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Gepubliceerd in: Psychological Research 5/2019

22-09-2017 | Original Article

The exogenous and endogenous control of attentional focusing

Auteurs: Lisa N. Jefferies, James T. Enns, Vincent Di Lollo

Gepubliceerd in: Psychological Research | Uitgave 5/2019

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Abstract

Selective visual attention involves prioritizing both the location (orienting) and distribution (focusing) of processing. To date, much more research has examined attentional orienting than focusing. One of the most well-established findings is that orienting can be exogenous, as when a unique change in luminance draws attention to a spatial location (e.g., Theeuwes in Atten Percept Psychophys 51:599–606, 1992; Yantis and Jonides in J Exp Psychol Hum Percept Perform 10:601, 1984), and endogenous, as when a red distractor shape diverts attention when one is looking for a red target (e.g., Bacon and Egeth in Percept Psychophys 55:485–496, 1994; Folk et al. in J Exp Psychol Hum Percept Perform 18:1030, 1992). Here we ask whether attentional focusing—the broadening and contracting of prioritized processing—is influenced by the same two factors. Our methodology involved a dual-stream attentional blink task; participants monitored two spatially separated streams of items for two targets that could appear unpredictably either in the same stream or in opposite streams. The spatial distribution of attention was assessed by examining second-target accuracy in relation to inter-target lag and target location (same or opposite streams). In Experiment 1, we found that attentional contracting was more rapid when the targets differed in luminance from the distractor items. In Experiments 2 and 3, we found that the rate of attentional contracting was slower when there were task-relevant distractors in the stream opposite the first target. These results indicate that the rate of attentional focusing, like orienting, can be modulated by both exogenous and endogenous mechanisms.
Voetnoten
1
Several previous studies have provided evidence of such contracting of attention to the T1-stream (e.g., Jefferies et al., 2007, 2015; Jefferies & Di Lollo, 2009; Visser, Bischof, & Di Lollo, 1999). It is assumed that this contracting occurs primarily to optimize T1 identification accuracy. There is also evidence that T1 can be localized prior to being identified (Ghorashi, Jefferies, Kawahara, & Watanabe, 2008; Ghorashi, Enns, Klein, & Di Lollo, 2010), and that attention is deployed to the target’s location even when the target’s identity cannot be reported (Woodman & Luck, 2003).
 
2
We thank Elkan Akyürek (personal communication, June 2017) for suggesting temporal integration as a principle on which to explain the present results.
 
Literatuur
go back to reference Akyürek, E. G., Eshuis, S. A., Nieuwenstein, M. R., Saija, J. D., Başkent, D., & Hommel, B. (2012). Temporal target integration underlies performance at lag 1 in the attentional blink. Journal of Experimental Psychology: Human Perception and Performance, 38, 1448. Akyürek, E. G., Eshuis, S. A., Nieuwenstein, M. R., Saija, J. D., Başkent, D., & Hommel, B. (2012). Temporal target integration underlies performance at lag 1 in the attentional blink. Journal of Experimental Psychology: Human Perception and Performance, 38, 1448.
