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A simulation study on a catheter navigation method for guiding the ablative therapy of cardiac arrhythmias

机译:一种导管导航方法引导心律失常治疗的仿真研究

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We investigated the ability of a computer algorithm to guide the ablative therapy of cardiac arrhythmias. Specifically, in computer simulations we examined the accuracy of this algorithm to guide the tip of the ablation catheter to the site of the origin of the arrhythmias. We model both the ECG corresponding site of the origin of the arrhythmia and current pulses generated from a pair of electrodes at the tip of the ablation catheter with a single equivalent moving dipole (SEMD). In the forward problem we employed a realistic anatomic geometry torso model. In the inverse problem we used the SEMD model in an infinite homogeneous volume conductor. The results of this investigation suggest that the bounded, heterogeneous volume conductor introduces systematic error in the estimated compared to the true dipole position. However, we found that the systematic error had minor influence in the ability of the algorithm to accurately guide the tip of the ablation catheter to the site of the origin of the arrhythmia.
机译:我们调查了计算机算法引导心律失常的消融治疗的能力。具体地,在计算机仿真中,我们检查了该算法的准确性,以将消融导管的尖端引导到心律失常的起源的部位。我们模拟了心律失常起源的ECG对应部位和由消融导管尖端的一对电极产生的具有单个等效移动偶极子(SEMD)的电极产生的电流脉冲。在前进问题中,我们雇用了一个现实的解剖几何躯干模型。在逆问题中,我们在无限均匀的体积导体中使用了SEMD模型。本研究结果表明,与真正的偶极位置相比,界限的异构体积导体在估计中引入了系统误差。然而,我们发现系统误差对算法精确地引导消融导管的尖端到心律失常的部位的能力进行了微小的影响。

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