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Feasibility of Equivalent Dipole Models for Electroencephalogram-Based Brain Computer Interfaces

机译:基于脑电图的脑计算机接口的等效偶极子模型的可行性

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摘要

This article examines the localization errors of equivalent dipolar sources inverted from the surface electroencephalogram in order to determine the feasibility of using their location as classification parameters for non-invasive brain computer interfaces. Inverse localization errors are examined for two head models: a model represented by four concentric spheres and a realistic model based on medical imagery. It is shown that the spherical model results in localization ambiguity such that a number of dipolar sources, with different azimuths and varying orientations, provide a near match to the electroencephalogram of the best equivalent source. No such ambiguity exists for the elevation of inverted sources, indicating that for spherical head models, only the elevation of inverted sources (and not the azimuth) can be expected to provide meaningful classification parameters for brain–computer interfaces. In a realistic head model, all three parameters of the inverted source location are found to be reliable, providing a more robust set of parameters. In both cases, the residual error hypersurfaces demonstrate local minima, indicating that a search for the best-matching sources should be global. Source localization error vs. signal-to-noise ratio is also demonstrated for both head models.
机译:本文研究了从表面脑电图倒置的等效偶极子源的定位误差,以确定将其位置用作非侵入性脑计算机接口的分类参数的可行性。针对两个头部模型检查了反向定位误差:一个由四个同心球表示的模型和一个基于医学影像的现实模型。结果表明,球形模型会导致定位不明确,从而使许多具有不同方位角和不同方向的偶极子源与最佳等效源的脑电图几乎匹配。倒置源的仰角没有这种歧义,表明对于球头模型,只有倒置源的仰角(而不是方位角)可以为脑机接口提供有意义的分类参数。在现实的头部模型中,倒置源位置的所有三个参数都被认为是可靠的,从而提供了一组更可靠的参数。在这两种情况下,残留误差超曲面都显示出局部极小值,这表明对最佳匹配源的搜索应该是全局的。两种头部模型的光源定位误差与信噪比的关系也得到了证明。

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