go back to reference Awh, E., & Pashler, H. (2000). Evidence for split attentional foci. Journal of Experimental Psychology: Human Perception and Performance, 26(2), 834–846.PubMed Awh, E., & Pashler, H. (2000). Evidence for split attentional foci. Journal of Experimental Psychology: Human Perception and Performance, 26(2), 834–846.PubMed
go back to reference Bacon, W. F., & Egeth, H. E. (1994). Overriding stimulus-driven attentional capture. Perception & Psychophysics, 55, 485–496.CrossRef Bacon, W. F., & Egeth, H. E. (1994). Overriding stimulus-driven attentional capture. Perception & Psychophysics, 55, 485–496.CrossRef
go back to reference Barriopedro, M. I., & Botella, J. (1998). New evidence for the zoom lens model using the RSVP technique. Perception & Psychophysics, 60, 1406–1414.CrossRef Barriopedro, M. I., & Botella, J. (1998). New evidence for the zoom lens model using the RSVP technique. Perception & Psychophysics, 60, 1406–1414.CrossRef
go back to reference Bay, M., & Wyble, B. (2014). The benefit of attention is not diminished when distributed over two simultaneous cues. Attention, Perception, & Psychophysics, 76, 1287–1297.CrossRef Bay, M., & Wyble, B. (2014). The benefit of attention is not diminished when distributed over two simultaneous cues. Attention, Perception, & Psychophysics, 76, 1287–1297.CrossRef
go back to reference Benso, F., Turatto, M., Mascetti, G. G., & Umiltà, C. (1998). The time course of attentional focusing. European Journal of Cognitive Psychology, 10, 378–388. Benso, F., Turatto, M., Mascetti, G. G., & Umiltà, C. (1998). The time course of attentional focusing. European Journal of Cognitive Psychology, 10, 378–388.
go back to reference Breitmeyer, B. G., Ehrenstein, A., Pritchard, K., Hiscock, M., & Crisan, J. (1999). The roles of location specificity and masking mechanisms in the attentional blink. Attention, Perception, & Psychophysics, 61, 798–809.CrossRef Breitmeyer, B. G., Ehrenstein, A., Pritchard, K., Hiscock, M., & Crisan, J. (1999). The roles of location specificity and masking mechanisms in the attentional blink. Attention, Perception, & Psychophysics, 61, 798–809.CrossRef
go back to reference Breitmeyer, B. G., Hoar, W. S., Randall, D. J., & Conte, F. P. (1984). Visual masking: An integrative approach. Oxford: Clarendon Press. Breitmeyer, B. G., Hoar, W. S., Randall, D. J., & Conte, F. P. (1984). Visual masking: An integrative approach. Oxford: Clarendon Press.
go back to reference Castiello, U., & Umiltà, C. (1990). Size of the attentional focus and efficiency of processing. Acta Psychologica, 73, 195–209.CrossRefPubMed Castiello, U., & Umiltà, C. (1990). Size of the attentional focus and efficiency of processing. Acta Psychologica, 73, 195–209.CrossRefPubMed
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.PubMed 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.PubMed
go back to reference Di Lollo, V., Enns, J. T., Yantis, S., & Dechief, L. G. (2000). Response latencies to the onset and offset of visual stimuli. Attention, Perception, & Psychophysics, 62, 218–225.CrossRef Di Lollo, V., Enns, J. T., Yantis, S., & Dechief, L. G. (2000). Response latencies to the onset and offset of visual stimuli. Attention, Perception, & Psychophysics, 62, 218–225.CrossRef
go back to reference Egeth, H. (1977). Attention and preattention. Psychology of Learning and Motivation, 11, 277–320.CrossRef Egeth, H. (1977). Attention and preattention. Psychology of Learning and Motivation, 11, 277–320.CrossRef
