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局部复极异质性模型中心室颤动触发因素的起源

Origin of ventricular fibrillation triggers in a model of localized repolarization heterogeneity.

作者信息

Renard Estelle, Haïssaguerre Michel, Bear Laura R, Bernus Olivier

机构信息

Univ. Bordeaux, INSERM, CRCTB, U 1045, IHU Liryc, Bordeaux, France.

Univ. Bordeaux, INSERM, CRCTB, U 1045, IHU Liryc, Bordeaux, France; CHU de Bordeaux, Service de Cardiologie-électrophysiologie et stimulation cardiaque Hôpital Haut Lévêque, INSERM, U 1045, Bordeaux, France.

出版信息

Heart Rhythm. 2025 May;22(5):1345-1354. doi: 10.1016/j.hrthm.2024.10.027. Epub 2024 Oct 21.

Abstract

BACKGROUND

Heterogeneities in ventricular repolarization contribute significantly to the genesis of ventricular fibrillation (VF). Although clinical arrhythmias are spontaneously triggered by premature ventricular complexes, these triggers are difficult to document and little is known about their site of origin.

OBJECTIVES

The purpose of this study was to characterize spontaneous VF initiation in an experimental model of repolarization heterogeneity and to identify the origin of triggers in relation to the spatial dispersion of repolarization.

METHODS

Spatially limited repolarization heterogeneity was created in isolated perfused porcine right ventricles (N = 16) by local administration of pinacidil (20 μM) in a terminal branch of the right coronary artery. High-resolution optical mapping and pseudo-electrocardiography were performed under control conditions and after pinacidil perfusion.

RESULTS

No arrhythmia occurred at baseline, but 74 VF episodes were observed in 13 hearts (82%) after pinacidil perfusion and were most often initiated by a ventricular trigger with a short coupling interval (297 ± 66 ms). Sixteen VF initiations were optically mapped in 4 hearts. Mapping showed triggers originating in all cases from the border zone between altered and normal repolarization areas where local action potential duration and repolarization time gradients were steep (15.9 and 15.8 ms/mm vs 1.5 and 3.0 ms/mm at nontrigger sites). Optical action potential traces were compatible with a phase 2 reexcitation mechanism. The subsequent VF cycles were driven by activities located in the same region.

CONCLUSION

This model of localized repolarization heterogeneity is able to produce spontaneous VF initiation. Our study demonstrates that VF triggers originate consistently from the border zone of repolarization dispersion.

摘要

背景

心室复极的异质性在心室颤动(VF)的发生中起重要作用。尽管临床心律失常由室性早搏自发触发,但这些触发因素难以记录,且对其起源部位知之甚少。

目的

本研究旨在描述复极异质性实验模型中自发VF起始的特征,并确定与复极空间离散相关的触发因素起源。

方法

通过在右冠状动脉终末分支局部给予吡那地尔(20 μM),在离体灌注的猪右心室(N = 16)中产生空间受限的复极异质性。在对照条件下和吡那地尔灌注后进行高分辨率光学标测和伪心电图检查。

结果

基线时未发生心律失常,但吡那地尔灌注后13颗心脏(82%)观察到74次VF发作,最常见的是由短联律间期(297±66 ms)的室性触发因素起始。在4颗心脏中对16次VF起始进行了光学标测。标测显示,所有病例的触发因素均起源于复极改变区与正常区之间的边界区域,该区域局部动作电位持续时间和复极时间梯度陡峭(分别为15.9和15.8 ms/mm,而非触发部位为1.5和3.0 ms/mm)。光学动作电位轨迹与2相再激动机制相符。随后的VF周期由同一区域的活动驱动。

结论

这种局部复极异质性模型能够产生自发VF起始。我们的研究表明,VF触发因素始终起源于复极离散的边界区域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2078/12048301/a34009884701/ga1.jpg

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