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Comparative Evaluation of Methodologies for T-Wave Alternans Mapping in Electrograms

机译:电波中T波交替信号映射方法的比较评估

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Electrograms (EGM) recorded from the surface of the myocardium are becoming more and more accessible. T-wave alternans (TWA) is associated with increased vulnerability to ventricular tachycardia/fibrillation and it occurs before the onset of ventricular arrhythmias. Thus, accurate methodologies for time-varying alternans estimation/detection in EGM are needed. In this paper, we perform a simulation study based on epicardial EGM recorded in vivo in humans to compare the accuracy of four methodologies: the spectral method (SM), modified moving average method, laplacian likelihood ratio method (LLR), and a novel method based on time-frequency distributions. A variety of effects are considered, which include the presence of wide band noise, respiration, and impulse artifacts. We found that 1) EGM-TWA can be detected accurately when the standard deviation of wide-band noise is equal or smaller than ten times the magnitude of EGM-TWA. 2) Respiration can be critical for EGM-TWA analysis, even at typical respiratory rates. 3) Impulse noise strongly reduces the accuracy of all methods, except LLR. 4) If depolarization time is used as a fiducial point, the localization of the T-wave is not critical for the accuracy of EGM-TWA detection. 5) According to this study, all methodologies provided accurate EGM-TWA detection/quantification in ideal conditions, while LLR was the most robust, providing better detection-rates in noisy conditions. Application on epicardial mapping of the in vivo human heart shows that EGM-TWA has heterogeneous spatio-temporal distribution.
机译:从心肌表面记录的电描记图(EGM)越来越可访问。 T波交替蛋白(TWA)与室性心动过速/纤颤的易感性增加相关,它发生在室性心律不齐发作之前。因此,需要用于EGM中时变交流发电机估计/检测的准确方法。在本文中,我们基于人类体内心外膜心电图进行了一项模拟研究,以比较四种方法的准确性:频谱方法(SM),修正移动平均方法,拉普拉斯似然比方法(LLR)和一种新方法基于时频分布。考虑了多种影响,包括宽带噪声,呼吸作用和脉冲伪像的存在。我们发现1)当宽带噪声的标准偏差等于或小于EGM-TWA幅度的十倍时,可以准确检测EGM-TWA。 2)即使在典型的呼吸频率下,呼吸对于EGM-TWA分析也可能至关重要。 3)脉冲噪声会大大降低除LLR外的所有方法的准确性。 4)如果将去极化时间用作基准点,则T波的定位对于EGM-TWA检测的准确性并不关键。 5)根据这项研究,所有方法都可以在理想条件下提供准确的EGM-TWA检测/定量,而LLR最可靠,可以在嘈杂条件下提供更好的检测率。在体内人心脏的心外膜作图上的应用表明,EGM-TWA具有异质的时空分布。

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