go back to reference Egeth, H. E., & Yantis, S. (1997). Visual attention: Control, representation, and time course. Annual Review of Psychology, 48, 269–297.CrossRefPubMed Egeth, H. E., & Yantis, S. (1997). Visual attention: Control, representation, and time course. Annual Review of Psychology, 48, 269–297.CrossRefPubMed
go back to reference Eimer, M., & Grubert, A. (2014). Spatial attention can be allocated rapidly and in parallel to new visual objects. Current Biology, 24, 193–198.CrossRefPubMed Eimer, M., & Grubert, A. (2014). Spatial attention can be allocated rapidly and in parallel to new visual objects. Current Biology, 24, 193–198.CrossRefPubMed
go back to reference Eimer, M., & Kiss, M. (2008). Involuntary attentional capture is determined by task set: Evidence from event-related brain potentials. Journal of Cognitive Neuroscience, 20, 1423–1433.CrossRefPubMedPubMedCentral Eimer, M., & Kiss, M. (2008). Involuntary attentional capture is determined by task set: Evidence from event-related brain potentials. Journal of Cognitive Neuroscience, 20, 1423–1433.CrossRefPubMedPubMedCentral
go back to reference Eriksen, C. W., & St. James, J. D. (1986). Visual attention within and around the field of focal attention: A zoom lens model. Perception & Psychophysics, 42, 225–240.CrossRef Eriksen, C. W., & St. James, J. D. (1986). Visual attention within and around the field of focal attention: A zoom lens model. Perception & Psychophysics, 42, 225–240.CrossRef
go back to reference Eriksen, C. W., & Yeh, Y-y. (1985). Allocation of attention in the visual field. Journal of Experimental Psychology: Human Perception and Performance, 11, 583–597.PubMed Eriksen, C. W., & Yeh, Y-y. (1985). Allocation of attention in the visual field. Journal of Experimental Psychology: Human Perception and Performance, 11, 583–597.PubMed
go back to reference Facoetti, A., Lorusso, M. L., Paganoni, P., Cattaneo, C., Galli, R., & Mascetti, G. G. (2003). The time course of attentional focusing in dyslexic and normally reading children. Brain and Cognition, 53, 181–184.CrossRefPubMed Facoetti, A., Lorusso, M. L., Paganoni, P., Cattaneo, C., Galli, R., & Mascetti, G. G. (2003). The time course of attentional focusing in dyslexic and normally reading children. Brain and Cognition, 53, 181–184.CrossRefPubMed
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.PubMed 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.PubMed
go back to reference Folk, C. L., Remington, R. W., & Wright, J. H. (1994). The structure of attentional control: contingent attentional capture by apparent motion, abrupt onset, and color. Journal of Experimental Psychology: Human Perception and Performance, 20, 317.PubMed Folk, C. L., Remington, R. W., & Wright, J. H. (1994). The structure of attentional control: contingent attentional capture by apparent motion, abrupt onset, and color. Journal of Experimental Psychology: Human Perception and Performance, 20, 317.PubMed
go back to reference Ghorashi, S., Enns, J. T., Klein, R. M., & Di Lollo, V. (2010). Spatial selection and target identification are separable processes in visual search. Journal of Vision, 10(3), 7.CrossRefPubMed Ghorashi, S., Enns, J. T., Klein, R. M., & Di Lollo, V. (2010). Spatial selection and target identification are separable processes in visual search. Journal of Vision, 10(3), 7.CrossRefPubMed
go back to reference Ghorashi, S. M. S., Jefferies, L. N., Kawahara, J.-I., & Watanabe, K. (2008). Does attention accompany the conscious awareness of both location and identity of an object. Psyche, 14, 1–13. Ghorashi, S. M. S., Jefferies, L. N., Kawahara, J.-I., & Watanabe, K. (2008). Does attention accompany the conscious awareness of both location and identity of an object. Psyche, 14, 1–13.
