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Studies of localization of the ventricular preexcitation accessory pathway using heart model parameter optimization

机译:使用心脏模型参数优化的心室预征途径定位研究

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The authors propose an approach to solve the electrocardiography (ECG) inverse problem in terms of heart model parameters. In this new method, a priori knowledge is used to limit the searching space of heart model parameters and the matching criteria are of vital importance. Here, the authors discuss the relations between the sites of ventricular preexcitation accessory pathways (AP) and the body surface potential maps (BSPMs) in detail based on the heart model. The results show that 3 features are of importance, i.e., (1) the minimum sites in BSPMs, (2) the correlation coefficients between BSPMs of the different AP sites, and (3) the areas (or lead number) of the negative and low-level positive potentials in BSPMs, are sensitive to the AP sites and relatively insensitive to different patients. Experimental results show that the resolutions of these characteristic parameters of BSPMs to recognize the AP site are 5-7 myocardial elements (MEs), 3-4 MEs and 1-3 MEs of the heart model, respectively. Using these characteristic parameters, 3 objective functions and the mathematical model of the optimization system were developed. The optimization algorithm is also described briefly. The experimental results indicate that this new approach to the ECG inverse problem is both feasible and efficient, and the localization accuracy can be obtained to be less than 3 myocardial elements (4.5 mm) of the heart model.
机译:作者提出了一种在心脏模型参数方面解决心电图(ECG)反问题的方法。在这种新方法中,先验知识用于限制心脏模型参数的搜索空间,匹配标准是至关重要的。这里,作者讨论了心室预征途径途径(AP)和体表潜在地图(BSPMS)的部位之间的关系,基于心脏模型。结果表明,3个特征是重要的,即(1)BSPMS中的最小站点,(2)不同AP站点的BSPM之间的相关系数,(3)负数的区域(或铅数) BSPMS中的低水平阳性电位对AP位点敏感,对不同患者相对不敏感。实验结果表明,BSPMS识别AP位点的这些特征参数的分辨率分别是5-7个心肌元素(MES),3-4米和1-3米的心脏模型。使用这些特征参数,开发了3个目标功能和优化系统的数学模型。还简要描述了优化算法。实验结果表明,这种新的ECG逆问题的方法是可行和有效的,并且可以获得本地化精度小于心脏模型的3个心肌元素(> 4.5mm)。

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