Where perception meets memory: A review of repetition priming in visual search tasks

Árni Kristjánsson1, Gianluca Campana2
1Department of Psychology, University of Iceland, Reykjavík, Iceland.
2University of Padua, Padua, Italy

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Ásgeirsson, Á. G., & Kristjánsson, Á. (2008). Episodic retrieval accounts of priming in visual search explain only a limited subset of findings on priming. Perception, 37(Suppl.), 93–94.

Bartels, A., & Zeki, S. (2000). The architecture of the color centre in the human visual brain: New results and a review. European Journal of Neuroscience, 12, 172–193.

Becker, S. I. (2008a). Can intertrial effects of features and dimensions be explained by a single theory? Journal of Experimental Psychology: Human Perception & Performance, 34, 1414–1440.

Becker, S. I. (2008b). The mechanism of priming: Episodic retrieval or priming of pop-out? Acta Psychologica, 127, 324–339.

Becker, S. I. (2008c). The stage of priming: Are intertrial repetition effects attentional or decisional? Vision Research, 48, 664–684.

Becker, S. I., & Horstmann, G. (2009). A feature-weighting account of priming in conjunction search. Attention, Perception, & Psychophysics, 71, 258–272.

Berry, C. J., Shanks, D. R., & Henson, R. N. A. (2008). A unitary signal-detection model of implicit and explicit memory. Trends in Cognitive Sciences, 12, 367–373.

Bichot, N. P., & Schall, J. D. (1999). Effects of similarity and history on neural mechanisms of visual selection. Nature Neuroscience, 2, 549–554.

Bichot, N. P., & Schall, J. D. (2002). Priming in macaque frontal cortex during pop-out visual search: Feature-based facilitation and location-based inhibition of return. Journal of Neuroscience, 22, 4675–4685.

Bravo, M. J., & Nakayama, K. (1992). The role of attention in different visual-search tasks. Perception & Psychophysics, 51, 465–472.

Brooks, D. N., & Baddeley, A. D. (1976). What can amnesic patients learn? Neuropsychologia, 14, 111–122.

Buckner, R. L., Goodman, J., Burock, M., Rotte, M., Koutstaal, W., Schacter, D. L., et al. (1998). Functional-anatomic correlates of object priming in humans revealed by rapid presentation recognition event related fMRI. Neuron, 20, 285–296.

Campana, G., & Casco, C. (2009). Repetition effects of features and spatial position: Evidence for dissociable mechanisms. Spatial Vision, 22, 325–338.

Campana, G., Cowey, A., Casco, C., Oudsen, I., & Walsh, V. (2007). Left frontal eye field remembers “where” but not “what.” Neuropsychologia, 45, 2340–2345.

Campana, G., Cowey, A., & Walsh, V. (2002). Priming of motion direction and area V5/MT: A test of perceptual memory. Cerebral Cortex, 12, 663–669.

Campana, G., Cowey, A., & Walsh, V. (2006). Visual area V5/MT remembers “what” but not “where.” Cerebral Cortex, 16, 1766–1770.

Campana, G., Pavan, A., & Casco, C. (2008). Priming of first- and second-order motion: Mechanisms and neural substrates. Neuropsychologia, 46, 393–398.

Cavanagh, P., & Mather, G. (1989). Motion: The long and short of it. Spatial Vision, 4, 103–129.

Chubb, C., & Sperling, G. (1988). Drift-balanced random stimuli: A general basis for studying non-Fourier motion perception. Journal of the Optical Society of America A, 5, 1986–2007.

Chun, M. M., & Jiang, Y. (1998). Contextual cueing: Implicit learning and memory of visual context guides spatial attention. Cognitive Psychology, 36, 28–71.

Cohen, A., & Magen, H. (1999). Intra- and cross-dimensional visual search for single-feature targets. Perception & Psychophysics, 61, 291–307.

Corbetta, M., & Shulman, G. L. (2002). Control of goal-directed and stimulus-driven attention in the brain. Nature Reviews Neuroscience, 3, 201–215.

