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On the Use of ST-Segment Shifts and Mathematical Models for Identifying Ischemic Heart Disease

机译:关于识别缺血性心脏病的ST段变化和数学模型的使用

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It is well known that myocardial ischemia can be observed as a shift in the ST segment of an ECG recording. In this paper we will discuss how ST-segment shift, along with advanced mathematical models, can be used to compute the size and location of the ischemic region - an inverse problem. Traditionally, the inverse approach to localizing ischemia has been based on the calculation of epicardial potentials. We present an alternative approach where the location and size of the ischemic region are computed directly by solving a parameter identification problem based on a level set framework and partial differential equations (PDEs). More precisely, the ischemic region is identified by minimizing an objective function measuring the difference between the recorded and simulated ECG signals. Our results show, at least for synthetic ECG data, that values of ST shift recorded at the body surface are capable of identifying the position and (roughly) the size of the ischemia.
机译:众所周知,可以观察到心肌缺血作为心电图记录的ST段的转变。在本文中,我们将讨论ST段转移以及高级数学模型如何使用缺血区域的大小和位置 - 这是一个逆问题。传统上,定位缺血的反向方法是基于表皮势的计算。我们提出一种替代方法,其中通过基于级别集框架和部分微分方程(PDE)来求解参数识别问题,直接计算缺血区域的位置和大小。更确切地说,通过最小化测量记录和模拟的ECG信号之间的差异的目标函数来识别缺血区域。我们的结果表明,至少用于合成ECG数据,在体表处记录的ST移位值能够识别缺血的尺寸和(粗略地)。

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