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Fusing Simultaneous EEG and fMRI Using Functional and Anatomical Information

机译:使用功能和解剖学信息融合同时EEG和fMRI

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Simultaneously measuring electro physical and hemodynamic signals has become more accessible in the last years and the need for modeling techniques that can fuse the modalities is growing. In this work we augment a specific fusion method, the multimodal Source Power Co-modulation (mSPoC), to not only use functional but also anatomical information. The goal is to extract correlated source components from electroencephalography (EEG) and functional magnetic resonance imaging (fMRI). Anatomical information enters our proposed extension to mSPoC via the forward model, which relates the activity on cortex level to the EEG sensors. The augmented mSPoC is shown to outperform the original version in realistic simulations where the signal to noise ratio is low or where training epochs are scarce.
机译:在最近几年中,同时测量电生理和血液动力学信号变得越来越容易,并且对可以融合这些模态的建模技术的需求也在增长。在这项工作中,我们扩充了一种特殊的融合方法,即多峰源功率共调制(mSPoC),不仅可以使用功能信息,还可以使用解剖信息。目的是从脑电图(EEG)和功能磁共振成像(fMRI)中提取相关的源成分。解剖学信息通过正向模型进入了我们对mSPoC的扩展,该模型将皮质水平上的活动与EEG传感器相关联。在信噪比低或缺乏训练时间的现实模拟中,增强型mSPoC在性能上优于原始版本。

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