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Equivalent physical models and formulation of equivalent source layer in high-resolution EEG imaging

机译:高分辨率脑电成像中的等效物理模型和等效源层的公式化

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In high-resolution EEG imaging, both equivalent dipole layer (EDL) and equivalent charge layer (ECL) assumed to be located just above the cortical surface have been proposed as high-resolution imaging modalities or as intermediate steps to estimate the epicortical potential. Presented here are the equivalent physical models of these two equivalent source layers (ESL) which show that the strength of EDL is proportional to the surface potential of the layer when the outside of the layer is filled with an insulator, and that the strength of ECL is the normal current of the layer when the outside is filled with a perfect conductor. Based on these equivalent physical models, closed solutions of ECL and EDL corresponding to a dipole enclosed by a spherical layer are given. These results provide the theoretical basis of ESL applications in high-resolution EEG mapping.
机译:在高分辨率脑电图成像中,已提出假定正好位于皮质表面正上方的等效偶极子层(EDL)和等效电荷层(ECL)作为高分辨率成像方式或作为估计表皮电位的中间步骤。这里介绍的是这两个等效源极层(ESL)的等效物理模型,这些模型显示了当层的外部填充绝缘体时EDL的强度与层的表面电势成正比,并且ECL的强度是当外部充满理想导体时该层的正常电流。基于这些等效物理模型,给出了对应于被球形层包围的偶极子的ECL和EDL的封闭解。这些结果为ESL在高分辨率脑电图中的应用提供了理论基础。

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