首页> 外文会议>Computing in Cardiology 2011 >Determination of optimal electrode positions of a wearable ECG monitoring system for detection of myocardial ischemia: A simulation study
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Determination of optimal electrode positions of a wearable ECG monitoring system for detection of myocardial ischemia: A simulation study

机译:确定用于检测心肌缺血的可穿戴式ECG监测系统的最佳电极位置:模拟研究

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The early detection of myocardial ischemia is an essential lever for its successful treatment. We investigated an ECG monitoring system with 3 electrodes. Optimal electrode positions are determined using a cellular automaton. The spatially heterogeneous effects of myocardial ischemia were modeled by altering 4 electrophysiological parameters: action potential amplitude and duration, conduction velocity as well as resting membrane voltage. Both, transmural heterogeneity and the influence of the border zone were considered in the simulations on three patient models. The detection of myocardial ischemia is based on ST segment deviation from the physiological case. The signals used to find the best electrode positions comprise ischemic regions with different transmural extents in all 17 AHA segments. We show which ischemic ECGs can be detected given a realistic signal-to-noise ratio, false positive rate and maximum response time of the system.
机译:早期发现心肌缺血是成功治疗心肌的重要手段。我们研究了带有3个电极的ECG监测系统。使用细胞自动机确定最佳电极位置。通过改变4个电生理参数来模拟心肌缺血的空间异质性效应:动作电位幅度和持续时间,传导速度以及静息膜电压。在三个病人模型的模拟中,都考虑了透壁异质性和边界区域的影响。心肌缺血的检测基于与生理病例的ST段偏离。用于找到最佳电极位置的信号包括在所有17个AHA节段中具有不同透壁程度的缺血区域。我们展示了给定的实际信噪比,假阳性率和系统的最大响应时间可以检测到哪些缺血性ECG。

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