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Efficient Computational Modeling of Human Ventricular Activation and Its Electrocardiographic Representation: A Sensitivity Study

机译:人类心室激活及其心电图表示的有效计算模型:敏感性研究。

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摘要

Patient-specific models of the ventricular myocardium, combined with the computational power to run rapid simulations, are approaching the level where they could be used for personalized cardiovascular medicine. A major remaining challenge is determining model parameters from available patient data, especially for models of the Purkinje-myocardial junctions (PMJs): the sites of initial ventricular electrical activation. There are no non-invasive methods for localizing PMJs in patients, and the relationship between the standard clinical ECG and PMJ model parameters is underexplored. Thus, this study aimed to determine the sensitivity of the QRS complex of the ECG to the anatomical location and regional number of PMJs. The QRS complex was simulated using an image-based human torso and biventricular model, and cardiac electrophysiology was simulated using Cardioid. The PMJs were modeled as discrete current injection stimuli, and the location and number of stimuli were varied within initial activation regions based on published experiments. Results indicate that the QRS complex features were most sensitive to the presence or absence of four “seed” stimuli, and adjusting locations of nearby “regional” stimuli provided finer tuning. Decreasing number of regional stimuli by an order of magnitude resulted in virtually no change in the QRS complex. Thus, a minimal 12-stimuli configuration was identified that resulted in physiological excitation, defined by QRS complex feature metrics and ventricular excitation pattern. Overall, the sensitivity results suggest that parameterizing PMJ location, rather than number, be given significantly higher priority in future studies creating personalized ventricular models from patient-derived ECGs.
机译:特定于患者的心室心肌模型,结合进行快速模拟的计算能力,已接近可以用于个性化心血管医学的水平。剩下的主要挑战是从可用的患者数据中确定模型参数,尤其是对于Purkinje-心肌连接(PMJ)模型:初始心室电激活部位。目前尚无用于定位患者PMJ的非侵入性方法,标准临床ECG与PMJ模型参数之间的关系尚待探讨。因此,本研究旨在确定ECG的QRS复合体对PMJ的解剖位置和区域数量的敏感性。使用基于图像的人体躯干和双心室模型模拟QRS复合体,并使用心形肌模拟心脏电生理。将PMJs建模为离散电流注入刺激,并根据已发布的实验在初始激活区域内改变刺激的位置和数量。结果表明,QRS复杂特征对四个“种子”刺激的存在或不存在最敏感,并且调整附近“区域”刺激的位置可提供更好的微调。区域刺激的数量减少一个数量级,实际上导致QRS复合体没有变化。因此,确定了最小的12刺激配置,该配置导致了生理兴奋,由QRS复杂特征量度和心室兴奋模式定义。总体而言,敏感性结果表明,在未来的研究中,根据患者心电图创建个性化的心室模型,对参数化PMJ位置(而不是参数)给予更高的优先权。

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