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Gepubliceerd in: Psychological Research 1/2012

01-01-2012 | Original Article

Unique sudden onsets capture attention even when observers are in feature-search mode

Auteurs: Thomas M. Spalek, Matthew R. Yanko, Paola Poiese, Hayley E. P. Lagroix

Gepubliceerd in: Psychological Research | Uitgave 1/2012

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Abstract

Two sources of attentional capture have been proposed: stimulus-driven (exogenous) and goal-oriented (endogenous). A resolution between these modes of capture has not been straightforward. Even such a clearly exogenous event as the sudden onset of a stimulus can be said to capture attention endogenously if observers operate in singleton-detection mode rather than feature-search mode. In four experiments we show that a unique sudden onset captures attention even when observers are in feature-search mode. The displays were rapid serial visual presentation (RSVP) streams of differently coloured letters with the target letter defined by a specific colour. Distractors were four #s, one of the target colour, surrounding one of the non-target letters. Capture was substantially reduced when the onset of the distractor array was not unique because it was preceded by other sets of four grey # arrays in the RSVP stream. This provides unambiguous evidence that attention can be captured both exogenously and endogenously within a single task.
Literatuur
go back to reference Bacon, W. F., & Egeth, H. (1994). Overriding stimulus-driven attentional capture. Perception & Psychophysics, 55, 485–496.CrossRef Bacon, W. F., & Egeth, H. (1994). Overriding stimulus-driven attentional capture. Perception & Psychophysics, 55, 485–496.CrossRef
go back to reference Bahrami, B., Lavie, N., & Rees, G. (2007). Attentional load modulates responses of human primary visual cortex to invisible stimuli. Current Biology, 17, 509–513.PubMedCrossRef Bahrami, B., Lavie, N., & Rees, G. (2007). Attentional load modulates responses of human primary visual cortex to invisible stimuli. Current Biology, 17, 509–513.PubMedCrossRef
go back to reference Breitmeyer, B. G. (1984). Visual masking: An integrative approach. New York: Oxford University Press. Breitmeyer, B. G. (1984). Visual masking: An integrative approach. New York: Oxford University Press.
go back to reference Breitmeyer, B. G., & Öğmen, H. (2006). Visual masking: Time slices through conscious and unconscious vision. New York: Oxford University Press. Breitmeyer, B. G., & Öğmen, H. (2006). Visual masking: Time slices through conscious and unconscious vision. New York: Oxford University Press.
go back to reference Cave, K. R., & Wolfe, J. M. (1990). Modeling the role of parallel processing in visual search. Cognitive Psychology, 22, 225–271. Cave, K. R., & Wolfe, J. M. (1990). Modeling the role of parallel processing in visual search. Cognitive Psychology, 22, 225–271.
go back to reference Chun, M. M. (1997). Temporal binding errors are redistributed in the attentional blink. Perception & Psychophysics, 59, 1191–1199.CrossRef Chun, M. M. (1997). Temporal binding errors are redistributed in the attentional blink. Perception & Psychophysics, 59, 1191–1199.CrossRef
go back to reference Chun, M. M., & Potter, M. C. (1995). A two-stage model for multiple target detection in rapid serial visual presentation. Journal of Experimental Psychology: Human Perception and Performance, 21, 109–127.PubMedCrossRef Chun, M. M., & Potter, M. C. (1995). A two-stage model for multiple target detection in rapid serial visual presentation. Journal of Experimental Psychology: Human Perception and Performance, 21, 109–127.PubMedCrossRef
go back to reference Dalton, P., & Lavie, N. (2006). Temporal attentional capture: Effects of irrelevant singletons on rapid serial visual search. Psychonomic Bulletin & Review, 13, 881–885.CrossRef Dalton, P., & Lavie, N. (2006). Temporal attentional capture: Effects of irrelevant singletons on rapid serial visual search. Psychonomic Bulletin & Review, 13, 881–885.CrossRef
go back to reference Di Lollo, V. (1980). Temporal integration in visual memory. Journal of Experimental Psychology: General, 109, 75–97.CrossRef Di Lollo, V. (1980). Temporal integration in visual memory. Journal of Experimental Psychology: General, 109, 75–97.CrossRef
