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Automatic location of sources of electrical activation from electroanatomical maps

机译:从电解剖图自动定位电激活源

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Electro-anatomical mapping is a widely used technique used by electrophysiologists to understand patient's activation pattern. The system measures activation time at different locations but does not provide information on underlying electrical pathways or triggering points, such as Purkinje-myocardial junctions or ectopic foci. We present a method to estimate the locations of Purkinje-myocardial junctions from a discrete set of endocardial samples. Using less than 1000 endocardial samples it can recover locations and activation times of the most influencing Purkinje myocardial junctions from Purkinje trees of up to 500 junctions. A simulation study revealed that using the estimated Purkinje myocardial junctions, mean squared errors of local activation times remain low for different tree structures.
机译:电解剖图是电生理学家广泛使用的一种技术,用于了解患者的激活模式。该系统测量不同位置的激活时间,但不提供有关潜在的电通路或触发点(如浦肯野-心肌交界处或异位灶)的信息。我们提出了一种方法,可以从一组心内膜样品的离散集合中估计浦肯野-心肌交界处的位置。使用少于1000个心内膜样品,它可以从多达500个结点的Purkinje树中恢复影响最大的Purkinje心肌结点的位置和激活时间。一项模拟研究表明,使用估计的Purkinje心肌交界处,对于不同的树结构,局部激活时间的均方误差仍然较低。

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