Duncan, J. (1985). Visual search and visual attention. In M. I. Posner & O. S. M. Marin (Eds.), Attention and performance XI (pp. 85–106). Hillsdale, NJ: Erlbaum.

Edelman, J., Kristjánsson, Á., & Nakayama, K. (2007). The influence of object-relative visuomotor set on express saccades. Journal of Vision, 7, Art. 12, 1–13.

Eichenbaum, H. (1997). Declarative memory: Insights from cognitive neurobiology. Annual Review of Psychology, 48, 547–572.

Fecteau, J. H. (2007). Priming of pop-out depends upon the current goals of observers. Journal of Vision, 7, 1–11.

Fecteau, J. H., & Munoz, D. P. (2003). Exploring the consequences of the previous trial. Nature Reviews Neuroscience, 4, 435–443.

Finke, K., Bucher, L., Kerkhoff, G., Keller, I., von Rosen, F., Geyer, T., et al. (2009). Inhibitory and facilitatory location priming in patients with left-sided visual hemi-neglect. Psychological Research, 73, 177–185.

Found, A., & Müller, H. J. (1996). Searching for unknown feature targets on more than one dimension: Investigating a “dimension weighting” account. Perception & Psychophysics, 58, 88–101.

Fuggetta, G., Lanfranchi, S., & Campana, G. (2009). Attention has memory: Priming for the size of the attentional focus. Spatial Vision, 22, 147–159.

Gabrieli, J. D. E., Fleischman, D. A., Keane, M. M., Reminger, S. L., & Morrell, F. (1995). Double dissociation between memory systems underlying explicit and implicit memory in the human brain. Psychological Science, 6, 76–82.

Geng, J. J., Eger, E., Ruff, C. C., Kristjánsson, Á., Rotshtein, P., & Driver, J. (2006). On-line attentional selection from competing stimuli in opposite visual fields: Effects on human visual cortex and control processes. Journal of Neurophysiology, 96, 2601–2612.

Geyer, T., Müller, H. J., & Krummenacher, J. (2006). Cross-trial priming in visual search for singleton conjunction targets: Role of repeated target and distractor features. Perception & Psychophysics, 68, 736–749.

Geyer, T., Müller, H. J., & Krummenacher, J. (2007). Cross-trial priming of element positions in visual pop-out search is dependent on stimulus arrangement. Journal of Experimental Psychology: Human Perception & Performance, 33, 788–797.

Goodale, M. A., & Milner, A. D. (1992). Separate visual pathways for perception and action. Trends in Neurosciences, 15, 20–25.

Goolsby, B. A., & Suzuki, S. (2001). Understanding priming of colorsingleton search: Roles of attention at encoding and “retrieval.” Perception & Psychophysics, 63, 929–944.

Grill-Spector, K., Henson, R., & Martin, A. (2006). Repetition and the brain: Neural models of stimulus-specific effects. Trends in Cognitive Sciences, 10, 14–23.

Hadjikhani, N., Liu, A. K., Dale, A. M., Cavanagh, P., & Tootell, R. B. (1998). Retinotopy and color sensitivity in human visual cortical area V8. Nature Neuroscience, 1, 235–241.

Henson, R. N. A., & Rugg, M. D. (2003). Neural response suppression, hemodynamic repetition effects, and behavioural priming. Neuropsychologia, 41, 263–270.

Henson, R. [N. A.], Shallice, T., & Dolan, R. (2000). Neuroimaging evidence for dissociable forms of repetition priming. Science, 287, 1269–1272.

Hillstrom, A. P. (2000). Repetition effects in visual search. Perception & Psychophysics, 62, 800–817.

Horner, A. J., & Henson, R. N. (2008). Priming, response learning and repetition suppression. Neuropsychologia, 46, 1979–1991.

Huang, L., Holcombe, A. O., & Pashler, H. (2004). Repetition priming in visual search: Episodic retrieval, not feature priming. Memory & Cognition, 32, 12–20.

Huang, L., & Pashler, H. (2005). Expectation and repetition effects in searching for featural singletons in very brief displays. Perception & Psychophysics, 67, 150–157.

