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Asynchronous presentation of global and local information reveals effects of attention on brain electrical activity specific to each level

机译:全局和局部信息的异步​​表示揭示了注意对每个级别特定的脑电活动的影响

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摘要

The neural basis of selective attention within hierarchically organized Navon figures has been extensively studied with event related potentials (ERPs), by contrasting responses obtained when attending the global and the local echelons. The findings are inherently ambiguous because both levels are always presented together. Thus, only a mixture of the brain responses to two levels can be observed. Here, we use a method that allows unveiling of global and local letters at distinct times, enabling estimation of separate ERPs related to each level. Two interspersed oddball streams were presented, each using letters from one level and comprised of frequent distracters and rare targets. Previous work and our Experiment 1 show that it is difficult to divide attention between two such streams of stimuli. ERP recording in Experiment 2 evinced an early selection negativity (SN, with latencies to the 50% area of about 266 ms for global distracters and 276 ms for local distracters) that was larger for attended relative to unattended distracters. The SN was larger over right posterior occipito-temporal derivations for global stimuli and over left posterior occipito-temporal derivations for local stimuli (although the latter was less strongly lateralized). A discrimination negativity (DN, accompanied by a P3b) was larger for attended targets relative to attended distracters, with latencies to the 50% area of about 316 ms for global stimuli and 301 ms for local stimuli, which presented a similar distribution for both levels over left temporo-parietal electrodes. The two negativities apparently index successive stages in the processing of a selected level within a compound figure. By resolving the ambiguity of traditional designs, our method allowed us to observe the effects of attention for each hierarchical level on its own.
机译:通过对比参加全球和本地梯队时获得的响应,已对具有层次结构的Navon人物中的选择性注意的神经基础进行了广泛的研究,具有事件相关电位(ERP)。这些发现本质上是模棱两可的,因为两个级别总是一起出现。因此,只能观察到大脑对两种水平的反应的混合。在这里,我们使用一种方法,可以在不同的时间公开全局和本地字母,从而可以估计与每个级别相关的单独的ERP。呈现了两个散布的奇数流,每个流使用一个级别的字母,并且包含频繁的干扰和稀有目标。先前的工作和我们的实验1表明,很难在两个这样的刺激流之间分配注意力。实验2中的ERP记录显示出早期选择否定性(SN,相对于无人值守的干扰者而言,全时分心者的50%时延大约为266 ms,局部分心者为276 ms)。对于局部刺激,右后枕颞颞导联和局部后刺激左后枕颞导联的SN较大(尽管后者的侧向化程度较弱)。相对于照看的干扰物,照看目标的辨别力否定性(DN,伴随P3b)更大,全球刺激的50%区域潜伏期约为316毫秒,局部刺激的潜伏期为301毫秒,这两个阶段的分布相似在左颞顶电极上。这两个负面因素显然索引了复合图中选定级别的处理中的连续阶段。通过解决传统设计的歧义,我们的方法使我们能够观察到每个层次上的注意力的影响。

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