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Estimation of Electrical Pathways Finding Minimal Cost Paths from Electro-Anatomical Mapping of the Left Ventricle

机译:从左心室的电解剖学映射找到最小成本路径的电路估计

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The electrical activation of the heart is a complex physiological process that is essential for the understanding of several cardiac dysfunctions, such as ventricular tachycardia (VT). Nowadays, electroanatomical mappings of patient-specific activation times on the left ventricle surface can be estimated, providing crucial information to the clinicians for guiding cardiac treatment. However, some electrical pathways of particular interest such as Purkinje or still viable conduction channels are difficult to interpret in these maps. We present here a novel method to find some of these electrical pathways using minimal cost paths computations on surface maps. Experiments to validate the proposed method have been carried out in simulated data, and also in clinical data, showing good performance on recovering the main characteristics of simulated Purkinje trees (e.g. end-terminals) and promising results on a real case of fascicular VT.
机译:心脏的电激活是一种复杂的生理过程,对于了解几种心脏功能障碍(例如心室性心动过速(VT)是必不可少的。如今,可以估计左心室表面上的患者特异性活化时间的电灭绝映射,为临床医生提供关键信息,以引导心脏治疗。然而,诸如Purkinje或仍然可行的传导通道的特别兴趣的一些电气通路难以在这些地图中解释。我们在这里介绍一种使用表面图上的最小成本路径计算的这些电路的新方法。验证所提出的方法的实验已经在模拟数据中进行,也在临床数据中进行,呈现出良好的性能,即恢复模拟的Purkinje树木(例如终端)的主要特征以及对坐着的楣VT的实际情况有前途的结果。

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