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A review of time-frequency matched filter design with application to seizure detection in multichannel newborn EEG

机译:时频匹配滤波器设计及其在多通道新生儿脑电图发作检测中的应用综述

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摘要

This paper presents a novel design of a time-frequency (t-f) matched filter as a solution to the problem of detecting a non-stationary signal in the presence of additive noise, for application to the detection of newborn seizure using multichannel EEG signals. The solution reduces to two possible t-f approaches that use a general formulation of t-f matched filters (TFMFs) based on the Wigner-Ville and cross Wigner-Ville distributions, and a third new approach based on the signal ambiguity domain representation; referred to as Radon-ambiguity detector. This contribution defines a general design formulation and then implements it for newborn seizure detection using multichannel EEG signals. Finally, the performance of different TFMFs is evaluated for different t-f kernels in terms of classification accuracy using real newborn EEG signals. Experimental results show that the detection method which uses TFMFs based on the cross Wigner-Ville distribution outperforms other approaches including the existing TFMF-based ones. The results also show that TFMFs which use high-resolution kernels such as the modified B-distribution, achieve higher detection accuracies compared to the ones which use other reduced-interference t-f kernels.
机译:本文提出了一种时频(t-f)匹配滤波器的新颖设计,以解决在存在附加噪声的情况下检测非平稳信号的问题,适用于使用多通道EEG信号检测新生儿癫痫发作。该解决方案简化为两种可能的t-f方法,它们使用基于Wigner-Ville和Cross Wigner-Ville分布的t-f匹配滤波器(TFMF)的一般公式,以及第三种基于信号模糊域表示的新方法;称为Radon模糊度检测器。该贡献定义了一般设计方案,然后使用多通道EEG信号将其用于新生儿癫痫发作检测。最后,使用真正的新生儿EEG信号,根据分类精度评估了不同TFMF的不同TFMF的性能。实验结果表明,使用基于交叉Wigner-Ville分布的TFMF的检测方法优于其他方法,包括现有的基于TFMF的方法。结果还表明,与使用其他降低干扰的t-f内核的TFMF相比,使用高分辨率内核(例如修改后的B分布)的TFMF具有更高的检测精度。

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