法进行比较。这是通过研究两个的性能来完成的 l 1 基于和两者 l 2 基于正规化来解决逆问题。在[1]中,乘法器(ADMM)框架的交替方向方法与差异原理相结合,用于更新稀疏正则化中的正则化参数。我们采用相同的策略,并适应该计划进行Tikhonov正规化。使用由理想化的几何形状中的3D耦合的心脏躯干传播模型产生的现实数据来评估每个配方的性能。提出了本地化误差和电映射可视化的结果。如一方面所示,跨膜电流制剂具有有前途的结果并应得进一步调查。另一方面,应用于拆分变量问题的差异原理成功应用于Tikhonov正规化。

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