首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >THE SPATIOTEMPORAL DYNAMICS OF EARLY ATTENTION PROCESSES: A HIGH-RESOLUTION ELECTROENCEPHALOGRAPHIC STUDY OF N2 SUBCOMPONENT SOURCES
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THE SPATIOTEMPORAL DYNAMICS OF EARLY ATTENTION PROCESSES: A HIGH-RESOLUTION ELECTROENCEPHALOGRAPHIC STUDY OF N2 SUBCOMPONENT SOURCES

机译:早期注意过程的时空动力学:N2亚组分源的高分辨率电图研究

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摘要

The N2 subcomponents of event-related potentials are known to reflect early attentional processes. The anterior N2 may reflect conflict monitoring, whereas the posterior N2 may be involved in target detection. The aim of this study was to identify the brain areas involved in the generation of the N2 subcomponents, in order to define the spatiotemporal dynamics of these attentional processes. We recorded 128-channel electroencephalograms in 15 healthy controls performing a three-stimulus visual oddball task and identified standard-, distracter- and target-elicited N2 components. Individual N2 sources were localized using standardized-weighted-low-resolution-electromagnetic-tomography (swLORETA). Comparative analyses were performed with a non-parametric permutation technique. Common N2 generators were observed in the Brodmann area (BA) 24 of the anterior cingulate cortex (ACC). The posterior cingulate cortex and the central precuneus were more involved in distracter processing, whereas the anterior precuneus and BA 32 of the ACC were target-specific. In accordance with previous demonstration of the frontoparietal cortex's critical role in attentional processes, these new data shed light on the ACC's role in conflict monitoring and its interaction with other median and frontoparietal structures in early attentional processes.
机译:已知事件相关电位的N2子成分反映了早期的注意力过程。前N2可能反映冲突监视,而后N2可能参与目标检测。这项研究的目的是确定参与N2子成分生成的大脑区域,以便定义这些注意过程的时空动态。我们在执行三刺激视觉奇异球任务的15个健康对照中记录了128通道的脑电图,并确定了标准,干扰物和靶标引起的N2成分。使用标准化加权低分辨率电磁断层扫描(swLORETA)定位各个N2源。使用非参数置换技术进行比较分析。在前扣带回皮质(ACC)的Brodmann区域(BA)24中观察到常见的N2生成器。后扣带回皮层和中央前突神经更多地参与牵张器的处理,而ACC的前前突神经和BA 32是靶标特异性的。根据先前对额叶额叶皮层在注意力过程中的关键作用的证明,这些新数据阐明了ACC在冲突监测中的作用及其在早期注意力过程中与其他中位和额叶额叶结构的相互作用。

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