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Detailed Anatomical and Electrophysiological Models of Human Atria and Torso for the Simulation of Atrial Activation

机译:用于模拟心房活动的人体心房和躯干的详细解剖和电生理模型

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摘要

Atrial arrhythmias, and specifically atrial fibrillation (AF), induce rapid and irregular activation patterns that appear on the torso surface as abnormal P-waves in electrocardiograms and body surface potential maps (BSPM). In recent years both P-waves and the BSPM have been used to identify the mechanisms underlying AF, such as localizing ectopic foci or high-frequency rotors. However, the relationship between the activation of the different areas of the atria and the characteristics of the BSPM and P-wave signals are still far from being completely understood. In this work we developed a multi-scale framework, which combines a highly-detailed 3D atrial model and a torso model to study the relationship between atrial activation and surface signals in sinus rhythm. Using this multi scale model, it was revealed that the best places for recording P-waves are the frontal upper right and the frontal and rear left quadrants of the torso. Our results also suggest that only nine regions (of the twenty-one structures in which the atrial surface was divided) make a significant contribution to the BSPM and determine the main P-wave characteristics.
机译:房性心律不齐,特别是房颤(AF)会引起快速和不规则的激活模式,这些模式在心电图和体表电位图(BSPM)中作为异常P波出现在躯干表面。近年来,P波和BSPM都已被用于识别AF的潜在机制,例如定位异位灶或高频转子。但是,心房不同区域的激活与BSPM和P波信号的特性之间的关系仍然远远没有被完全理解。在这项工作中,我们开发了一个多尺度框架,该框架结合了高度详细的3D心房模型和躯干模型,以研究窦性心律中心房激活与表面信号之间的关系。使用这种多尺度模型,发现记录P波的最佳位置是躯干的正面右上角以及正面和左后象限。我们的结果还表明,只有九个区域(在二十一个结构中将心房表面分开)对BSPM做出了重大贡献,并确定了主要的P波特征。

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