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Optimisation of Ionic Models to Fit Tissue Action Potentials: Application to 3D Atrial Modelling

机译:离子模型的优化以适应组织动作电位:在3D心房模型中的应用

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摘要

A 3D model of atrial electrical activity has been developed with spatially heterogeneous electrophysiological properties. The atrial geometry, reconstructed from the male Visible Human dataset, included gross anatomical features such as the central and peripheral sinoatrial node (SAN), intra-atrial connections, pulmonary veins, inferior and superior vena cava, and the coronary sinus. Membrane potentials of myocytes from spontaneously active or electrically paced in vitro rabbit cardiac tissue preparations were recorded using intracellular glass microelectrodes. Action potentials of central and peripheral SAN, right and left atrial, and pulmonary vein myocytes were each fitted using a generic ionic model having three phenomenological ionic current components: one time-dependent inward, one time-dependent outward, and one leakage current. To bridge the gap between the single-cell ionic models and the gross electrical behaviour of the 3D whole-atrial model, a simplified 2D tissue disc with heterogeneous regions was optimised to arrive at parameters for each cell type under electrotonic load. Parameters were then incorporated into the 3D atrial model, which as a result exhibited a spontaneously active SAN able to rhythmically excite the atria. The tissue-based optimisation of ionic models and the modelling process outlined are generic and applicable to image-based computer reconstruction and simulation of excitable tissue.
机译:已经开发了具有空间异质电生理特性的心房电活动3D模型。从男性“可见人类”数据集重建的心房几何结构包括总体解剖特征,例如中央和周围窦房结(SAN),房内连接,肺静脉,下腔静脉和上腔静脉以及冠状窦。使用细胞内玻璃微电极记录了自发活跃或电起搏的体外兔心脏组织制剂的心肌细胞膜电位。使用具有三个现象学离子电流分量的通用离子模型分别拟合中央和外围SAN,左心房和左心房以及肺静脉肌细胞的动作电位:一个时间依赖性向内,一个时间依赖性向外和一个泄漏电流。为了弥合单细胞离子模型与3D全心房模型的总体电学行为之间的差距,优化了具有异质区域的简化2D组织圆盘,以得出在电声负荷下每种细胞类型的参数。然后将参数合并到3D心房模型中,结果显示了能够有节奏地激发心房的自发活动SAN。离子模型的基于组织的优化和概述的建模过程是通用的,适用于基于图像的计算机重构和可兴奋组织的仿真。

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