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通过结合信号与噪声协方差的参数化逆滤波器对运动相关电位进行皮质偶极子成像。

Cortical dipole imaging of movement-related potentials by means of parametric inverse filters incorporating with signal and noise covariance.

作者信息

Hori J, Miwa T, Ohshima T, He B

机构信息

Department of Biocybernetics, Niigata University, 8050 Ikarashi-2, Niigata 950-2181, Japan.

出版信息

Methods Inf Med. 2007;46(2):242-6.

Abstract

OBJECTIVE

The objective of this study is to explore suitable spatial filters for inverse estimation of cortical equivalent dipole layer imaging from the scalp electroencephalogram. We utilize cortical dipole source imaging to locate the possible generators of scalp-measured movement-related potentials (MRPs) in human.

METHODS

The effects of incorporating signal and noise covariance into inverse procedures were examined by computer simulations and experimental study. The parametric projection filter (PPF) and parametric Weiner filter (PWF) were applied to an inhomogeneous three-sphere head model under various noise conditions.

RESULTS

The present simulation results suggest that the PWF incorporating signal information provides better cortical dipole layer imaging results than the PPF and Tikhonov regularization under the condition of moderate and high correlation between signal and noise distributions. On the other hand, the PPF has better performance than other inverse filters under the condition of low correlation between signal and noise distributions. The proposed methods were applied to self-paced MRPs in order to identify the anatomic substrate locations of neural generators. The dipole layer distributions estimated by means of PPF are well-localized as compared with blurred scalp potential maps and dipole layer distribution estimated by Tikhonov regularization. The proposed methods demonstrated that the contralateral premotor cortex was preponderantly activated in relation to movement performance.

CONCLUSIONS

In cortical dipole source imaging, the PWF has better performance especially when the correlation between the signal and noise is high. The proposed inverse method was applicable to human experiments of MRPs if the signal and noise covariances were obtained.

摘要

目的

本研究的目的是探索合适的空间滤波器,用于从头皮脑电图进行皮质等效偶极层成像的逆估计。我们利用皮质偶极子源成像来定位人类头皮测量的运动相关电位(MRP)的可能发生器。

方法

通过计算机模拟和实验研究,检验了将信号和噪声协方差纳入逆过程的效果。将参数投影滤波器(PPF)和参数维纳滤波器(PWF)应用于各种噪声条件下的非均匀三球头模型。

结果

目前的模拟结果表明,在信号和噪声分布具有中等和高相关性的条件下,结合信号信息的PWF比PPF和蒂霍诺夫正则化提供更好的皮质偶极层成像结果。另一方面,在信号和噪声分布相关性较低的条件下,PPF比其他逆滤波器具有更好的性能。所提出的方法应用于自定步速的MRP,以识别神经发生器的解剖底物位置。与模糊的头皮电位图和蒂霍诺夫正则化估计的偶极层分布相比,通过PPF估计的偶极层分布定位良好。所提出的方法表明,对侧运动前皮质在运动表现方面有优势激活。

结论

在皮质偶极子源成像中,PWF具有更好的性能,特别是当信号和噪声之间的相关性较高时。如果获得信号和噪声协方差,所提出的逆方法适用于MRP的人体实验。

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