Song Jun-Seop, Lee Young-Seon, Hwang Minki, Lee Jung-Kee, Li Changyong, Joung Boyoung, Lee Moon-Hyoung, Shim Eun Bo, Pak Hui-Nam
Division of Cardiology, Yonsei University Health System, Seoul 03722, Korea.
Department of Mechanical and Biomedical Engineering, Kangwon National University, Chuncheon 24341, Korea.
Korean J Physiol Pharmacol. 2016 Sep;20(5):507-14. doi: 10.4196/kjpp.2016.20.5.507. Epub 2016 Aug 26.
Although 3D-complex fractionated atrial electrogram (CFAE) mapping is useful in radiofrequency catheter ablation for persistent atrial fibrillation (AF), the directions and configuration of the bipolar electrodes may affect the electrogram. This study aimed to compare the spatial reproducibility of CFAE by changing the catheter orientations and electrode distance in an in-silico left atrium (LA). We conducted this study by importing the heart CT image of a patient with AF into a 3D-homogeneous human LA model. Electrogram morphology, CFAE-cycle lengths (CLs) were compared for 16 different orientations of a virtual bipolar conventional catheter (conv-cath: size 3.5 mm, inter-electrode distance 4.75 mm). Additionally, the spatial correlations of CFAE-CLs and the percentage of consistent sites with CFAE-CL<120 ms were analyzed. The results from the conv-cath were compared with that obtained using a mini catheter (mini-cath: size 1 mm, inter-electrode distance 2.5 mm). Depending on the catheter orientation, the electrogram morphology and CFAE-CLs varied (conv-cath: 11.5±0.7% variation, mini-cath: 7.1±1.2% variation), however the mini-cath produced less variation of CFAE-CL than conv-cath (p<0.001). There were moderate spatial correlations among CFAE-CL measured at 16 orientations (conv-cath: r=0.3055±0.2194 vs. mini-cath: 0.6074±0.0733, p<0.001). Additionally, the ratio of consistent CFAE sites was higher for mini catheter than conventional one (38.3±4.6% vs. 22.3±1.4%, p<0.05). Electrograms and CFAE distribution are affected by catheter orientation and electrode configuration in the in-silico LA model. However, there was moderate spatial consistency of CFAE areas, and narrowly spaced bipolar catheters were less influenced by catheter direction than conventional catheters.
尽管三维复杂碎裂心房电图(CFAE)标测在持续性心房颤动(AF)的射频导管消融中很有用,但双极电极的方向和配置可能会影响电图。本研究旨在通过在虚拟左心房(LA)中改变导管方向和电极距离来比较CFAE的空间可重复性。我们通过将一名AF患者的心脏CT图像导入三维均匀人体LA模型来进行这项研究。比较了虚拟双极传统导管(conv-cath:尺寸3.5mm,电极间距4.75mm)16种不同方向的电图形态、CFAE周期长度(CLs)。此外,分析了CFAE-CLs的空间相关性以及CFAE-CL<120ms时一致位点的百分比。将conv-cath的结果与使用微型导管(mini-cath:尺寸1mm,电极间距2.5mm)获得的结果进行比较。根据导管方向,电图形态和CFAE-CLs会有所变化(conv-cath:变化11.5±0.7%,mini-cath:变化7.1±1.2%),然而mini-cath产生的CFAE-CL变化比conv-cath小(p<0.001)。在16个方向测量的CFAE-CL之间存在中等程度的空间相关性(conv-cath:r=0.3055±0.2194 vs. mini-cath:0.6074±0.0733,p<0.001)。此外,微型导管的CFAE一致位点比例高于传统导管(38.3±4.6% vs. 22.3±1.4%,p<0.05)。在虚拟LA模型中,电图和CFAE分布受导管方向和电极配置的影响。然而,CFAE区域存在中等程度的空间一致性,并且窄间距双极导管比传统导管受导管方向的影响更小。