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A saline tank study of a catheter guiding method for ablative therapy of cardiac arrhythmias by application of an inverse solution to body surface electrocardiographic signals

机译:盐罐研究通过对身体表面心电图信号应用逆溶液消融治疗心律失常的导管引导方法

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This study investigates in a saline tank study the effectiveness of an inverse algorithm designed to guide the ablative therapy of cardiac arrhythmias. In this process both the site of origin of the arrhythmia and current pulses delivered from the tip of a catheter are modeled with a single equivalent moving dipole (SEMD) model in an infinite homogeneous volume conductor. However, because of lack of accurate torso geometry, the algorithm introduces systematic error in the estimated compared to the true dipole position. Computer simulations and experiments using a homogeneous saline tank have shown that this systematic error has minor effect in guiding the tip of the catheter to the site of the origin of the arrhythmia. In this study, to further investigate the accuracy of this method, we conducted experiments using a heterogeneous volume-conductor tank model. Our results demonstrate that the final distance between the catheter tip and the target site is about 3 mm and thus the lack of accurate torso geometry in the inverse problem appears to have minor effect in guiding the catheter.
机译:本研究在盐水罐中研究了一种旨在指导心律不齐的消融治疗的逆算法的有效性。在此过程中,心律不齐的起源部位和从导管尖端输送的电流脉冲均在无限均匀的体积导体中使用单个等效移动偶极子(SEMD)模型进行建模。但是,由于缺乏精确的躯干几何形状,与真实的偶极子位置相比,该算法在估计中引入了系统误差。使用均质盐水箱的计算机模拟和实验表明,这种系统性误差在将导管尖端引导至心律不齐起源位置时影响较小。在这项研究中,为了进一步研究此方法的准确性,我们使用了非均质的体积导体储罐模型进行了实验。我们的结果表明,导管尖端与目标部位之间的最终距离约为3 mm,因此,在反问题中缺乏精确的躯干几何形状似乎对引导导管的影响很小。

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