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利用心脏电生理学的三维模型对最优通用心电图 (U-ECG) 位置进行患者特异性识别。

Patient-specific identification of optimal ubiquitous electrocardiogram (U-ECG) placement using a three-dimensional model of cardiac electrophysiology.

机构信息

Department of Medical IT Convergence Engineering, Kumoh Institute of Technology, Gyungbuk 730-701, South Korea.

出版信息

IEEE Trans Biomed Eng. 2013 Jan;60(1):245-9. doi: 10.1109/TBME.2012.2209648. Epub 2012 Aug 8.

Abstract

A bipolar mini-ECG for ubiquitous healthcare (U-ECG) has been introduced, and various studies using the U-ECG device are in progress. Because it uses two electrodes within a small torso surface area, the design of the U-ECG must be suitable for detecting ECG signals. Using a 3-D model of cardiac electrophysiology, we have developed a simulation method for identifying the optimal placement of U-ECG electrodes on the torso surface. We simulated the heart-torso model to obtain a body surface potential map and ECG waveforms, which were compared with the empirical data. Using this model, we determined the optimal placement of the two U-ECG electrodes, spaced 5 cm apart, for detecting the P, R, and T waves. The ECG data, obtained using the optimal U-ECG placement for a specific wave, showed a clear shape for the target wave, but equivocal shapes for the other waves. The present study provides an efficient simulation method to identify the optimal attachment position and direction of the U-ECG electrodes on the surface of the torso.

摘要

已经引入了一种用于无处不在的医疗保健的双极微型心电图(U-ECG),并且正在使用 U-ECG 设备进行各种研究。由于它在小的躯干表面积内使用两个电极,因此 U-ECG 的设计必须适合检测 ECG 信号。使用心脏电生理学的 3-D 模型,我们已经开发出一种用于识别 U-ECG 电极在躯干表面上的最佳放置位置的模拟方法。我们模拟了心脏-躯干模型,以获得体表电位图和 ECG 波形,并将其与经验数据进行了比较。使用该模型,我们确定了两个 U-ECG 电极之间相隔 5 厘米的最佳放置位置,以检测 P、R 和 T 波。使用特定波的最佳 U-ECG 放置获得的 ECG 数据显示出目标波的清晰形状,但其他波的形状则模棱两可。本研究提供了一种有效的模拟方法,可以确定躯干表面上 U-ECG 电极的最佳附着位置和方向。

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