go back to reference Ghorashi, S. M., Zuvic, S. M., Visser, T. A., & Di Lollo, V. (2003). Focal distraction: spatial shifts of attentional focus are not required for contingent capture. Journal of Experimental Psychology: Human Perception and Performance, 29, 78.PubMed Ghorashi, S. M., Zuvic, S. M., Visser, T. A., & Di Lollo, V. (2003). Focal distraction: spatial shifts of attentional focus are not required for contingent capture. Journal of Experimental Psychology: Human Perception and Performance, 29, 78.PubMed
go back to reference Greenwood, P. M., Parasuraman, P., & Haxby, J. V. (1993). Changes in visuospatial attention over the adult lifespan. Neuropsychologia, 31, 471–485.CrossRefPubMed Greenwood, P. M., Parasuraman, P., & Haxby, J. V. (1993). Changes in visuospatial attention over the adult lifespan. Neuropsychologia, 31, 471–485.CrossRefPubMed
go back to reference Hawkins, H. L., Shafto, M. G., & Richardson, K. (1988). Effects of target luminance and cue validity on the latency of visual detection. Perception & Psychophysics, 44(5), 484–492.CrossRef Hawkins, H. L., Shafto, M. G., & Richardson, K. (1988). Effects of target luminance and cue validity on the latency of visual detection. Perception & Psychophysics, 44(5), 484–492.CrossRef
go back to reference Hommel, B., & Akyürek, E. G. (2005). Lag-1 sparing in the attentional blink: Benefits and costs of integrating two events into a single episode. The Quarterly Journal of Experimental Psychology Section A, 58, 1415–1433.CrossRef Hommel, B., & Akyürek, E. G. (2005). Lag-1 sparing in the attentional blink: Benefits and costs of integrating two events into a single episode. The Quarterly Journal of Experimental Psychology Section A, 58, 1415–1433.CrossRef
go back to reference Jans, B., Peters, J. C., & De Weerd, P. (2010). Visual spatial attention to multiple locations at once: The jury is still out. Psychological Review, 117, 637–684.CrossRefPubMed Jans, B., Peters, J. C., & De Weerd, P. (2010). Visual spatial attention to multiple locations at once: The jury is still out. Psychological Review, 117, 637–684.CrossRefPubMed
go back to reference Jefferies, L. N., & Di Lollo, V. (2009). Linear changes in the spatial extent of the focus of attention across time. Journal of Experimental Psychology: Human Perception and Performance, 35, 1020–1031.PubMed Jefferies, L. N., & Di Lollo, V. (2009). Linear changes in the spatial extent of the focus of attention across time. Journal of Experimental Psychology: Human Perception and Performance, 35, 1020–1031.PubMed
go back to reference Jefferies, L. N., & Di Lollo, V. (2015). When can spatial attention be deployed in the form of an annulus? Attention, Perception, & Psychophysics, 77, 413–422.CrossRef Jefferies, L. N., & Di Lollo, V. (2015). When can spatial attention be deployed in the form of an annulus? Attention, Perception, & Psychophysics, 77, 413–422.CrossRef
go back to reference Jefferies, L. N., Enns, J. T., & Di Lollo, V. (2014a). The flexible focus: Whether spatial attention is unitary or divided depends on observer goals. Journal of Experimental Psychology: Human Perception and Performance, 40, 465.PubMed Jefferies, L. N., Enns, J. T., & Di Lollo, V. (2014a). The flexible focus: Whether spatial attention is unitary or divided depends on observer goals. Journal of Experimental Psychology: Human Perception and Performance, 40, 465.PubMed
go back to reference Jefferies, L. N., Ghorashi, S., Kawahara, J-i, & Di Lollo, V. (2007). Ignorance is bliss: The role of observer expectation in dynamic spatial tuning of the attentional focus. Perception & Psychophysics, 69, 1162–1174.CrossRef Jefferies, L. N., Ghorashi, S., Kawahara, J-i, & Di Lollo, V. (2007). Ignorance is bliss: The role of observer expectation in dynamic spatial tuning of the attentional focus. Perception & Psychophysics, 69, 1162–1174.CrossRef
go back to reference Jefferies, L. N., Gmeindl, L., & Yantis, S. (2014b). Attending to illusory differences in object size. Attention, Perception, & Psychophysics, 76, 1393–1402.CrossRef Jefferies, L. N., Gmeindl, L., & Yantis, S. (2014b). Attending to illusory differences in object size. Attention, Perception, & Psychophysics, 76, 1393–1402.CrossRef
go back to reference Jefferies, L.N., & Witt, J.B. First unitary, then divided: The temporal dynamics of dividing attention (under review). Jefferies, L.N., & Witt, J.B. First unitary, then divided: The temporal dynamics of dividing attention (under review).