go back to reference Di Lollo, V., Kawahara, J., Ghorashi, S. M. S., & Enns, J. T. (2005). The attentional blink: resource depletion or temporary loss of control? Psychological Research/Psychologische Forschung, 69, 191–200.CrossRef Di Lollo, V., Kawahara, J., Ghorashi, S. M. S., & Enns, J. T. (2005). The attentional blink: resource depletion or temporary loss of control? Psychological Research/Psychologische Forschung, 69, 191–200.CrossRef
go back to reference Du, F., & Abrams, R. A. (2006, November). Synergistic attentional effects of abrupt onsets and color singletons. Poster session presented at the 47th Annual Meeting of the Psychonomic Society, Houston, TX. Du, F., & Abrams, R. A. (2006, November). Synergistic attentional effects of abrupt onsets and color singletons. Poster session presented at the 47th Annual Meeting of the Psychonomic Society, Houston, TX.
go back to reference Folk, C. L., & Remington, R. W. (1998). Selectivity in distraction by irrelevant featural singletons: Evidence for two forms of attentional capture. Journal of Experimental Psychology: Human Perception and Performance, 24, 847–858.PubMedCrossRef Folk, C. L., & Remington, R. W. (1998). Selectivity in distraction by irrelevant featural singletons: Evidence for two forms of attentional capture. Journal of Experimental Psychology: Human Perception and Performance, 24, 847–858.PubMedCrossRef
go back to reference Folk, C. L., Remington, R. W., & Johnston, J. C. (1992). Involuntary covert orienting is contingent on attentional control settings. Journal of Experimental Psychology: Human Perception and Performance, 18, 1030–1044.PubMedCrossRef Folk, C. L., Remington, R. W., & Johnston, J. C. (1992). Involuntary covert orienting is contingent on attentional control settings. Journal of Experimental Psychology: Human Perception and Performance, 18, 1030–1044.PubMedCrossRef
go back to reference Folk, C. L., Leber, A., & Egeth, H. (2002). Made you blink! Contingent attentional capture produces a spatial blink. Perception & Psychophysics, 64, 741–753.CrossRef Folk, C. L., Leber, A., & Egeth, H. (2002). Made you blink! Contingent attentional capture produces a spatial blink. Perception & Psychophysics, 64, 741–753.CrossRef
go back to reference Folk, C. L., Leber, A. B., & Egeth, H. E. (2008). Top-down control settings and the attentional blink: evidence for non-spatial contingent capture. Visual Cognition, 16, 616–642.CrossRef Folk, C. L., Leber, A. B., & Egeth, H. E. (2008). Top-down control settings and the attentional blink: evidence for non-spatial contingent capture. Visual Cognition, 16, 616–642.CrossRef
go back to reference Jolicœur, P., & Dell’Acqua, R. (1998). The demonstration of short-term consolidation. Cognitive Psychology, 36, 138–202.PubMedCrossRef Jolicœur, P., & Dell’Acqua, R. (1998). The demonstration of short-term consolidation. Cognitive Psychology, 36, 138–202.PubMedCrossRef
go back to reference Kastner, S., & Ungerleider, L. G. (2000). Mechanisms of visual attention in the human cortex. Annual Review of Neuroscience, 23, 315–341.PubMedCrossRef Kastner, S., & Ungerleider, L. G. (2000). Mechanisms of visual attention in the human cortex. Annual Review of Neuroscience, 23, 315–341.PubMedCrossRef
go back to reference Lamy, D., Leber, A., & Egeth, H. E. (2004). Effects of task relevance and stimulus-driven salience in feature-search mode. Journal of Experimental Psychology: Human Perception and Performance, 30, 1019–1031.PubMedCrossRef Lamy, D., Leber, A., & Egeth, H. E. (2004). Effects of task relevance and stimulus-driven salience in feature-search mode. Journal of Experimental Psychology: Human Perception and Performance, 30, 1019–1031.PubMedCrossRef
go back to reference Maki, W. S., & Mebane, M. W. (2006). Attentional capture triggers an attentional blink. Psychonomic Bulletin & Review, 13, 125–131.CrossRef Maki, W. S., & Mebane, M. W. (2006). Attentional capture triggers an attentional blink. Psychonomic Bulletin & Review, 13, 125–131.CrossRef
go back to reference Michaels, C. F., & Turvey, M. T. (1979). Central sources of visual masking: Indexing structures supporting seeing at a single, brief glance. Psychological Research, 41, 1–61.CrossRef Michaels, C. F., & Turvey, M. T. (1979). Central sources of visual masking: Indexing structures supporting seeing at a single, brief glance. Psychological Research, 41, 1–61.CrossRef
go back to reference Motter, B. C. (1993). Focal attention produces spatially selective processing in visual cortical areas V1, V2, and V4 in the presence of competing stimuli. Journal of Neurophysiology, 70, 909–919.PubMed Motter, B. C. (1993). Focal attention produces spatially selective processing in visual cortical areas V1, V2, and V4 in the presence of competing stimuli. Journal of Neurophysiology, 70, 909–919.PubMed
