首页> 美国卫生研究院文献>Philosophical Transactions of the Royal Society B: Biological Sciences >Functionally independent components of early event-related potentials in a visual spatial attention task.
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Functionally independent components of early event-related potentials in a visual spatial attention task.

机译:视觉空间注意力任务中与早期事件相关的电位的功能独立组件。

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摘要

Spatial visual attention modulates the first negative-going deflection in the human averaged event-related potential (ERP) in response to visual target and non-target stimuli (the N1 complex). Here we demonstrate a decomposition of N1 into functionally independent subcomponents with functionally distinct relations to task and stimulus conditions. ERPs were collected from 20 subjects in response to visual target and non-target stimuli presented at five attended and non-attended screen locations. Independent component analysis, a new method for blind source separation, was trained simultaneously on 500 ms grand average responses from all 25 stimulus-attention conditions and decomposed the non-target N1 complexes into five spatially fixed, temporally independent and physiologically plausible components. Activity of an early, laterally symmetrical component pair (N1aR and N1aL) was evoked by the left and right visual field stimuli, respectively. Component N1aR peaked ca. 9 ms earlier than N1aL. Central stimuli evoked both components with the same peak latency difference, producing a bilateral scalp distribution. The amplitudes of these components were no reliably augmented by spatial attention. Stimuli in the right visual field evoked activity in a spatio-temporally overlapping bilateral component (N1b) that peaked at ca. 180 ms and was strongly enhanced by attention. Stimuli presented at unattended locations evoked a fourth component (P2a) peaking near 240 ms. A fifth component (P3f) was evoked only by targets presented in either visual field. The distinct response patterns of these components across the array of stimulus and attention conditions suggest that they reflect activity in functionally independent brain systems involved in processing attended and unattended visuospatial events.
机译:空间视觉注意力响应于视觉目标和非目标刺激(N1复合体),调节人类平均事件相关电位(ERP)中的第一个负向偏转。在这里,我们展示了N1分解为功能独立的子组件,这些子组件在功能上与任务和刺激条件具​​有不同的关系。响应于在五个有人参与和非有人参与的屏幕位置呈现的视觉目标和非目标刺激,从20名受试者中收集了ERPs。独立成分分析是一种用于盲源分离的新方法,同时在来自所有25个刺激注意条件的500毫秒总体平均响应上进行了训练,并将非目标N1复合物分解为五个空间固定,时间独立和生理上合理的成分。早期,横向对称的组件对(N1aR和N1aL)的活动分别由左右视野刺激引起。分量N1aR约在峰值。比N1aL早9毫秒。中央刺激诱发两个组分具有相同的峰潜伏期差异,产生双侧头皮分布。这些分量的幅度没有被空间注意可靠地增大。右视野中的刺激引起时空重叠的双侧分量(N1b)的活动,该分量在大约1时达到峰值。 180毫秒,注意力得到了极大的增强。在无人值守位置出现的刺激引起第四成分(P2a)在240毫秒附近达到峰值。第五个组件(P3f)仅由出现在任一视野中的目标引起。这些刺激和注意力条件阵列中这些成分的独特反应模式表明,它们反映了参与处理有人参与和无人参与的视觉空间事件的功能独立的大脑系统的活动。

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