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Multidimensional characterization of fibrillatory wave amplitude on surface ECG to describe catheter ablation impact on persistent atrial fibrillation

机译:表面心电图造型纤维化波振幅的多维特征描述导管消融对持续心房颤动的影响

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摘要

Radiofrequency catheter ablation (CA) is increasingly employed to treat persistent atrial fibrillation (AF). Nevertheless, its success is not always guaranteed, as selection of patients who could positively respond to this therapy does not rely on systematic criteria and still remains an open issue. Moreover, very little is known about the quantitative effects of this treatment over AF electrophysiology, so their quantitative evaluation is not a trivial task. In this contribution, ablation impact is quantified by a descriptor of fibrillatory wave (fwave) amplitude, so far regarded as a predictor of short-term CA outcome. By means of principal component analysis (PCA), surface electrocardiogram (ECG) spatial diversity is exploited and contributions from all leads are combined to describe average f-wave peak-to-peak amplitude, whose value is automatically computed by an algorithm based on cubic spline interpolation. Our work demonstrates how CA influences f-wave amplitude during the procedure as quantified by ECG inter-lead spatial variability. In addition, we show how such variations depend on procedural outcome and the duration of the postoperative blanking period.
机译:越射射导管消融(CA)越来越多地用于治疗持续的心房颤动(AF)。尽管如此,它的成功并不总是保证,因为能够积极回应这种治疗的患者的选择并不依赖于系统的标准,并且仍然是一个开放的问题。此外,关于这种治疗对AF电生理的定量效果非常少的,因此它们的定量评估不是琐碎的任务。在这一贡献中,通过纤维化波(FWVE)幅度的描述符来量化烧蚀影响,到目前为止被认为是短期CA结果的预测。通过主成分分析(PCA),利用表面心电图(ECG)空间分集,并将所有引线的贡献组合以描述平均F波峰值峰值幅度,其值由基于立方的算法自动计算其值样条插值。我们的作品展示了CA如何在通过ECG介导空间变异性量化的过程中影响F波振幅。此外,我们展示了这种变化如何依赖于程序结果以及术后消隐期的持续时间。

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