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Increasing the accuracy of electromagnetic inverses using functional area source correlation constraints

机译:使用功能面源相关约束来提高电磁逆的精度

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Estimating cortical current distributions from electroencephalographic (EEG) or magnetoencephalographic data is a difficult inverse problem whose solution can be improved by the addition of priors on the associated neural responses. In the context of visual activation studies, we propose a new approach that uses a functional area constrained estimator (FACE) to increase the accuracy of the reconstructions. It derives the source correlation matrix from a segmentation of the cortex into areas defined by retinotopic maps of the visual field or by functional localizers obtained independently by fMRI. These areas are computed once for each individual subject and the associated estimators can therefore be reused for any new study on the same participant. The resulting FACE reconstructions emphasize the activity of sources within these areas or enforce their intercorrelations. We used realistic Monte-Carlo simulations to demonstrate that this approach improved our estimates of a diverse set of source configurations. Reconstructions obtained from a real EEG dataset demonstrate that our priors improve the localization of the cortical areas involved in horizontal disparity processing.
机译:从脑电图(EEG)或脑磁图数据估计皮层电流分布是一个困难的逆问题,可以通过在相关的神经反应上增加先验来改善其解决方案。在视觉激活研究的背景下,我们提出了一种新的方法,该方法使用功能区域约束估计器(FACE)来提高重建的准确性。它从皮质分割成视场的视网膜视点图或通过功能磁共振成像独立获得的功能定位器所定义的区域中,得出源相关矩阵。这些区域是针对每个个体主题计算一次的,因此相关的估计量可以重新用于同一参与者的任何新研究。最终的FACE重建强调了这些区域内源的活动或加强了它们之间的相互关系。我们使用现实的蒙特卡洛模拟来证明这种方法改进了我们对各种源配置的估计。从真实的EEG数据集获得的重建表明,我们的先验改进了涉及水平视差处理的皮质区域的定位。

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