go back to reference Jefferies, L. N., Roggeveen, A. B., Enns, J. T., Bennett, P. J., Sekuler, A. B., & Di Lollo, V. (2015). On the time course of attentional focusing in older adults. Psychological Research, 79, 28–41.CrossRefPubMed Jefferies, L. N., Roggeveen, A. B., Enns, J. T., Bennett, P. J., Sekuler, A. B., & Di Lollo, V. (2015). On the time course of attentional focusing in older adults. Psychological Research, 79, 28–41.CrossRefPubMed
go back to reference Jonides, J. (1983). Further toward a model of the mind’s eye’s movement. Bulletin of the Psychonomic Society, 21(4), 247–250.CrossRef Jonides, J. (1983). Further toward a model of the mind’s eye’s movement. Bulletin of the Psychonomic Society, 21(4), 247–250.CrossRef
go back to reference Jonides, J., & Yantis, S. (1988). Uniqueness of abrupt visual onset in capturing attention. Perception & Psychophysics, 43, 346–354.CrossRef Jonides, J., & Yantis, S. (1988). Uniqueness of abrupt visual onset in capturing attention. Perception & Psychophysics, 43, 346–354.CrossRef
go back to reference Kawahara, J. I., & Yamada, Y. (2006). Two noncontiguous locations can be attended concurrently: Evidence from the attentional blink. Psychonomic Bulletin & Review, 13, 594–599.CrossRef Kawahara, J. I., & Yamada, Y. (2006). Two noncontiguous locations can be attended concurrently: Evidence from the attentional blink. Psychonomic Bulletin & Review, 13, 594–599.CrossRef
go back to reference LaBerge, D. (1983). Spatial extent of attention to letters and words. Journal of Experimental Psychology: Human Perception and Performance, 9, 371.PubMed LaBerge, D. (1983). Spatial extent of attention to letters and words. Journal of Experimental Psychology: Human Perception and Performance, 9, 371.PubMed
go back to reference Lit, A., Young, R. H., & Shaffer, M. (1971). Simple time reaction as a function of luminance for various wavelengths. Attention, Perception, & Psychophysics, 10(6), 397–399.CrossRef Lit, A., Young, R. H., & Shaffer, M. (1971). Simple time reaction as a function of luminance for various wavelengths. Attention, Perception, & Psychophysics, 10(6), 397–399.CrossRef
go back to reference Lunau, R., & Olivers, C. N. (2010). The attentional blink and lag 1 sparing are nonspatial. Attention, Perception & Psychophysics, 72, 317–325.CrossRef Lunau, R., & Olivers, C. N. (2010). The attentional blink and lag 1 sparing are nonspatial. Attention, Perception & Psychophysics, 72, 317–325.CrossRef
go back to reference Maringelli, F., & Umiltà, C. (1998). The control of the attentional focus. European Journal of Cognitive Psychology, 10, 225–246.CrossRef Maringelli, F., & Umiltà, C. (1998). The control of the attentional focus. European Journal of Cognitive Psychology, 10, 225–246.CrossRef
go back to reference McMains, S. A., & Somers, D. C. (2004). Multiple spotlights of attentional selection in human visual cortex. Neuron, 42, 677–686.CrossRefPubMed McMains, S. A., & Somers, D. C. (2004). Multiple spotlights of attentional selection in human visual cortex. Neuron, 42, 677–686.CrossRefPubMed
go back to reference Müller, M. M., Malinowski, P., Gruber, T., & Hillyard, S. A. (2003). Sustained division of the attentional spotlight. Nature, 424, 309–312.CrossRefPubMed Müller, M. M., Malinowski, P., Gruber, T., & Hillyard, S. A. (2003). Sustained division of the attentional spotlight. Nature, 424, 309–312.CrossRefPubMed
go back to reference Posner, M. I. (1980). Orienting of attention. Quarterly Journal of Experimental Psychology, 32, 3–25.CrossRefPubMed Posner, M. I. (1980). Orienting of attention. Quarterly Journal of Experimental Psychology, 32, 3–25.CrossRefPubMed
go back to reference Posner, M. I., & Cohen, Y. (1984). Components of visual orienting. Attention and Performance X: Control of Language Processes, 32, 531–556. Posner, M. I., & Cohen, Y. (1984). Components of visual orienting. Attention and Performance X: Control of Language Processes, 32, 531–556.
