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The Role of Blood Vessels in Rabbit Propagation Dynamics and Cardiac Arrhythmias

机译:血管在兔繁殖动力学和心律失常中的作用

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Recent experimental findings have suggested the important role played by blood vessels within the heart in stabilising arrhythmias. However, this link has yet to be explored computationally. In this paper, we develop a computational framework to model fibre orientation around structural inhomogeneities in myocardial tissue based on information obtained from high-resolution histological and MRI images. This framework allows the simulation of cardiac wavefront propagation for a generalised vessel orientation and position within the ventricular wall and transmural fibre architecture around it. We simulate propagation following different stimulation protocols around a transmural and a sub-epicardial vessel, using both bidomain and monodomain representations. We demonstrate the importance of accurately modelling the fibre structure around blood vessels relative to a simplistic transmurally varying fibre orientation model and suggest how this may impact pro-arrhythmic electrical dynamics.
机译:最近的实验发现表明,心脏内血管在稳定心律不齐中起着重要作用。但是,此链接尚未进行计算研究。在本文中,我们基于从高分辨率组织学和MRI图像获得的信息,开发了一种计算框架,用于围绕心肌组织中结构不均匀性对纤维取向进行建模。该框架允许针对心室壁内的广义血管方向和位置以及周围的透壁纤维结构,模拟心脏波前传播。我们使用双域和单域表示法,模拟了不同刺激方案围绕壁间和心外膜下血管的传播。我们证明了相对于简单的经跨壁变化的纤维取向模型准确建模血管周围纤维结构的重要性,并提出了这可能如何影响心律失常的电动力学。

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