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Cardiovascular Magnetic Resonance-Based Three-Dimensional Structural Modeling and Heterogeneous Tissue Channel Detection in Ventricular Arrhythmia

机译:心室心律失常的基于心血管磁共振的三维结构建模和异质组织通道检测

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摘要

Geometrical structure of the myocardium plays an important role in understanding the generation of arrhythmias. In particular, a heterogeneous tissue (HT) channel defined in cardiovascular magnetic resonance (CMR) has been suggested to correlate with conduction channels defined in electroanatomic mapping in ventricular tachycardia (VT). Despite the potential of CMR for characterization of the arrhythmogenic substrate, there is currently no standard approach to identify potential conduction channels. Therefore, we sought to develop a workflow to identify HT channel based on the structural 3D modeling of the viable myocardium within areas of dense scar. We focus on macro-level HT channel detection in this work. The proposed technique was tested in high-resolution ex-vivo CMR images in 20 post-infarct swine models who underwent an electrophysiology study for VT inducibility. HT channel was detected in 15 animals with inducible VT, whereas it was only detected in 1 out of 5 animal with non-inducible VT (P < 0.01, Fisher’s exact test). The HT channel detected in the non-inducible animal was shorter than those detected in animals with inducible VTs (inducible-VT animals: 35 ± 14 mm vs. non-inducible VT animal: 9.94 mm). Electrophysiology study and histopathological analyses validated the detected HT channels. The proposed technique may provide new insights for understanding the macro-level VT mechanism.
机译:心肌的几何结构在理解心律不齐的产生中起重要作用。特别是,已提出在心血管磁共振(CMR)中定义的异质组织(HT)通道与在心动过速(VT)中的电解剖标测中定义的传导通道相关。尽管CMR具有表征心律失常性底物的潜力,但目前尚无识别潜在传导通道的标准方法。因此,我们寻求开发一种工作流程,以基于密集疤痕区域内存活心肌的结构3D建模来识别HT通道。在这项工作中,我们专注于宏级别的HT通道检测。在20例进行了电生理研究以诱发VT的梗死后猪模型中,在高分辨率的离体CMR图像中对提出的技术进行了测试。在15例具有诱发性VT的动物中检测到HT通道,而仅在5例非诱发性VT中的动物中检测到HT通道(P <0.01,Fisher精确检验)。在非诱导性动物中检测到的HT通道比在具有诱导性VT的动物中检测到的HT通道更短(诱导性VT动物:35±±14μm毫米,而非诱导性VT动物:9.94μmm)。电生理研究和组织病理学分析验证了检测到的HT通道。所提出的技术可以为理解宏观水平的VT机制提供新的见解。

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