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分离神经电数据中时间上重叠源的方法。

Methods for separating temporally overlapping sources of neuroelectric data.

作者信息

Achim A, Richer F, Saint-Hilaire J M

机构信息

Département de Psychologie, Université du Québec à Montréal, Canada.

出版信息

Brain Topogr. 1988 Fall;1(1):22-8. doi: 10.1007/BF01129336.

Abstract

The localization of intracranial sources of EEG or MEG signals can be misled by the combined effect of several sources, as illustrated by simulated MEG data in which two of the three dipolar sources have slightly out of phase activity and partly complementary scalp topographies. These data were analysed by three different source localization methods. Fitting a single source to each sequential topography worked perfectly when only one source was active; this could also account for as much as 95% of the spatial variance of topographies resulting from two overlapping sources, although the solution was then far from any source. A principal component analysis approach followed by an oblique rotation (fitting one source to the spatial aspect of each component) correctly localized two of the sources but severely mislocated the source that was never active alone. Spatio-temporal source modeling (simultaneously fitting a set of sources to all consecutive topographies) correctly localized all three sources, provided that the parameter optimization method could escape sub-optimal local minima of the error function. Temporally overlapping sources can thus be separated and correctly identified if the mathematical model is adequate and the optimization procedure is well adapted.

摘要

脑电图(EEG)或脑磁图(MEG)信号的颅内源定位可能会受到多个源的综合影响而产生误导,这在模拟的MEG数据中得到了体现,其中三个偶极源中的两个具有略微不同相的活动以及部分互补的头皮地形图。这些数据由三种不同的源定位方法进行分析。当只有一个源处于活动状态时,为每个连续地形图拟合单个源的方法效果极佳;对于由两个重叠源产生的地形图,这种方法也能解释高达95%的空间方差,尽管此时的解与任何源都相差甚远。一种主成分分析方法,随后进行斜交旋转(为每个成分的空间方面拟合一个源),正确地定位了其中两个源,但严重错误定位了从未单独活动过的源。时空源建模(同时为所有连续地形图拟合一组源)能够正确地定位所有三个源,前提是参数优化方法能够避开误差函数的次优局部最小值。因此,如果数学模型足够且优化程序适配良好,时间上重叠的源可以被分离并正确识别。

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