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Prediction of CRT Activation Sequence by Personalization of Biventricular Models from Electroanatomical Maps

机译:通过电解剖图个性化双脑室模型预测CRT激活序列

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摘要

Optimization of lead placement and interventricular delay settings in patients under cardiac resynchronization therapy is a complex task that might benefit from prior information based on models. Biophysical models can be used to predict the sequence of electrical heart activation in a patient given a set of parameters which should be personalized to the patient. In this paper, we use electroanatomical maps to personalize the endocardial activation of the right ventricle, and the different tissue conductivities in a pig model with left bundle branch block, to reproduce personalized biventricular activations. Following, we tested the personalized heart model by virtually simulating cardiac resynchronization therapy.
机译:在心脏再同步治疗下优化患者的导线放置和心室延迟设置是一项复杂的任务,可能会受益于基于模型的先前信息。在给定应针对患者个性化的一组参数的情况下,可以使用生物物理模型来预测患者体内电心激活的顺序。在本文中,我们使用电解剖图来个性化右心室的心内膜激活以及具有左束支传导阻滞的猪模型中不同的组织电导率,以重现个性化的双心室激活。接下来,我们通过虚拟模拟心脏再同步疗法测试了个性化心脏模型。

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