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基于电图的心房颤动标测中的不确定性克服:综述。

Overcoming Uncertainties in Electrogram-Based Atrial Fibrillation Mapping: A Review.

机构信息

School of Biomedical Engineering, The University of Sydney, Sydney, NSW, 2008, Australia.

Centre for Heart Rhythm Disorders, The University of Adelaide, Adelaide, SA, 5000, Australia.

出版信息

Cardiovasc Eng Technol. 2024 Feb;15(1):52-64. doi: 10.1007/s13239-023-00696-w. Epub 2023 Nov 14.

Abstract

In clinical rhythmology, intracardiac bipolar electrograms (EGMs) play a critical role in investigating the triggers and substrates inducing and perpetuating atrial fibrillation (AF). However, the interpretation of bipolar EGMs is ambiguous due to several aspects of electrodes, mapping algorithms and wave propagation dynamics, so it requires several variables to describe the effects of these uncertainties on EGM analysis. In this narrative review, we critically evaluate the potential impact of such uncertainties on the design of cardiac mapping tools on AF-related substrate characterization. Literature suggest uncertainties are due to several variables, including the wave propagation vector, the wave's incidence angle, inter-electrode spacing, electrode size and shape, and tissue contact. The preprocessing of the EGM signals and mapping density will impact the electro-anatomical representation and the features extracted from the local electrical activities. The superposition of multiple waves further complicates EGM interpretation. The inclusion of these uncertainties is a nontrivial problem but their consideration will yield a better interpretation of the intra-atrial dynamics in local activation patterns. From a translational perspective, this review provides a concise but complete overview of the critical variables for developing more precise cardiac mapping tools.

摘要

在临床节律学中,心内双极电图(EGM)在研究引发和维持心房颤动(AF)的触发因素和底物方面起着关键作用。然而,由于电极、映射算法和波传播动力学的几个方面,双极 EGM 的解释是模糊的,因此需要几个变量来描述这些不确定性对 EGM 分析的影响。在这篇叙述性综述中,我们批判性地评估了这些不确定性对基于 AF 相关底物特征描述的心脏映射工具设计的潜在影响。文献表明,不确定性源于几个变量,包括波传播向量、波的入射角、电极间距离、电极的大小和形状以及组织接触。EGM 信号的预处理和映射密度将影响电解剖学表示以及从局部电活动中提取的特征。多个波的叠加进一步使 EGM 解释复杂化。包含这些不确定性是一个复杂的问题,但考虑它们将更好地解释局部激活模式中的心房动力学。从转化的角度来看,这篇综述提供了一个简洁但完整的概述,介绍了开发更精确的心脏映射工具的关键变量。

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