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Signal and Noise Covariance Estimation Based on ICA for High-Resolution Cortical Dipole Imaging

机译:基于ICA的高分辨率皮层偶极子成像信噪协方差估计

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We investigated suitable spatial inverse filters for cortical dipole imaging from the scalp electroencephalogram (EEG). The effects of incorporating statistical information of signal and noise into inverse procedures were examined by computer simulations and experimental studies. The parametric projection filter (PPF) and parametric Wiener filter (PWF) were applied to an inhomogeneous three-sphere volume conductor head model. The noise covariance matrix was estimated by applying independent component analysis (ICA) to scalp potentials. The present simulation results suggest that the PPF and the PWF provided excellent performance when the noise covariance was estimated from the differential noise between EEG and the separated signal using ICA and the signal covariance was estimated from the separated signal. Moreover, the spatial resolution of the cortical dipole imaging was improved while the influence of noise was suppressed by including the differential noise at the instant of the imaging and by adjusting the duration of noise sample according to the signal to noise ratio. We applied the proposed imaging technique to human experimental data of visual evoked potential and obtained reasonable results that coincide to physiological knowledge.
机译:我们研究了从头皮脑电图(EEG)皮层偶极子成像的合适的空间逆滤波器。通过计算机模拟和实验研究检验了将信号和噪声的统计信息纳入逆过程的影响。将参数投影滤波器(PPF)和参数维纳滤波器(PWF)应用于非均质三球体导体头模型。噪声协方差矩阵是通过将独立成分分析(ICA)应用于头皮电位来估计的。当前的仿真结果表明,当使用ICA根据EEG和分离信号之间的差分噪声估计噪声协方差,并且根据分离信号估计信号协方差时,PPF和PWF提供了出色的性能。此外,通过在成像瞬间包括微分噪声并根据信噪比调整噪声样本的持续时间,可以改善皮质偶极子成像的空间分辨率,同时抑制噪声的影响。我们将拟议的成像技术应用于视觉诱发电位的人体实验数据,并获得与生理学知识相符的合理结果。

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