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Analyzing late ventricular potentials

机译:分析晚期心室电位

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摘要

The authors show the mechanism of high frequency attenuation introduced by signal averaging and how it can be avoided by applying a high resolution alignment approach, coupled with optimal filtering of the reference lead. Several authors suggest that ventricular late potentials are due to high frequency components caused by abnormal ventricular conduction. To investigate properly this hypothesis, it was necessary to adopt an alignment algorithm that avoids attenuation of high frequency components. Thus, the use of low alignment error techniques is of paramount importance. The proposed algorithm is of particular interest with respect to new trends in late ventricular potential analysis in the frequency domain. More advanced frequency analysis techniques have been recently proposed to gain higher frequency resolution. The wavelet transformation approach was proposed by several authors (among others Meste et al., 1994; Morlet et al., 1991; and Senhadji et al., 1990). The application of advanced frequency analysis techniques is due to the challenge implicit in the characteristics of late potentials, such as reduced amplitude and nonstationarity of these high frequency signals embedded in noise. This problem underscores the need for refined alignment before averaging to guarantee that a negative finding is not related to alignment errors. In conclusion, the optimal filtering and high resolution alignment technique yields improved reliability in detecting late ventricular potentials. This technique overcomes the drawbacks of signal averaging due to the low-pass filtering effect introduced by alignment errors.
机译:作者展示了信号平均引入的高频衰减机制,以及如何通过应用高分辨率对准方法以及参考引线的最佳滤波来避免高频衰减。几位作者提出,心室晚期电位是由于心室传导异常引起的高频成分引起的。为了正确地研究这一假设,有必要采用一种避免高频分量衰减的对准算法。因此,使用低对准误差技术至关重要。相对于频域中晚期心室电位分析的新趋势,提出的算法特别受关注。最近已经提出了更先进的频率分析技术来获得更高的频率分辨率。小波变换方法是由多位作者提出的(Meste等,1994; Morlet等,1991; Senhadji等,1990)。先进的频率分析技术的应用是由于后期电势的特性所隐含的挑战,例如嵌入噪声中的这些高频信号的幅度降低和不稳定。这个问题强调了在求平均值以确保否定结果与对齐误差无关之前需要进行精确对齐的需求。总之,最佳滤波和高分辨率对准技术可提高检测晚期心室电位的可靠性。该技术克服了由于对准误差引起的低通滤波效应而导致信号平均化的缺点。

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