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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Localization of the site of origin of cardiac activation by means of a heart-model-based electrocardiographic imaging approach
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Localization of the site of origin of cardiac activation by means of a heart-model-based electrocardiographic imaging approach

机译:通过基于心脏模型的心电图成像方法对心脏激活起源部位进行定位

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The authors have developed a new approach to solve the inverse problem of electrocardiography in terms of heart model parameters. The inverse solution of the electrocardiogram (ECG) inverse problem is defined, in the present study, as the parameters of the heart model, which are closely related to the physiological and pathophysiological status of the heart, and is estimated by using an optimization system of heart model parameters, instead of solving the matrix equation relating the body surface ECGs and equivalent cardiac sources. An artificial neural network based preliminary diagnosis system has been developed to limit the searching space of the optimization algorithm and to initialize the model parameters in the computer heart model. The optimal heart model parameters were obtained by minimizing the objective functions, as functions of the observed and model-generated body surface ECGs. The authors have tested the feasibility of the newly developed technique in localizing the site of origin of cardiac activation using a pace mapping protocol. The present computer simulation results show that, the present approach for localization of the site of origin of ventricular activation achieved an averaged localization error of about 3 mm [for 5-/spl mu/V Gaussian white noise (GWN)] and 4 mm (for 10-/spl mu/V GWN), with standard deviation of the localization errors of being about 1.5 mm. The present simulation study suggests that this newly developed approach provides a robust inverse solution, circumventing the difficulties of the ECG inverse problem, and may become an important alternative to other ECG inverse solutions.
机译:作者已经开发出一种新的方法来解决心脏模型参数方面的心电图逆问题。心电图(ECG)反问题的反解在本研究中被定义为与心脏的生理和病理生理状态密切相关的心脏模型参数,并通过使用优化系统估算心脏模型参数,而不是求解与体表心电图和等效心脏源有关的矩阵方程。已经开发了基于人工神经网络的初步诊断系统,以限制优化算法的搜索空间并初始化计算机心脏模型中的模型参数。最佳的心脏模型参数是通过最小化目标函数(作为观察到的和模型生成的体表心电图的函数)获得的。作者已经测试了新开发的技术的可行性,该技术可以使用步调图协议来定位心脏激活的起源部位。当前的计算机模拟结果表明,当前的心室激活起源部位的定位方法实现了约3 mm的平均定位误差[对于5- / spl mu / V高斯白噪声(GWN)]和4 mm(对于10- / splμu/ V GWN),定位误差的标准偏差约为1.5 mm。本模拟研究表明,这种新开发的方法提供了一种鲁棒的逆解,可以避免ECG逆问题的困难,并且可能成为其他ECG逆解的重要替代方案。

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