go back to reference Posner, M. I., & Petersen, S. E. (1990). The attention system of the human brain. Annual Review of Neuroscience, 13(1), 25–42.CrossRefPubMed Posner, M. I., & Petersen, S. E. (1990). The attention system of the human brain. Annual Review of Neuroscience, 13(1), 25–42.CrossRefPubMed
go back to reference Posner, M. I., Petersen, S. E., Fox, P. T., & Raichle, M. E. (1988). Localization of cognitive operations in the human brain. Science, 240(4859), 1627.CrossRefPubMed Posner, M. I., Petersen, S. E., Fox, P. T., & Raichle, M. E. (1988). Localization of cognitive operations in the human brain. Science, 240(4859), 1627.CrossRefPubMed
go back to reference Posner, M. I., Sheese, B. E., Odludaş, Y., & Tang, Y. (2006). Analyzing and shaping human attentional networks. Neural Networks, 19, 1422–1429.CrossRefPubMed Posner, M. I., Sheese, B. E., Odludaş, Y., & Tang, Y. (2006). Analyzing and shaping human attentional networks. Neural Networks, 19, 1422–1429.CrossRefPubMed
go back to reference Posner, M. I., Snyder, C. R., & Davidson, B. J. (1980). Attention and the detection of signals. Journal of Experimental Psychology: General, 109, 160.CrossRef Posner, M. I., Snyder, C. R., & Davidson, B. J. (1980). Attention and the detection of signals. Journal of Experimental Psychology: General, 109, 160.CrossRef
go back to reference Potter, M. C., Chun, M. M., Banks, B. S., & Muckenhoupt, M. (1998). Two attentional deficits in serial target search: The visual attentional blink and an amodal task-switch deficit. Journal of Experimental Psychology. Learning, Memory, and Cognition, 24, 979–992.CrossRefPubMed Potter, M. C., Chun, M. M., Banks, B. S., & Muckenhoupt, M. (1998). Two attentional deficits in serial target search: The visual attentional blink and an amodal task-switch deficit. Journal of Experimental Psychology. Learning, Memory, and Cognition, 24, 979–992.CrossRefPubMed
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.PubMed 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.PubMed
go back to reference Remington, R. W., Johnston, J. C., & Yantis, S. (1992). Involuntary attentional capture by abrupt onsets. Attention, Perception, & Psychophysics, 51, 279–290.CrossRef Remington, R. W., Johnston, J. C., & Yantis, S. (1992). Involuntary attentional capture by abrupt onsets. Attention, Perception, & Psychophysics, 51, 279–290.CrossRef
go back to reference Ronconi, L., Gori, S., Ruffino, M., Molteni, M., & Facoetti, A. (2012). Zoom-out attentional impairment in children with autism spectrum disorder. Cortex, 49, 1–9. Ronconi, L., Gori, S., Ruffino, M., Molteni, M., & Facoetti, A. (2012). Zoom-out attentional impairment in children with autism spectrum disorder. Cortex, 49, 1–9.
go back to reference Shih, S. I. (2000). Recall of two visual targets embedded in RSVP streams of distractors depends on their temporal and spatial relationship. Perception & Psychophysics, 62, 1348–1355.CrossRef Shih, S. I. (2000). Recall of two visual targets embedded in RSVP streams of distractors depends on their temporal and spatial relationship. Perception & Psychophysics, 62, 1348–1355.CrossRef
go back to reference Spalek, T. M., Lagroix, H. E., Yanko, M. R., & Di Lollo, V. (2012). Perception of temporal order is impaired during the time course of the attentional blink. Journal of Experimental Psychology: Human Perception and Performance, 38, 402. Spalek, T. M., Lagroix, H. E., Yanko, M. R., & Di Lollo, V. (2012). Perception of temporal order is impaired during the time course of the attentional blink. Journal of Experimental Psychology: Human Perception and Performance, 38, 402.