Ivry, R. B., & Cohen, A. (1990). Discrimination of short- and longrange apparent motion in visual search. Journal of Experimental Psychology: Human Perception & Performance, 16, 317–331.

Kourtzi, Z., & Kanwisher, N. (2001). The human lateral occipital complex represents perceived object shape. Science, 24, 1506–1509.

Kristjánsson, A. (2001). Increased sensitivity to speed changes during adaptation to first-order, but not to second-order motion. Vision Research, 41, 1825–1832.

Kristjánsson, Á. (2006a). Rapid learning in attention shifts: A review. Visual Cognition, 13, 324–362.

Kristjánsson, Á. (2006b). Simultaneous priming along multiple feature dimensions in a visual search task. Vision Research, 46, 2554–2570.

Kristjánsson, Á. (2009). Independent and additive repetition priming of motion direction and color in visual search. Psychological Research, 73, 158–166.

Kristjánsson, Á., Bjarnason, A., Hjaltason, Á. B., & Stefánsdóttir, B. G. (2009). Priming of luminance-defined motion direction in visual search. Attention, Perception, & Psychophysics, 71, 1027–1041.

Kristjánsson, Á., & Driver, J. (2008). Priming in visual search: Separating the effects of target repetition, distractor repetition and role-reversal. Vision Research, 48, 1217–1232.

Kristjánsson, Á., Ingvarsdóttir, Á., & Teitsdóttir, U. D. (2008). Object- and feature-based priming in visual search. Psychonomic Bulletin & Review, 15, 378–384.

Kristjánsson, Á., & Nakayama, K. (2003). A primitive memory system for the deployment of transient attention. Perception & Psychophysics, 65, 711–724.

Kristjánsson, Á., Vuilleumier, P., Malhotra, P., Husain, M., & Driver, J. (2005). Priming of color and position during visual search in unilateral spatial neglect. Journal of Cognitive Neuroscience, 17, 859–873.

Kristjánsson, Á., Vuilleumier, P., Schwartz, S., Macaluso, E., & Driver, J. (2007). Neural basis for priming of pop-out during visual search revealed with fMRI. Cerebral Cortex, 17, 1612–1624.

Kristjánsson, Á., Wang, D., & Nakayama, K. (2002). The role of priming in conjunctive visual search. Cognition, 85, 37–52.

Lamy, D., Antebi, C., Aviani, N., & Carmel, T. (2008). Priming of pop-out provides reliable measures of target activation and distractor inhibition in selective attention. Vision Research, 48, 30–41.

Lamy, D., Bar-Anan, Y., & Egeth, H. E. (2008). The role of within-dimension singleton priming in visual search. Journal of Experimental Psychology: Human Perception & Performance, 34, 268–285.

Lamy, D., Carmel, T., Egeth, H. E., & Leber, A. B. (2006). Effects of search mode and intertrial priming on singleton search. Perception & Psychophysics, 68, 919–932.

Leonard, C. J., & Egeth, H. E. (2008). Attentional guidance in singleton search: An examination of top-down, bottom-up, and intertrial factors. Visual Cognition, 8, 1078–1091.

Magnussen, S., & Greenlee, M. W. (1999). The psychophysics of perceptual memory. Psychological Research, 62, 81–92.

Maljkovic, V., & Nakayama, K. (1994). Priming of pop-out: I. Role of features. Memory & Cognition, 22, 657–672.

Maljkovic, V., & Nakayama, K. (1996). Priming of pop-out: II. The role of position. Perception & Psychophysics, 58, 977–991.

Marangolo, P., Di Pace, E., Rafal, R., & Scabini, D. (1998). Effects of parietal lesions in humans on color and location priming. Journal of Cognitive Neuroscience, 10, 704–716.

McBride, J., Leonards, U., & Gilchrist, I. D. (2009). Flexible target representations underlie repetition priming in visual search. Visual Cognition, 17, 655–678.

McPeek, R. M., Maljkovic, V., & Nakayama, K. (1999). Saccades require focal attention and are facilitated by a short-term memory system. Vision Research, 39, 1555–1566.

