How does attention affect perception? The long-term objective of the research is to contribute to the understanding of visual attention by studying the effects of covert attention on early vision, drawing on theoretical work in perception, cognition, and neurophysiology, and using methods from visual psychophysics. There are two systems of covert attention: 'transient' (exogenous or stimulus-driven) and 'sustained' (endogenous or conceptually-driven). Recent research has shown that transient attention affects early vision by enhancing contrast sensitivity, increasing spatial resolution, and accelerating information accrual. To date, studies on sustained attention have focused on higher cognitive processes, whereas relatively little is known about its effects on early vision. The proposed research will systematically investigate the effects of both attentional systems on early vision. Research has shown that transient attention, being automatic, may result in impaired performance or deviate us from veridical perception. A main objective of the current proposal is to test the hypothesis that sustained attention is more flexible and hence may adapt to task demands better than transient attention.
The specific aims are to investigate: (1) the effects of transient and sustained attention on contrast sensitivity by evaluating the quality of the signal at both the attended and unattended locations across the visual field, examining the time course of attentional effects on contrast sensitivity, and exploring how the gain mechanisms of attention and selective adaptation affect stimulus processing; (2) the effects of transient and sustained attention on spatial resolution at the attended and unattended locations and whether attention affects the channels' spatial frequency tuning by increasing sensitivity to higher frequencies; (3) whether transient and sustained attention differentially affect the gain and tuning of 1st and 2nd order spatial frequency channels; (4) the levels at which transient and sustained attention exert their effects on contrast sensitivity and spatial resolution by studying binocular rivalry; (5) the effects of covert attention on apparent contrast and spatial resolution during standard binocular viewing and binocular rivalry. Results will be interpreted within the theoretical framework of an ensemble of spatial filters operating in linear and nonlinear regimes. The findings have implications for human factors, as well as for our understanding of many neuropsychological conditions, e.g. unilateral neglect, schizophrenia, and ADHD. ? ? ?

Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Research Project (R01)
Project #
5R01EY016200-02
Application #
7291564
Study Section
Central Visual Processing Study Section (CVP)
Program Officer
Oberdorfer, Michael
Project Start
2006-09-30
Project End
2009-08-31
Budget Start
2007-09-01
Budget End
2008-08-31
Support Year
2
Fiscal Year
2007
Total Cost
$194,201
Indirect Cost
Name
New York University
Department
Psychology
Type
Schools of Arts and Sciences
DUNS #
041968306
City
New York
State
NY
Country
United States
Zip Code
10012
Pham, Amelie; Carrasco, Marisa; Kiorpes, Lynne (2018) Endogenous attention improves perception in amblyopic macaques. J Vis 18:11
Roberts, Mariel; Ashinoff, Brandon K; Castellanos, F Xavier et al. (2018) When attention is intact in adults with ADHD. Psychon Bull Rev 25:1423-1434
Carrasco, Marisa (2018) How visual spatial attention alters perception. Cogn Process 19:77-88
Barbot, Antoine; Liu, Sirui; Kimchi, Ruth et al. (2018) Attention enhances apparent perceptual organization. Psychon Bull Rev 25:1824-1832
Jigo, Michael; Carrasco, Marisa (2018) Attention alters spatial resolution by modulating second-order processing. J Vis 18:2
Rolfs, Martin; Murray-Smith, Nicholas; Carrasco, Marisa (2018) Perceptual learning while preparing saccades. Vision Res 152:126-138
Donovan, Ian; Carrasco, Marisa (2018) Endogenous spatial attention during perceptual learning facilitates location transfer. J Vis 18:7
Cutrone, Elizabeth K; Heeger, David J; Carrasco, Marisa (2018) On spatial attention and its field size on the repulsion effect. J Vis 18:8
Dugué, Laura; Merriam, Elisha P; Heeger, David J et al. (2018) Specific Visual Subregions of TPJ Mediate Reorienting of Spatial Attention. Cereb Cortex 28:2375-2390
Yashar, Amit; White, Alex L; Fang, Wanghaoming et al. (2017) Feature singletons attract spatial attention independently of feature priming. J Vis 17:7

Showing the most recent 10 out of 67 publications