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Object-based selection of irrelevant features is not confined to the attended object.
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The time course of encoding and maintenance of task-relevant versus irrelevant object features in working memory.
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Irrelevant singletons in visual search do not capture attention but can produce nonspatial filtering costs.
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Rapid top-down control over template-guided attention shifts to multiple objects.
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Generating spatial and nonspatial attentional control: An ERP study.
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The role of top-down spatial attention in contingent attentional capture.
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Are objects the same as groups? ERP correlates of spatial attentional guidance by irrelevant feature similarity.
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The Time Course of Target Template Activation Processes during Preparation for Visual Search.
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A Critique of the Attentional Window Account of Capture Failures.
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Altered spatial profile of distraction in people with schizophrenia.
J Abnorm Psychol. 2017 Nov;126(8):1077-1086. doi: 10.1037/abn0000314.
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Immunity to attentional capture at ignored locations.
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Interactions between space-based and feature-based attention.
J Exp Psychol Hum Percept Perform. 2015 Feb;41(1):11-6. doi: 10.1037/xhp0000011. Epub 2014 Oct 6.
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ERPLAB: an open-source toolbox for the analysis of event-related potentials.
Front Hum Neurosci. 2014 Apr 14;8:213. doi: 10.3389/fnhum.2014.00213. eCollection 2014.

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Attention-related modulation of sensory-evoked brain activity in a visual search task.
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A common neural mechanism for preventing and terminating the allocation of attention.
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Feature-based attention in the frontal eye field and area V4 during visual search.
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Attention and sensory gain control: a peripheral visual process?
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Event-related potentials reveal dissociable mechanisms for orienting and focusing visuospatial attention.
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