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Weight and See: Loading Working Memory Improves Incidental Identification of Irrelevant Faces

机译:重看:加载工作记忆可改善对不相关面孔的偶然识别

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Are task-irrelevant stimuli processed to a level enabling individual identification? This question is central both for perceptual processing models and for applied settings (e.g., eye-witness testimony). Lavie’s load theory proposes that working memory actively maintains attentional prioritization of relevant over irrelevant information. Loading working memory thus impairs attentional prioritization, leading to increased processing of task-irrelevant stimuli. Previous research has shown that increased working memory load leads to greater interference effects from response-competing distractors. Here we test the novel prediction that increased processing of irrelevant stimuli under high working memory load should lead to a greater likelihood of incidental identification of entirely irrelevant stimuli. To test this, we asked participants to perform a word-categorization task while ignoring task-irrelevant images. The categorization task was performed during the retention interval of a working memory task with either low or high load (defined by memory set size). Following the final experimental trial, a surprise question assessed incidental identification of the irrelevant image. Loading working memory was found to improve identification of task-irrelevant faces, but not of building stimuli (shown in a separate experiment to be less distracting). These findings suggest that working memory plays a critical role in determining whether distracting stimuli will be subsequently identified.
机译:是否将与任务无关的刺激处理到可以个人识别的水平?这个问题对于感知处理模型和应用设置(例如目击者证词)都是至关重要的。 Lavie的负载理论提出,工作记忆会主动保持相关信息的注意力优先于无关信息的优先级。因此,加载工作记忆会损害注意力的优先级,从而增加与任务无关的刺激的处理。先前的研究表明,工作记忆负荷的增加会导致竞争激烈的干扰因素产生更大的干扰效应。在这里,我们测试了一种新颖的预测,即在高工作记忆负载下对无关刺激的处理增加,将导致偶然识别完全无关刺激的可能性更大。为了对此进行测试,我们要求参与者执行单词分类任务,同时忽略与任务无关的图像。分类任务是在工作内存任务的保留时间间隔内以低负载或高负载(由内存集大小定义)执行的。在最后的实验性试验之后,一个意外问题评估了无关图像的偶然识别。发现加载工作记忆可以改善与任务无关的面孔的识别,但不能增强建筑刺激性(在另一个实验中显示的注意力分散程度较小)。这些发现表明,工作记忆在确定随后是否能识别干扰性刺激中起着至关重要的作用。

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