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A Volume Source Method for Solving ECGI Inverse Problem

机译:解决ECGI逆问题的卷源方法

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Electrocardiographic Imaging (ECGI) is a non-invasive procedure that allows to reconstruct the electrical activity of the heart from body surface potential map (BSPM). In this paper, we present a volume model to solve the electrocardiography inverse problem capable to take into account structural informations obtained by imaging techniques. Thedirect problem maps a volume current in the cardiac muscle (ventricles) to the body surface electrical measures. The model is based on coupling bidomain heart model with torso conduction. The corresponding inverse problem is solved with the Tikhonov regularization. Simulated database are used for the evaluation of this method and we compared them to standard method of fundamental solutions (MFS). The sensitivity to noise is also assessed. The correlation coefficients (CC) and the relative error (RE) of activation times were computed. Results show that the CC (respectively RE) median is respectively 0.75 for the volume model and 0.4 for the MFS (respectively 0.31 vs 0.35) on the epicardium. On the endocardium, the CC and the RE median are 0.65 and 0.33 for the volume method. In conclusion, the volume method performs better than the method of fundamental solutions (MFS) for any noise level, and reconstruct in addition endocardial information.
机译:心电图成像(ECGI)是一种非侵入性过程,允许重建来自体表潜在地图(BSPM)的心脏的电活动。在本文中,我们提出了一种体积模型来解决能够考虑通过成像技术获得的结构信息的心电图逆问题。附近问题将心肌(心室)中的音量电流映射到体表电气措施。该模型基于耦合弯曲的躯干传导偶极群体心脏模型。通过Tikhonov规则化解决了相应的逆问题。模拟数据库用于评估该方法,并将它们与基本解决方案(MFS)的标准方法进行比较。还评估对噪声的敏感性。计算激活时间的相关系数(CC)和相对误差(RE)。结果表明,CC(分别的RE)中值分别为0.75的体积型号,MFS(分别为0.31 vs 0.35)的0.4。对于体积法,CC和RE中位数为0.65和0.33。总之,体积方法比任何噪声水平的基本解决方案(MF)的方法更好,并重建外部信息。

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