
pmid: 21723311
pmc: PMC3152614
Previous studies have provided conflicting evidence regarding whether the magnocellular (M) or parvocellular (P) visual pathway is primarily responsible for triggering involuntary orienting. Here, we used event-related potentials (ERPs) to provide new evidence that both the M and P pathways can trigger attentional capture and bias visual processing at multiple levels. Specifically, cued-location targets elicited enhanced activity, relative to uncued-location targets, at both early sensory processing levels (indexed by the P1 component) and later higher-order processing stages (as indexed by the P300 component). Furthermore, the present results show these effects of attentional capture were not contingent on the feature congruency between the cue and expected target, providing evidence that this biasing of visual processing was not dependant on top-down expectations or within-pathway priming.
Adult, Male, Involuntary, P3, Electroencephalography, Sensory Systems, P1, Ophthalmology, Reaction Time, Visual Perception, Evoked Potentials, Visual, Humans, Attention, Female, Visual Pathways, P300, Cues, ERP, Photic Stimulation, Attention capture
Adult, Male, Involuntary, P3, Electroencephalography, Sensory Systems, P1, Ophthalmology, Reaction Time, Visual Perception, Evoked Potentials, Visual, Humans, Attention, Female, Visual Pathways, P300, Cues, ERP, Photic Stimulation, Attention capture
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