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Gepubliceerd in:

11-10-2019 | Original Article

Attentional avoidance of threatening stimuli

Auteurs: Mark K. Britton, Brian A. Anderson

Gepubliceerd in: Psychological Research | Uitgave 1/2021

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Abstract

Aversive conditioning has been shown to influence the control of attention, such that aversively conditioned stimuli receive elevated priority. Although aversively conditioned but task-irrelevant distractors are known to capture attention during speeded search in rapid orienting tasks, it is unclear whether this bias extends to situations where orienting can be more deliberate. We demonstrate that punishment, via electric shock, does not give rise to oculomotor capture by shock-associated stimuli during a foraging task; rather, such aversively conditioned stimuli are actively avoided when searching through a display. On the other hand, even during a foraging task, we found some evidence for a covert attentional bias to threat. Our findings indicate that the previously described effects of aversive conditioning on visual search may not generalize beyond the initial glance and can be suppressed when conditions allow for more deliberate search strategies. More generally, our findings reveal that sustained attentional avoidance of aversively conditioned stimuli is possible during active search.
Literatuur
go back to reference Anderson, B. A. (2016). Value-driven attentional capture in the auditory domain. Attention, Perception, & Psychophysics, 78(1), 242–250. Anderson, B. A. (2016). Value-driven attentional capture in the auditory domain. Attention, Perception, & Psychophysics, 78(1), 242–250.
go back to reference Anderson, B. A. (2018). Controlled information processing, automaticity, and the burden of proof. Psychonomic Bulletin & Review, 25(5), 1814–1823. Anderson, B. A. (2018). Controlled information processing, automaticity, and the burden of proof. Psychonomic Bulletin & Review, 25(5), 1814–1823.
go back to reference Anderson, B. A., & Halpern, M. (2017). On the value-dependence of value-driven attentional capture. Attention, Perception, & Psychophysics, 79(4), 1001–1011. Anderson, B. A., & Halpern, M. (2017). On the value-dependence of value-driven attentional capture. Attention, Perception, & Psychophysics, 79(4), 1001–1011.
go back to reference Anderson, B. A., & Kim, H. (2019). On the relationship between value-driven and stimulus-driven attentional capture. Attention, Perception, and Psychophysics, 81(3), 607–613. Anderson, B. A., & Kim, H. (2019). On the relationship between value-driven and stimulus-driven attentional capture. Attention, Perception, and Psychophysics, 81(3), 607–613.
go back to reference Anderson, B. A., & Yantis, S. (2012). Value-driven attentional and oculomotor capture during goal-directed, unconstrained viewing. Attention, Perception, & Psychophysics, 74(8), 1644–1653. Anderson, B. A., & Yantis, S. (2012). Value-driven attentional and oculomotor capture during goal-directed, unconstrained viewing. Attention, Perception, & Psychophysics, 74(8), 1644–1653.
go back to reference Awh, E., Belopolsky, A. V., & Theeuwes, J. (2012). Top–down versus bottom–up attentional control: A failed theoretical dichotomy. Trends in Cognitive Sciences, 16(8), 437–443.PubMedPubMedCentral Awh, E., Belopolsky, A. V., & Theeuwes, J. (2012). Top–down versus bottom–up attentional control: A failed theoretical dichotomy. Trends in Cognitive Sciences, 16(8), 437–443.PubMedPubMedCentral
go back to reference Bannerman, R. L., Milders, M., & Sahraie, A. (2010). Attentional bias to brief threat-related faces revealed by saccadic eye movements. Emotion, 10(5), 733–738.PubMed Bannerman, R. L., Milders, M., & Sahraie, A. (2010). Attentional bias to brief threat-related faces revealed by saccadic eye movements. Emotion, 10(5), 733–738.PubMed
go back to reference Brainard, D. H. (1997). The psychophysics toolbox. Spatial Vision, 10, 433–436.PubMed Brainard, D. H. (1997). The psychophysics toolbox. Spatial Vision, 10, 433–436.PubMed
go back to reference Cain, M. S., & Mitroff, S. R. (2013). Memory for found targets interferes with subsequent performance in multiple-target visual search. Journal of Experimental Psychology: Human Perception and Performance, 39(5), 1398–1408.PubMed Cain, M. S., & Mitroff, S. R. (2013). Memory for found targets interferes with subsequent performance in multiple-target visual search. Journal of Experimental Psychology: Human Perception and Performance, 39(5), 1398–1408.PubMed
go back to reference Chukoskie, L., Snider, J., Mozer, M. C., Krauzlis, R. J., & Sejnowski, T. J. (2013). Learning where to look for a hidden target. Proceedings of the National Academy of Sciences, 110, 10438–10445. Chukoskie, L., Snider, J., Mozer, M. C., Krauzlis, R. J., & