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EEG signal co-channel interference suppression based on image dimensionality reduction and permutation entropy

机译:基于图像降维和置换熵的脑电信号同频干扰抑制

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It is well known that electroencephalogram (EEG) signals collected from scalps are highly contaminated by various types of artifacts and background noise. The perturbations induced by artifacts and random noise are particularly difficult to correct because of their high amplitude, wide spectral distribution, and variable topographical distribution. Therefore, de-noising of EEG is a very challenging pre-processing step prior to qualitative or quantitative EEG signal analysis. To address this issue, some de-noising approaches have been proposed for noise suppression. However, most of these methods are only available for multi-electrode EEG signal processing, besides, the co-channel interference are always left unprocessed. Aiming at the obstacles encountered by the conventional approaches in single electrode EEG signal co-channel interference suppression, a method based on time-frequency image dimensionality reduction is proposed in this paper. The innovative idea of the proposed method is that it is applicable for single electrode EEG signal enhancement and the background noise can be suppressed in entire time-frequency space. The proposed method is experimentally validated by a group of real EEG data. The experimental results indicate that the proposed method is effective in EEG single electrode co-channel interference suppression.
机译:众所周知,从头皮收集的脑电图(EEG)信号被各种伪影和背景噪声高度污染。由伪影和随机噪声引起的扰动由于其高幅度,宽频谱分布和可变的地形分布而特别难以校正。因此,在定性或定量EEG信号分析之前,EEG的降噪是一个非常具有挑战性的预处理步骤。为了解决这个问题,已经提出了一些去噪方法来抑制噪声。然而,这些方法中的大多数仅适用于多电极EEG信号处理,此外,同频道干扰始终未得到处理。针对传统方法在单电极脑电信号同频干扰抑制中遇到的障碍,提出了一种基于时频图像降维的方法。该方法的创新思想是适用于单电极脑电信号增强,可以在整个时频空间内抑制背景噪声。所提出的方法通过一组真实的EEG数据进行实验验证。实验结果表明,该方法可有效抑制脑电单电极同频干扰。

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