首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >WORKING MEMORY LOAD-DEPENDENT SPATIO-TEMPORAL ACTIVITY OF SINGLE-TRIAL P3 RESPONSE DETECTED WITH AN ADAPTIVE WAVELET DENOISER
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WORKING MEMORY LOAD-DEPENDENT SPATIO-TEMPORAL ACTIVITY OF SINGLE-TRIAL P3 RESPONSE DETECTED WITH AN ADAPTIVE WAVELET DENOISER

机译:用自适应小波置位检测到检测到单试的单试的单试答复的工作记忆依赖性时空活动

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Working memory (WM) refers to the holding and manipulation of information during cognitive tasks. Its underlying neural mechanisms have been explored through both functional magnetic resonance imaging (fMRI) and electroencephalography (EEG). Trial-by-trial coupling of simultaneously collected EEG and fMRI signals has become an important and promising approach to study the spatio-temporal dynamics of such cognitive processes. Previous studies have demonstrated a modulation effect of the WM load on both the BOLD response in certain brain areas and the amplitude of P3. However, much remains to be explored regarding the WM load-dependent relationship between the amplitude of ERP components and cortical activities, and the low signal-to-noise ratio (SNR) of the EEG signal still poses a challenge to performing singlo-trial analyses. In this paper, we investigated the spatio-temporal activities of P3 during an n-back verbal WM task by introducing an adaptive wavelet denoiser into the extraction of single-trial P3 features and using general linear model (GLM) to integrate simultaneously collected EEG and fMRI data. Our results replicated the modulation effect of the WM load on the P3 amplitude. Additionally, the activation of single-trial P3 amplitudes was detected in multiple brain regions, including the insula, the cuneus, the lingual gyrus (LG), and the middle occipital gyrus (MOG). Moreover, we found significant correlations between P3 features and behavioral performance. These findings suggest that the single-trial integration of simultaneous EEG and fMRI signals may provide new insights into classical cognitive functions. (C) 2017 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:工作存储器(WM)是指在认知任务期间的信息的保持和操纵。其底层神经机制已经通过两个功能性磁共振成像(fMRI)和脑电图(EEG)的探讨。同时收集的脑电图和FMRI信号的试用耦合已成为研究这种认知过程的时空动态的重要和有希望的方法。以前的研究已经证明了WM负载对某些脑区域的大胆响应和P3的幅度的调制效果。然而,关于ERP组件和皮质活动的幅度之间的WM负载依赖关系以及EEG信号的低信噪比(SNR)仍然存在仍有许多仍有待探索的仍有许多待探索仍然对执行单片试验分析进行挑战。在本文中,我们通过将自适应小波划分器引入单反试验P3特征的提取并使用一般线性模型(GLM)来集成同时收集的脑电图,研究了在N背部口头WM任务期间P3的时空活动。 FMRI数据。我们的结果复制了WM负载对P3幅度的调制效果。另外,在多种脑区中检测到单试性P3振幅的激活,包括insula,诅咒,舌咽喉(Lg)和中间枕瘤(MOG)。此外,我们发现P3特征与行为性能之间的显着相关性。这些发现表明,同时EEG和FMRI信号的单试分集合可以为经典认知功能提供新的见解。 (c)2017年IBRO。 elsevier有限公司出版。保留所有权利。

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