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高分辨率脑电图:关于皮质等效偶极子层成像

High-resolution EEG: on the cortical equivalent dipole layer imaging.

作者信息

He Bin, Yao Dezhong, Lian Jie

机构信息

Department of Bioengineering, University of Illinois at Chicago, Chicago, IL, USA.

出版信息

Clin Neurophysiol. 2002 Feb;113(2):227-35. doi: 10.1016/s1388-2457(01)00740-4.

Abstract

BACKGROUND

Brain electrical activity is a spatio-temporally distributed process. Cortical imaging techniques have been developed to reconstruct cortical activity from the scalp electroencephalographic or magnetoencephalographic measurements. Several cortical imaging approaches, such as the epicortical potentials and a dipole layer accounting for the cortical activity, have been used to represent brain electrical activity.

METHODS

A closed cortical dipole layer source model is used to equivalently represent brain electrical activity. The relationship between the primary brain electrical sources and the cortical equivalent dipole layer is derived from the theory of electromagnetics. Computer simulation studies were conducted using a 3-concentric-sphere head model to validate the proposed theory. The cortical equivalent dipole layer imaging approach was tested in both computer simulation and human visual evoked potential (VEP) experiments.

RESULTS

The strength of the cortical equivalent dipole layer is shown to be proportional to the electrical potential over the same surface generated by primary electrical sources, had the outer medium been replaced by air. The proposed theory was validated by computer simulation in a discrete system. Simulation and VEP experimental studies suggest the feasibility of applying the cortical equivalent dipole layer imaging approach for brain imaging.

CONCLUSIONS

The cortical equivalent dipole layer model can equivalently represent the primary brain electrical sources throughout the entire brain surrounded by the dipole layer. The strength of the cortical equivalent dipole layer due to primary sources can be directly calculated according to the theory developed in the present study.

摘要

背景

脑电活动是一个时空分布的过程。皮层成像技术已被开发用于从头皮脑电图或脑磁图测量中重建皮层活动。几种皮层成像方法,如皮层表面电位和用于解释皮层活动的偶极层,已被用于表示脑电活动。

方法

使用一个封闭的皮层偶极层源模型来等效表示脑电活动。主要脑电源与皮层等效偶极层之间的关系是从电磁学理论推导出来的。使用一个三同心球头模型进行计算机模拟研究,以验证所提出的理论。皮层等效偶极层成像方法在计算机模拟和人类视觉诱发电位(VEP)实验中均进行了测试。

结果

结果表明,若外部介质被空气取代,皮层等效偶极层的强度与主要电源在同一表面产生的电位成正比。所提出的理论在离散系统中通过计算机模拟得到了验证。模拟和VEP实验研究表明,应用皮层等效偶极层成像方法进行脑成像具有可行性。

结论

皮层等效偶极层模型可以等效表示偶极层所包围的整个大脑中的主要脑电源。根据本研究中发展的理论,可以直接计算主要电源产生的皮层等效偶极层的强度。

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