Meeter, M., & Olivers, C. N. L. (2006). Intertrial priming stemming from ambiguity: A new account of priming in visual search. Visual Cognition, 13, 1–28.

Muggleton, N., Juan, C., Cowey, A., & Walsh, V. (2003). Human frontal eye fields and visual search. Journal of Neurophysiology, 89, 3340–3343.

Müller, H. J., Heller, D., & Ziegler, J. (1995). Visual search for singleton feature targets within and across feature dimensions. Perception & Psychophysics, 57, 1–17.

Müller, H. J., Krummenacher, J., & Heller, D. (2004). Dimensionspecific intertrial facilitation in visual search for pop-out targets: Evidence for a top-down modulable visual short-term memory effect. Visual Cognition, 11, 577–602.

Müller, H. J., Reimann, B., & Krummenacher, J. (2003). Visual search for singleton feature targets across dimensions: Stimulus and expectancy-driven effects in dimensional weighting. Journal of Experimental Psychology: Human Perception & Performance, 29, 1021–1035.

Olivers, C. N. L., & Meeter, M. (2006). On the dissociation between compound and present/absent tasks in visual search: Intertrial priming is ambiguity driven. Visual Cognition, 13, 1–28.

Olivers, C. N. L., & Meeter, M. (2008). Feature priming in visual search does not depend on the dimensional context. Visual Cognition, 16, 785–803.

O’Shea, J., Muggleton, N. G., Cowey, A., & Walsh, V. (2007). Human frontal eye fields and spatial priming of pop-out. Journal of Cognitive Neurosciences, 19, 1140–1151.

Poldrack, R. A., & Gabrieli, J. D. E. (2001). Characterizing the neural mechanisms of skill learning and repetition priming: Evidence from mirror reading. Brain, 124, 67–82.

Poldrack, R. A., & Packard, M. G. (2003). Competition among multiple memory systems: Converging evidence from animal and human brain studies. Neuropsychologia, 41, 245–251.

Pollmann, S., Weidner, R., Müller, H. J., Maertens, M., & von Cramon, D. Y. (2006). Selective and interactive neural correlates of visual dimension changes and response changes. NeuroImage, 30, 254–265.

Pollmann, S., Weidner, R., Müller, H. J., & von Cramon, D. Y. (2000). A fronto-posterior network involved in visual dimension changes. Journal of Cognitive Neuroscience, 12, 480–494.

Ruff, C. C., Kristjánsson, A., & Driver, J. (2007). Readout from iconic memory and selective spatial attention involve similar neural processes. Psychological Science, 18, 901–909.

Saevarsson, S., Jóelsdóttir, S., Hjaltason, H., & Kristjánsson, Á. (2008). Repetition of distractor sets improves visual search performance in hemispatial neglect. Neuropsychologia, 45, 1161–1169.

Schacter, D. L., & Badgaiyan, R. D. (2001). Neuroimaging of priming: New perspectives on implicit and explicit memory. Current Directions in Psychological Science, 10, 1–4.

Schacter, D. L., & Buckner, R. L. (1998). Priming and the brain. Neuron, 20, 185–195.

Schacter, D. L., Wig, G. S., & Stevens, W. D. (2007). Reductions in cortical activity during priming. Current Opinion in Neurobiology, 17, 171–176.

Shimamura, A. P., & Squire, L. R. (1984). Paired-associate learning and priming effects in amnesia: A neuropsychological study. Journal of Experimental Psychology: General, 113, 556–570.

Sigurdardottir, H. M., Kristjánsson, Á., & Driver, J. (2008). Repetition streaks increase perceptual sensitivity in brief visual search displays. Visual Cognition, 16, 643–658.

Summerfield, C., Trittschuh, E. H., Monti, J. M., Mesulam, M. M., & Egner, T. (2008). Neural repetition suppression reflects fulfilled perceptual expectations. Nature Neuroscience, 11, 1004–1006.

Theeuwes, J., Reimann, B., & Mortier, K. (2006). Visual search for featural singletons: No top-down modulation, only bottom-up priming. Visual Cognition, 14, 466–489.

