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Hand somatosensory subcortical and cortical sources assessed by functional source separation: An EEG study

机译:通过功能性源头分离评估手部体感皮层下和皮层源:一项脑电图研究

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摘要

We propose a novel electroencephalographic application of a recently developed cerebral source extraction method (Functional Source Separation, FSS), which starts from extracranial signals and adds a functional constraint to the cost function of a basic independent component analysis model without requiring solutions to be independent. Five ad‐hoc functional constraints were used to extract the activity reflecting the temporal sequence of sensory information processing along the somatosensory pathway in response to the separate left and right median nerve galvanic stimulation. Constraints required only the maximization of the responsiveness at specific latencies following sensory stimulation, without taking into account that any frequency or spatial information. After source extraction, the reliability of identified FS was assessed based on the position of single dipoles fitted on its retroprojected signals and on a discrepancy measure. The FS positions were consistent with previously reported data (two early subcortical sources localized in the brain stem and thalamus, the three later sources in cortical areas), leaving negligible residual activity at the corresponding latencies. The high‐frequency component of the oscillatory activity (HFO) of the extracted component was analyzed. The integrity of the low amplitude HFOs was preserved for each FS. On the basis of our data, we suggest that FSS can be an effective tool to investigate the HFO behavior of the different neuronal pools, recruited at successive times after median nerve galvanic stimulation. As FSs are reconstructed along the entire experimental session, directional and dynamic HFO synchronization phenomena can be studied. Hum Brain Mapp, 2009. © 2008 Wiley‐Liss, Inc.
机译:我们提出了一种最新开发的脑源提取方法(功能性源分离,FSS)的新型脑电图应用程序,该方法从颅外信号开始,并向基本独立成分分析模型的成本函数增加了功能约束,而无需解决方案独立。使用五个临时功能约束来提取活动,该活动反映了响应于分别的左右正中神经电刺激而沿着体感途径的感觉信息处理的时间顺序。约束条件仅要求在感觉刺激后的特定潜伏期使响应性最大化,而无需考虑任何频率或空间信息。提取信号源后,根据安装在其反投影信号上的单个偶极子的位置以及差异度量来评估已识别FS的可靠性。 FS位置与先前报道的数据一致(两个早期的皮质下来源位于脑干和丘脑,三个后来的来源位于皮质区域),而在相应的潜伏期,残留活性可忽略不计。分析了提取成分的振荡活动(HFO)的高频成分。每个FS都保留了低振幅HFO的完整性。根据我们的数据,我们建议FSS可以成为研究不同神经元池的HFO行为的有效工具,这些神经池在正中神经电刺激后连续时间被募集。在整个实验过程中重建FS时,可以研究方向性和动态HFO同步现象。嗡嗡的脑图,2009年。©2008 Wiley-Liss,Inc.

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