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Atrial Fibrosis and Atrial Fibrillation: A Computer Simulation in the Posterior Left Atrium

机译:心房纤维化和房颤:左后房的计算机模拟

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Computer models, especially those integrated with high resolution 3D surface geometry and myofibre structure throughout the whole atria, are powerful instruments to investigate the mechanism of atrial fibrillation. There are many factors that may contribute to electrical instability of the posterior left atrium (PLA): 1) abrupt changes in wall thickness and myofiber orientations of PLA, 2) different action potential duration in pulmonary vein sleeves and adjacent left atrium (LA) and 3) fibrosis patch. The first two factors have been investigated in our previous work. Here, we further develop an image-based atrial model by incorporating computer-generated fibrosis into the LA to reflect the structure remodeling, motivated by the fibrosis imaging data from Utah. A novel compact finite difference method was implemented to solve the governing cardiac equations. A bursting simulation protocol was applied in the PLA with different levels of structure remodeling and control. Marked conduction delays and uni-directional block were seen with both anisotropy and structure remodeling. The existence of fibrosis increases regional electrophysiological discrepancies and chance of uni-directional block. We conclude that existence of fibrosis potentially increase the occurrences of conduction reentry and the number of wavelets, contributing further to electrical instability in PLA.
机译:计算机模型,尤其是那些在整个心房中都集成了高分辨率3D表面几何形状和肌纤维结构的计算机模型,是研究心房颤动机制的有力工具。有许多因素可能导致左后心房(PLA)的电不稳定:1)PLA的壁厚和肌纤维方向的突然变化; 2)肺静脉套和邻近的左心房(LA)的动作电位持续时间不同;以及3)纤维化斑块。在我们以前的工作中已经对前两个因素进行了研究。在这里,我们通过将计算机生成的纤维化并入洛杉矶以反映来自犹他州的纤维化成像数据所激发的结构重塑,进一步开发了基于图像的心房模型。一种新颖的紧凑有限差分方法被实现来解决控制心脏方程。爆破仿真协议应用于PLA,具有不同级别的结构重塑和控制。各向异性和结构重塑都可以看到明显的传导延迟和单向阻滞。纤维化的存在增加了局部电生理差异和单向阻塞的机会。我们得出的结论是,纤维化的存在可能增加传导折返的发生和小波的数量,进一步导致PLA的电不稳定。

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