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Supervised Discriminative EEG Brain Source Imaging with Graph Regularization

机译:具有图正则化的监督性判别性脑电图脑源成像

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As Electroencephalography (EEG) is a non-invasive brain imaging technique that records the electric field on the scalp instead of direct measuring activities of brain voxels on the cortex, many approaches were proposed to estimate the activated sources due to its significance in neuroscience research and clinical applications. However, since most part of the brain activity is composed of the spontaneous neural activities or non-task related activations, true task relevant activation sources can be very challenging to be discovered given strong background signals. For decades, the EEG source imaging problem was solved in an unsupervised way without taking into consideration the label information that representing different brain states (e.g. happiness, sadness, and surprise). A novel model for solving EEG inverse problem called Graph Regularized Discriminative Source Imaging (GRDSI) was proposed, which aims to explicitly extract the discriminative sources by implicitly coding the label information into the graph regularization term. The proposed model is capable of estimating the discriminative brain sources under different brain states and encouraging intra-class consistency. Simulation results show the effectiveness of our proposed framework in retrieving the discriminative sources.
机译:由于脑电图(EEG)是一种非侵入性的大脑成像技术,可在头皮上记录电场,而不是直接测量皮层上的大脑体素活动,因此,由于其在神经科学研究和科研中的重要意义,人们提出了许多方法来估计激活源。临床应用。但是,由于大部分大脑活动是由自发性神经活动或与任务无关的激活组成的,因此在强背景信号下很难发现与任务相关的真正激活源。数十年来,脑电图源成像问题一直以无人监督的方式解决,而没有考虑代表不同大脑状态(例如幸福,悲伤和惊奇)的标签信息。提出了一种解决脑电图逆问题的新模型,称为图正则化判别源图像(GRDSI),其目的是通过将标签信息隐式编码到图正则化项中来显式提取判别源。所提出的模型能够估计不同脑状态下可辨别的脑源,并鼓励类内一致性。仿真结果表明,我们提出的框架在检索判别来源方面是有效的。

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