Universitat Politecnica de Valencia, Valencia, Spain.
Circ Arrhythm Electrophysiol. 2013 Apr;6(2):294-301. doi: 10.1161/CIRCEP.112.000167. Epub 2013 Feb 26.
Ablation of high-frequency sources in patients with atrial fibrillation (AF) is an effective therapy to restore sinus rhythm. However, this strategy may be ineffective in patients without a significant dominant frequency (DF) gradient. The aim of this study was to investigate whether sites with high-frequency activity in human AF can be identified noninvasively, which should help intervention planning and therapy.
In 14 patients with a history of AF, 67-lead body surface recordings were simultaneously registered with 15 endocardial electrograms from both atria including the highest DF site, which was predetermined by atrial-wide real-time frequency electroanatomical mapping. Power spectra of surface leads and the body surface location of the highest DF site were compared with intracardiac information. Highest DFs found on specific sites of the torso showed a significant correlation with DFs found in the nearest atrium (ρ=0.96 for right atrium and ρ=0.92 for left atrium) and the DF gradient between them (ρ=0.93). The spatial distribution of power on the surface showed an inverse relationship between the frequencies versus the power spread area, consistent with localized fast sources as the AF mechanism with fibrillatory conduction elsewhere.
Spectral analysis of body surface recordings during AF allows a noninvasive characterization of the global distribution of the atrial DFs and the identification of the atrium with the highest frequency, opening the possibility for improved noninvasive personalized diagnosis and treatment.
在心房颤动(AF)患者中消融高频源是恢复窦性节律的有效治疗方法。然而,对于没有显著主导频率(DF)梯度的患者,这种策略可能无效。本研究旨在探讨是否可以无创地识别 AF 中高频活动的部位,这有助于干预计划和治疗。
在 14 例有 AF 病史的患者中,同时记录了 67 导体表记录和来自两个心房的 15 个心内膜电图,包括通过心房实时频率电解剖映射预先确定的最高 DF 部位。体表导联的功率谱与心内信息进行了比较。躯干特定部位发现的最高 DF 与最近心房(右心房为 ρ=0.96,左心房为 ρ=0.92)和它们之间的 DF 梯度(ρ=0.93)中发现的 DF 具有显著相关性。体表上的功率分布表明,频率与功率扩展面积之间呈反比关系,这与作为 AF 机制的局部快速源与其他部位的纤维性传导一致。
AF 期间体表记录的频谱分析允许对心房 DF 的全球分布进行无创特征描述,并识别具有最高频率的心房,从而为改进的非侵入性个性化诊断和治疗提供了可能性。