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首页> 外文期刊>Journal of cardiovascular electrophysiology >Spatiotemporal correlation between phase singularities and wavebreaks during ventricular fibrillation.
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Spatiotemporal correlation between phase singularities and wavebreaks during ventricular fibrillation.

机译:心室纤颤期间相位奇异性与波浪之间的时空相关性。

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Phase Singularity and Wavebreak. INTRODUCTION: Phase maps and the detection of phase singularities (PSs) have become a well-developed method for characterizing the organization of ventricular fibrillation (VF). How precisely PS colocalizes with wavebreak (WB) during VF, however, is unknown. METHODS AND RESULTS: We performed optical mapping of 27 episodes of VF in nine Langendorff-perfused rabbit hearts. A WB is a point where the activation wavefront and the repolarization waveback meet. A PS is a site where its phase is ambiguous and its neighboring pixels exhibit a continuous phase progression from -pi to +pi. The correlation coefficient between the number of WBs and PSs was 0.78 +/- 0.09 for each heart and 0.81 for all VF episodes (P < 0.001), indicating a significant temporal correlation. We then superimposed the WBs and PSs for every 100 frames of each episode. These maps showed a high degree of spatial colocalization. To quantify spatial colocalization, the spatial shifts between the cumulative maps of WBs and PSs in corresponding frames were calculated by automatic alignment to obtain maximum overlap between these two maps. The spatial shifts were 0.04 +/- 0.31 mm on the x-axis and 0.06 +/- 0.27 mm on the y-axis over a 20 x 20 mm2 mapped field, indicating highly significant spatial correlation. CONCLUSION: Phase mapping provides a convenient and robust approach to quantitatively describe wave propagation and organization during VF. The close spatiotemporal correlation between PSs and WBs establishes that PSs are a valid alternate representation of WB during VF and further validated the use of phase mapping in the study of VF dynamics.
机译:相位奇点和破波。简介:相图和相奇异性(PSs)的检测已成为表征心室颤动(VF)组织的一种成熟方法。但是,在VF期间PS与波突破(WB)的共定位精确度如何尚不得而知。方法和结果:我们在9个Langendorff灌注的兔心脏中对27个发作的VF进行了光学成像。 WB是激活波前和复极化波相交的点。 PS是一个相位不明确的站点,其相邻像素的相位从-pi到+ pi连续变化。 WBs和PSs数目之间的相关系数对于每个心脏为0.78 +/- 0.09,对于所有VF发作为0.81(P <0.001),表明存在明显的时间相关性。然后,我们每集每100帧叠加WB和PS。这些地图显示出高度的空间共定位。为了量化空间共定位,通过自动对齐计算相应帧中WB和PS的累积图之间的空间偏移,以获得这两个图之间的最大重叠。在20 x 20 mm2的映射字段上,x轴的空间偏移为0.04 +/- 0.31 mm,y轴的空间偏移为0.06 +/- 0.27 mm,表明空间相关性非常高。结论:相图为定量描述VF期间的波传播和组织提供了一种方便而强大的方法。 PS和WB之间的紧密时空相关性确定PS是VF期间WB的有效替代表示,并进一步验证了相位映射在VF动力学研究中的使用。

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