Tootell, R. B., Reppas, J. B., Kwong, K. K., Malach, R., Born, R. T., Brady, T. J., et al. (1995). Functional analysis of human MT and related visual cortical areas using magnetic resonance imaging. Journal of Neuroscience, 15, 3215–3230.

Treisman, A. [M.] (1992). Perceiving and re-perceiving objects. American Psychologist, 47, 862–875.

Treisman, A. M., & Gelade, G. (1980). A feature-integration theory of attention. Cognitive Psychology, 12, 97–136.

Treisman, A. [M.], & Sato, S. (1990). Conjunction search revisited. Journal of Experimental Psychology: Human Perception & Performance, 16, 459–478.

Tulving, E., & Schacter, D. L. (1990). Priming and human memory systems. Science, 247, 301–306.

Turk-Browne, N. B., Yi, D. J., & Chun, M. M. (2006). Linking implicit and explicit memory: Common encoding factors and shared representations. Neuron, 49, 917–927.

Ungerleider, L. G., & Mishkin, M. (1982). Two cortical visual systems. In D. J. Ingle, M. A. Goodale, & R. J. W. Mansfield (Eds.), Analysis of visual behavior (pp. 549–586). Cambridge, MA: MIT Press.

Vogel, E. K., Woodman, G. F., & Luck, S. J. (2001). Storage of features, conjunctions, and objects in visual working memory. Journal of Experimental Psychology: Human Perception & Performance, 27, 92–114.

Vuilleumier, P., Schwartz, S., Duhoux, S., Dolan, R. J., & Driver, J. (2005). Selective attention modulates neural substrates of repetition priming and “implicit” visual memory: Suppressions and enhancements revealed by fMRI. Journal of Cognitive Neuroscience, 17, 1245–1260.

Walsh, V., Le Mare, C., Blaimire, A., & Cowey, A. (2000). Normal discrimination performance accompanied by priming deficits in monkeys with V4 or TEO lesions. NeuroReport, 11, 1459–1462.

Wang, D., Kristjánsson, Á., & Nakayama, K. (2005). Efficient visual search without top-down or bottom-up guidance. Perception & Psychophysics, 67, 239–253.

Warrington, E. K., & Weiskrantz, L. (1968). New method of testing long-term retention with special reference to amnesic patients. Nature, 217, 972–974.

Wig, G. S., Grafton, S. T., Demos, E., & Kelley, W. M. (2005). Reductions in neural activity underlie behavioral components of repetition priming. Nature Neuroscience, 8, 1228–1233.

Wolfe, J. M. (1994). Guided Search 2.0: A revised model of visual search. Psychonomic Bulletin & Review, 1, 202–238.

Wolfe, J. M., Butcher, S. J., Lee, C., & Hyle, M. (2003). Changing your mind: On the contributions of top-down and bottom-up guidance in visual search for feature singletons. Journal of Experimental Psychology: Human Perception & Performance, 29, 483–502.

Wolfe, J. M., Friedman-Hill, S. R., & Bilsky, A. B. (1994). Parallel processing of part-whole information in visual search tasks. Perception & Psychophysics, 55, 537–550.

Wolfe, J. M., Horowitz, T. S., Kenner, N., Hyle, M., & Vasan, N. (2004). How fast can you change your mind? The speed of top-down guidance in visual search. Vision Research, 44, 1411–1426.

Xu, Y. (2002a). Encoding color and shape from different parts of an object in visual short-term memory. Perception & Psychophysics, 64, 1260–1280.

Xu, Y. (2002b). Feature integration across parts in visual search. Perception, 31, 1335–1347.

Yantis, S., & Jonides, J. (1984). Abrupt visual onsets and selective attention: Evidence from visual search. Journal of Experimental Psychology: Human Perception & Performance, 10, 601–621.

Yoshida, T., Tsubomi, H., Osaka, M., & Osaka, N. (2003). Priming of pop-out: An fMRI study. Perception, 32(Suppl.), 93c.