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The Competitive Influences of Perceptual Load and Working Memory Guidance on Selective Attention

机译:知觉负荷和工作记忆指导对选择性注意的竞争影响

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摘要

The perceptual load theory in selective attention literature proposes that the interference from task-irrelevant distractor is eliminated when perceptual capacity is fully consumed by task-relevant information. However, the biased competition model suggests that the contents of working memory (WM) can guide attentional selection automatically, even when this guidance is detrimental to visual search. An intriguing but unsolved question is what will happen when selective attention is influenced by both perceptual load and WM guidance. To study this issue, behavioral performances and event-related potentials (ERPs) were recorded when participants were presented with a cue to either identify or hold in memory and had to perform a visual search task subsequently, under conditions of low or high perceptual load. Behavioural data showed that high perceptual load eliminated the attentional capture by WM. The ERP results revealed an obvious WM guidance effect in P1 component with invalid trials eliciting larger P1 than neutral trials, regardless of the level of perceptual load. The interaction between perceptual load and WM guidance was significant for the posterior N1 component. The memory guidance effect on N1 was eliminated by high perceptual load. Standardized Low Resolution Electrical Tomography Analysis (sLORETA) showed that the WM guidance effect and the perceptual load effect on attention can be localized into the occipital area and parietal lobe, respectively. Merely identifying the cue produced no effect on the P1 or N1 component. These results suggest that in selective attention, the information held in WM could capture attention at the early stage of visual processing in the occipital cortex. Interestingly, this initial capture of attention by WM could be modulated by the level of perceptual load and the parietal lobe mediates target selection at the discrimination stage.
机译:选择性注意文献中的知觉负荷理论提出,当与任务相关的信息完全消耗知觉能力时,就可以消除与任务无关的干扰物的干扰。但是,有偏见的竞争模型表明,即使该指导不利于视觉搜索,工作记忆(WM)的内容也可以自动指导注意选择。一个有趣但尚未解决的问题是,当选择性负荷受到知觉负荷和WM指导的影响时,将会发生什么。为了研究此问题,当向参与者展示提示以识别或保留在内存中并且随后必须在低或高感知负载的条件下执行视觉搜索任务时,记录行为表现和事件相关电位(ERP)。行为数据表明,高知觉负载消除了WM的注意力捕获。 ERP结果显示,无论感觉负荷水平如何,无效试验引起的P1均比中性试验大,P1组件具有明显的WM指导作用。感知负荷和WM指导之间的相互作用对于后N1分量很重要。高感知负载消除了对N1的记忆引导作用。标准化的低分辨率电子断层扫描分析(sLORETA)表明,WM引导作用和感知负荷对注意力的作用可以分别定位在枕叶区和顶叶。仅识别提示不会对P1或N1组件产生影响。这些结果表明,在选择性注意中,WM中保存的信息可以在枕叶皮质视觉处理的早期阶段吸引注意。有趣的是,WM对注意力的最初捕捉可以通过感知负荷的水平来调节,并且顶叶在辨别阶段介导目标的选择。

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