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高密度电极阵列中用于估计全域电描记图的电极构型的性能评估。

Performance assessment of electrode configurations for the estimation of omnipolar electrograms from high density arrays.

机构信息

ITACA Institute, Universitat Politècnica de València, Valencia, Spain.

ITACA Institute, Universitat Politècnica de València, Valencia, Spain; Department of Bioengineering, University of California, Berkeley, CA, USA; School of Medicine, Stanford University, Palo Alto, CA, USA.

出版信息

Comput Biol Med. 2023 Mar;154:106604. doi: 10.1016/j.compbiomed.2023.106604. Epub 2023 Jan 25.

Abstract

OBJECTIVE

The aim of this study is to propose a method to reduce the sensitivity of the estimated omnipolar electrogram (oEGM) with respect to the angle of the propagation wavefront.

METHODS

A novel configuration of cliques taking into account all four electrodes of a squared cell is proposed. To test this approach, simulations of HD grids of cardiac activations at different propagation angles, conduction velocities, interelectrode distance and electrogram waveforms are considered.

RESULTS

The proposed approach successfully provided narrower loops (essentially a straight line) of the electrical field described by the bipole pair with respect to the conventional approach. Estimation of the direction of propagation was improved. Additionally, estimated oEGMs presented larger amplitude, and estimations of the local activation times were more accurate.

CONCLUSIONS

A novel method to improve the estimation of oEGMs in HD grid of electrodes is proposed. This approach is superior to the existing methods and avoids pitfalls not yet resolved.

RELEVANCE

Robust tools for quantifying the cardiac substrate are crucial to determine with accuracy target ablation sites during an electrophysiological procedure.

摘要

目的

本研究旨在提出一种降低估计全域电图(oEGM)对传播波阵面角度敏感的方法。

方法

提出了一种新的考虑到方形细胞四个电极的团块配置。为了测试这种方法,考虑了不同传播角度、传导速度、电极间距离和电描记波的心脏激活的 HD 网格的模拟。

结果

与传统方法相比,所提出的方法成功地提供了由双极对描述的电场的更窄的环(基本上是一条直线)。传播方向的估计得到了改善。此外,估计的 oEGM 呈现出更大的幅度,并且局部激活时间的估计更加准确。

结论

提出了一种改进 HD 网格电极中 oEGM 估计的新方法。该方法优于现有方法,并避免了尚未解决的陷阱。

相关性

准确确定电生理程序期间消融靶点的精确心脏基质的稳健工具至关重要。

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