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首页> 外文期刊>Journal of cardiovascular electrophysiology >Ultra-rapid high-density mapping system with the phase singularity technique is feasible in identifying rotors and focal sources and predicting AF termination
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Ultra-rapid high-density mapping system with the phase singularity technique is feasible in identifying rotors and focal sources and predicting AF termination

机译:具有相奇异性技术的超快速高密度映射系统可在识别转子和焦点并预测AF终端方面是可行的

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摘要

Introduction Phase singularity (PS) mapping provides additional insight into the AF mechanism and is accurate in identifying rotors. The study aimed to evaluate the feasibility of PS mapping in identifying AF rotors using data obtained from an automatic ultra-rapid high-resolution mapping system with a high-density mini-basket catheter. Methods Twenty-three pigs underwent rapid right atrial (RA) pacing (RAP 480 bpm) for 5 weeks before the experiment. During AF, RA endocardial automatic continuous mappings with a mini-basket catheter were generated using an automatic ultra-rapid mapping system. Both fractionation mapping and waveform similarity measurements using a PS mapping algorithm were applied on the same recording signals to localize substrates maintaining AF. Results Seventeen (74%) pigs developed sustained AF after RAP. Three were excluded because of periprocedural ventricular arrhythmia and corrupted digital data. RA fractionation maps were acquired with 6.17 +/- 4.29 minutes mean acquisition time, 13768 +/- 12698 acquisition points mapped during AF from 581 +/- 387 beats. Fractionation mapping identified extensively distributed (66.7%) RA complex fractionated atrial electrogram (CFAE), whereas the nonlinear analysis identified high similarity index (SI > 0.7) parts in limited areas (23.7%). There was an average of 1.67 +/- 0.87 SI sites with 0.43 +/- 0.76 rotor/focal source/chamber. AF termination occurred in 11/16 (68.75%) AF events in 14 pigs during ablation targeting max CFAE. There was a higher incidence of rotor/focal source at AF termination sites compared with non-AF termination sites (54.5% vs 0%, P = 0.011). Conclusions The data obtained from ultra-rapid high-density automatic mapping is feasible and effective in identifying AF rotors/focal sources using PS technique, and those critical substrates were closely related to AF procedural termination.
机译:引言相奇点(PS)映射提供了进入AF机制的额外洞察力,并且在识别转子方面准确。该研究旨在评估PS映射在使用从自动超快速高分辨率映射系统获得的数据用高密度迷你篮子导管获得的数据的可行性。方法在实验前5周接受了二十三只猪进行快速右心房(RA)起搏(RAP 480 BPM)。在AF期间,使用自动超快速映射系统产生具有迷你篮子导管的RA心内膜内膜自动连续映射。使用PS映射算法的分馏映射和波形相似度测量施加在相同的记录信号上,以定位维持AF的基板。结果17(74%)猪在说唱后发育持续的AF。由于百血性室性心律失常和腐败的数字数据被排除了三种。 RA分馏地图以6.17 +/- 4.29分钟收购平均获取时间,13768 +/- 12698收购点,从581 +/- 387节拍中映射。分馏映射鉴定出广泛分布的(66.7%)Ra复合分馏心脏电视图(CFAE),而非线性分析在有限区域(23.7%)中鉴定了高相似性指数(Si> 0.7)份。平均有1.67 +/- 0.87 Si网站,带0.43 +/- 0.76转子/焦源/腔室。 AF终止于11/16(68.75%)在靶向最大CFAE的14只猪中发生了14只猪事件。与非AF终止位点相比,AF终止位点的转子/焦源的转子/焦源发生率较高(54.5%Vs 0%,P = 0.011)。结论从超快速高密度自动映射获得的数据是可行的,可有效地使用PS技术识别AF转子/焦点,并且这些关键基材与AF程序终端密切相关。

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