go back to reference Raymond, J. E., Shapiro, K. L., & Arnell, K. M. (1992). Temporary suppression of visual processing in an RSVP task: An attentional blink? Journal of Experimental Psychology: Human Perception and Performance, 18, 849–860.PubMedCrossRef Raymond, J. E., Shapiro, K. L., & Arnell, K. M. (1992). Temporary suppression of visual processing in an RSVP task: An attentional blink? Journal of Experimental Psychology: Human Perception and Performance, 18, 849–860.PubMedCrossRef
go back to reference Spalek, T. M., Falcon, L. J., & Di Lollo, V. (2006). Attentional blink and attentional capture: Endogenous versus exogenous control over paying attention to two important events in close succession. Perception & Psychophysics, 68, 674–684.CrossRef Spalek, T. M., Falcon, L. J., & Di Lollo, V. (2006). Attentional blink and attentional capture: Endogenous versus exogenous control over paying attention to two important events in close succession. Perception & Psychophysics, 68, 674–684.CrossRef
go back to reference Spencer, T. J., & Shuntich, R. (1970). Evidence for an interruption theory of backward masking. Journal of Experimental Psychology, 85, 198–203.PubMedCrossRef Spencer, T. J., & Shuntich, R. (1970). Evidence for an interruption theory of backward masking. Journal of Experimental Psychology, 85, 198–203.PubMedCrossRef
go back to reference Theeuwes, J. (1992). Perceptual selectivity for color and form. Perception & Psychophysics, 51, 599–606.CrossRef Theeuwes, J. (1992). Perceptual selectivity for color and form. Perception & Psychophysics, 51, 599–606.CrossRef
go back to reference Theeuwes, J. (1994). Stimulus-driven capture and attentional set: Selective search for color and visual abrupt onset. Journal of Experimental Psychology: Human Perception and Performance, 20, 799–806.PubMedCrossRef Theeuwes, J. (1994). Stimulus-driven capture and attentional set: Selective search for color and visual abrupt onset. Journal of Experimental Psychology: Human Perception and Performance, 20, 799–806.PubMedCrossRef
go back to reference Theeuwes, J., Atchley, P., & Kramer, A. F. (2000). On the time course of top-down and bottom-up control of visual attention. In S. Monsell & J. Driver (Eds.) Control of Cognitive Processes: Attention and Performance XVIII (pp. 105–124). Cambridge: MIT Press. Theeuwes, J., Atchley, P., & Kramer, A. F. (2000). On the time course of top-down and bottom-up control of visual attention. In S. Monsell & J. Driver (Eds.) Control of Cognitive Processes: Attention and Performance XVIII (pp. 105–124). Cambridge: MIT Press.
go back to reference Treisman, A., & Sato, S. (1990). Conjunction search revisited. Journal of Experimental Psychology: Human Perception and Performance, 16, 459–478. Treisman, A., & Sato, S. (1990). Conjunction search revisited. Journal of Experimental Psychology: Human Perception and Performance, 16, 459–478.
go back to reference Wee, S., & Chua, F. K. (2004). Capturing attention when attention “blinks”. Journal of Experimental Psychology: Human Perception and Performance, 30, 598–612.PubMedCrossRef Wee, S., & Chua, F. K. (2004). Capturing attention when attention “blinks”. Journal of Experimental Psychology: Human Perception and Performance, 30, 598–612.PubMedCrossRef
go back to reference Wolfe, J. M. (2006). Guided Search 4.0: Current progress with a model of visual search. In W. Gray (Ed.), Integrated Models of Cognitive Systems (pp. 99–119). New York: Oxford. Wolfe, J. M. (2006). Guided Search 4.0: Current progress with a model of visual search. In W. Gray (Ed.), Integrated Models of Cognitive Systems (pp. 99–119). New York: Oxford.
go back to reference Yantis, S., & Jonides, J. (1984). Abrupt visual onsets and selective attention: Evidence from selective search. Journal of Experimental Psychology: Human Perception and Performance, 10, 601–621.PubMedCrossRef Yantis, S., & Jonides, J. (1984). Abrupt visual onsets and selective attention: Evidence from selective search. Journal of Experimental Psychology: Human Perception and Performance, 10, 601–621.PubMedCrossRef
Metagegevens
Titel
Unique sudden onsets capture attention even when observers are in feature-search mode
Auteurs
Thomas M. Spalek
Matthew R. Yanko
Paola Poiese
Hayley E. P. Lagroix
Publicatiedatum
01-01-2012
Uitgeverij
Springer-Verlag
Gepubliceerd in
Psychological Research / Uitgave 1/2012
Print ISSN: 0340-0727
Elektronisch ISSN: 1430-2772
DOI
https://doi.org/10.1007/s00426-011-0329-4

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