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EEG source imaging with spatio‐temporal tomographic nonnegative independent component analysis

机译:时空层析非负独立分量分析的脑电图源成像

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摘要

This article describes a spatio‐temporal EEG/MEG source imaging (ESI) that extracts a parsimonious set of “atoms” or components, each the outer product of both a spatial and a temporal signature. The sources estimated are localized as smooth, minimally overlapping patches of cortical activation that are obtained by constraining spatial signatures to be nonnegative (NN), orthogonal, sparse, and smooth‐in effect integrating ESI with NN‐ICA. This constitutes a generalization of work by this group on the use of multiple penalties for ESI. A multiplicative update algorithm is derived being stable, fast and converging within seconds near the optimal solution. This procedure, spatio‐temporal tomographic NN ICA (STTONNICA), is equally able to recover superficial or deep sources without additional weighting constraints as tested with simulations. STTONNICA analysis of ERPs to familiar and unfamiliar faces yields an occipital‐fusiform atom activated by all faces and a more frontal atom that only is active with familiar faces. The temporal signatures are at present unconstrained but can be required to be smooth, complex, or following a multivariate autoregressive model. Hum Brain Mapp, 2009. © 2009 Wiley‐Liss, Inc.
机译:本文介绍了时空EEG / MEG源成像(ESI),该成像提取了一组简约的“原子”或组件,每个组件都具有空间和时间特征。估计的来源被定位为平滑,最小重叠的皮质激活斑块,这些斑块是通过将空间特征约束为非负(NN),正交,稀疏和平滑ESI与NN-ICA集成而获得的。这构成了该小组关于对ESI使用多种惩罚的工作的概括。推导了一种稳定,快速且在最优解附近几秒钟内收敛的乘法更新算法。这种程序,时空层析X线NN ICA(STTONNICA),同样能够恢复表层或深层资源,而无需像模拟测试那样附加权重约束。 STTONNICA对熟悉和不熟悉的面孔进行ERP分析后,枕枕形原子被所有面孔激活,而额叶原子则仅在熟悉的面孔中活跃。目前,时间签名不受限制,但可能需要平滑,复杂或遵循多元自回归模型。嗡嗡的脑图,2009年。©2009 Wiley-Liss,Inc.

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