go back to reference Theeuwes, J. (1992). Perceptual selectivity for color and form. Attention, Perception, & Psychophysics, 51, 599–606.CrossRef Theeuwes, J. (1992). Perceptual selectivity for color and form. Attention, Perception, & Psychophysics, 51, 599–606.CrossRef
go back to reference Visser, T. A. W., Bischof, W. F., & Di Lollo, V. (1999a). Attentional switching in spatial and non-spatial domains: evidence from the attentional blink. Psychological Bulletin, 125, 458–469.CrossRef Visser, T. A. W., Bischof, W. F., & Di Lollo, V. (1999a). Attentional switching in spatial and non-spatial domains: evidence from the attentional blink. Psychological Bulletin, 125, 458–469.CrossRef
go back to reference Visser, T. A., Zuvic, S. M., Bischof, W. F., & Di Lollo, V. (1999b). The attentional blink with targets in different spatial locations. Psychonomic Bulletin & Review, 6, 432–436.CrossRef Visser, T. A., Zuvic, S. M., Bischof, W. F., & Di Lollo, V. (1999b). The attentional blink with targets in different spatial locations. Psychonomic Bulletin & Review, 6, 432–436.CrossRef
go back to reference Weichselgartner, E., & Sperling, G. (1987). Dynamics of automatic and controlled visual attention. Science, 238, 778–781.CrossRefPubMed Weichselgartner, E., & Sperling, G. (1987). Dynamics of automatic and controlled visual attention. Science, 238, 778–781.CrossRefPubMed
go back to reference Woodman, G. F., & Luck, S. J. (2003). Serial deployment of attention during visual search. Journal of Experimental Psychology: Human Perception and Performance, 29(1), 121.PubMed Woodman, G. F., & Luck, S. J. (2003). Serial deployment of attention during visual search. Journal of Experimental Psychology: Human Perception and Performance, 29(1), 121.PubMed
go back to reference Woodworth, R. S., & Schlosberg, H. (1954). Experimental Psychology. New Delhi: Oxford & IBH. Woodworth, R. S., & Schlosberg, H. (1954). Experimental Psychology. New Delhi: Oxford & IBH.
go back to reference Yamada, Y., & Kawahara, J. I. (2007). Dividing attention between two different categories and locations in rapid serial visual presentations. Perception & Psychophysics, 69, 1218–1229.CrossRef Yamada, Y., & Kawahara, J. I. (2007). Dividing attention between two different categories and locations in rapid serial visual presentations. Perception & Psychophysics, 69, 1218–1229.CrossRef
go back to reference Yantis, S. (1993). Stimulus-driven attentional capture and attentional control settings. Journal of Experimental Psychology: Human Perception and Performance, 19, 676–681.PubMed Yantis, S. (1993). Stimulus-driven attentional capture and attentional control settings. Journal of Experimental Psychology: Human Perception and Performance, 19, 676–681.PubMed
go back to reference Yantis, S., & Jonides, J. (1984). Abrupt visual onsets and selective attention: evidence from visual search. Journal of Experimental Psychology: Human Perception and Performance, 10, 601.PubMed Yantis, S., & Jonides, J. (1984). Abrupt visual onsets and selective attention: evidence from visual search. Journal of Experimental Psychology: Human Perception and Performance, 10, 601.PubMed
Metagegevens
Titel
The exogenous and endogenous control of attentional focusing
Auteurs
Lisa N. Jefferies
James T. Enns
Vincent Di Lollo
Publicatiedatum
22-09-2017
Uitgeverij
Springer Berlin Heidelberg
Gepubliceerd in
Psychological Research / Uitgave 5/2019
Print ISSN: 0340-0727
Elektronisch ISSN: 1430-2772
DOI
https://doi.org/10.1007/s00426-017-0918-y

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