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颤动波动力学中复杂碎裂电图、波破碎、相位奇点和局部主导频率之间的关系:一项建模比较研究。

The relationship among complex fractionated electrograms, wavebreak, phase singularity, and local dominant frequency in fibrillation wave-dynamics: a modeling comparison study.

作者信息

Yun Yonghyeon, Hwang Minki, Park Jae Hyung, Shin Hangsik, Shim Eun Bo, Pak Hui-Nam

机构信息

Department of Convergence Biomedical Engineering, Daelim University College, Anyang, Korea.

Division of Cardiology, Yonsei University Health System, Seoul, Korea.

出版信息

J Korean Med Sci. 2014 Mar;29(3):370-7. doi: 10.3346/jkms.2014.29.3.370. Epub 2014 Feb 27.

Abstract

Although complex fractionated electrogram (CFE) is known to be a target for catheter ablation of fibrillation, its physiological meaning in fibrillation wave-dynamics remains to be clarified. We evaluated the spatiotemporal relationships among the parameters of fibrillation wave-dynamics by simulation modeling. We generated maps of CFE-cycle length (CFE-CL), local dominant frequency (LDF), wave break (WB), and phase singularity (PS) of fibrillation in 2-dimensional homogeneous bidomain cardiac modeling (1,000 × 1,000 cells ten Tusscher model). We compared spatiotemporal correlations by dichotomizing each maps into 10 × 10 lattice zones. In spatial distribution, WB and PS showed excellent correlation (R = 0.963, P < 0.001). CFE-CL had weak correlations with WB (R = 0.288, P < 0.001), PS (R = 0.313, P < 0.001), and LDF (R = -0.411, P < 0.001). However, LDF did not show correlation with PS or WB. PSs were mostly distributed at the periphery of low CFE-CL area. Virtual ablation (5% of critical mass) of CFE-CL < 100 ms terminated fibrillation at 14.3 sec, and high LDF ablation (5% of critical mass) changed fibrillation to organized tachycardia, respectively. In homogeneous 2D fibrillation modeling, CFE-CL was weakly correlated with WB, PS, and LDF, spatiotemporally. PSs are mostly positioned at the periphery of low CFE-CL areas, and virtual ablation targeting low CFE-CL regions terminated fibrillation successfully.

摘要

尽管已知复杂碎裂电图(CFE)是房颤导管消融的靶点,但其在房颤波动力学中的生理意义仍有待阐明。我们通过模拟建模评估了房颤波动力学参数之间的时空关系。我们在二维均匀双域心脏模型(1000×1000个细胞,Ten Tusscher模型)中生成了房颤的CFE周期长度(CFE-CL)、局部主导频率(LDF)、波破碎(WB)和相位奇点(PS)图。我们将每个图划分为10×10的晶格区域,比较时空相关性。在空间分布上,WB和PS显示出极好的相关性(R = 0.963,P < 0.001)。CFE-CL与WB(R = 0.288,P < 0.001)、PS(R = 0.313,P < 0.001)和LDF(R = -0.411,P < 0.001)的相关性较弱。然而,LDF与PS或WB均无相关性。PS大多分布在低CFE-CL区域的周边。CFE-CL < 100 ms的虚拟消融(临界质量的5%)在第14.3秒终止房颤,高LDF消融(临界质量的5%)分别将房颤转变为有组织的心动过速。在均匀二维房颤建模中,CFE-CL在时空上与WB、PS和LDF的相关性较弱。PS大多位于低CFE-CL区域的周边,针对低CFE-CL区域的虚拟消融成功终止了房颤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79f9/3945132/acbe30ae0a88/jkms-29-370-g001.jpg

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