Literature DB >> 23968506

Neural processes involved in directing attention.

M R Harter1, S L Miller, N J Price, M E Lalonde, A L Keyes.   

Abstract

Neural processes associated with two aspects of visual-spatial attention were investigated with event-related potential (ERPs): those that direct spatial attention to a given point in space and those that modulate the processing of sensory input after attention has been directed. The subjects were 6- to 9-year-old children (51 boys and 35 girls). An arrow cue directed attention from the central to peripheral visual field; targets were then flashed in the attended or ignored visual field 600 msec after the cue. The directing of attention to the left vs. right visual field was associated with hemispheric differences in slow potentials prior to the presentation of the targets. The earliest potential, which started about 200 msec after the cue and was negative over the hemisphere contralateral to the direction of attention, was greatest over the parietal area and appeared to reflect processes directing attention per se. The last potential, which peaked 60 msec after the target and was positive over the hemisphere contralateral to the direction of attention, was greatest over the occipital-parietal region. It appeared to reflect the modulation of cortical excitability in the regions receiving input from the relevant and irrelevant visual fields. The effects of spatial attention on P1, N1, and P3 ERP components following the targets replicated previous results. Boys appeared more aroused (as indicated by CNVs) and reflected faster and greater selective processing (as indicated by reaction time, and N1-P1 latency and amplitude) than girls.

Entities:  

Year:  1989        PMID: 23968506     DOI: 10.1162/jocn.1989.1.3.223

Source DB:  PubMed          Journal:  J Cogn Neurosci        ISSN: 0898-929X            Impact factor:   3.225


  50 in total

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2.  Dynamic activation of frontal, parietal, and sensory regions underlying anticipatory visual spatial attention.

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4.  Mechanisms underlying spatial coding in a multiple-item Simon task.

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5.  Prediction of response speed by anticipatory high-frequency (gamma band) oscillations in the human brain.

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6.  Localizing cortical sources of event-related potentials in infants' covert orienting.

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7.  ERP correlates of anticipatory attention: spatial and non-spatial specificity and relation to subsequent selective attention.

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Journal:  Exp Brain Res       Date:  2008-03-18       Impact factor: 1.972

8.  Spatiotemporal mapping of sex differences during attentional processing.

Authors:  Andres H Neuhaus; Carolin Opgen-Rhein; Carsten Urbanek; Melanie Gross; Eric Hahn; Thi Minh Tam Ta; Simone Koehler; Michael Dettling
Journal:  Hum Brain Mapp       Date:  2009-09       Impact factor: 5.038

9.  EEG Correlates of Preparatory Orienting, Contextual Updating, and Inhibition of Sensory Processing in Left Spatial Neglect.

Authors:  Stefano Lasaponara; Marianna D'Onofrio; Mario Pinto; Alessio Dragone; Dario Menicagli; Domenica Bueti; Marzia De Lucia; Francesco Tomaiuolo; Fabrizio Doricchi
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10.  Control mechanisms mediating shifts of attention in auditory and visual space: a spatio-temporal ERP analysis.

Authors:  Jessica J Green; Wolfgang A Teder-Sälejärvi; John J McDonald
Journal:  Exp Brain Res       Date:  2005-08-02       Impact factor: 1.972

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