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Augmenting EEG-global-coherence with auditory and visual noise

机译:通过听觉和视觉噪声增强EEG全局一致性

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摘要

The present investigation documents the electrophysiological occurrence of multisensory internal stochastic resonance (MISR) in the human electroencephalographic (EEG) coherence elicited by auditory and visual noise.We define MISR of EEG coherence as the phenomenon for which an intermediate level of input noise of a sensory modality enhances EEG coherence in response to another noisy sensory modality. Here, EEG coherence is computed by the global weighted coherence (GWC), modulated by quasi-Brownian noise. Specifically, we examined whether a particular level of auditory noise together with constant visual noise (experimental condition 1) and a specified level of visual noise together with constant auditory noise (experimental condition 2), improves EEG's GWC. We compared GWC between ongoing EEG basal activity (BA), zero noise (ZN), optimal noise (ON), and high noise (HN).The data disclosed an intermediate level of input noise that enhances the GWC for the majority of the subjects, thus demonstrating for the first time the occurrence of multisensory internal stochastic resonance (SR) in visuoauditory processing within the central nervous system.
机译:本研究记录了由听觉和视觉噪声引起的人脑电图(EEG)相干性中多感觉内部随机共振(MISR)的电生理学现象。我们将脑电图相干性的MISR定义为感官输入噪声处于中等水平的现象模态增强了对另一种嘈杂的感觉模态的脑电连贯性。在这里,EEG相干性是通过整体加权相干性(GWC)来计算的,该加权加权相干性由准布朗噪声调制。具体来说,我们检查了特定水平的听觉噪声与恒定的视觉噪声(实验条件1)和特定水平的视觉噪声与恒定的听觉噪声(实验条件2)是否可以改善EEG的GWC。我们在正在进行的脑电图基础活动(BA),零噪声(ZN),最佳噪声(ON)和高噪声(HN)之间比较了GWC数据揭示了中等水平的输入噪声可以增强大多数受试者的GWC ,因此首次证明在中枢神经系统内的视觉听觉处理中发生了多感觉内部随机共振(SR)。

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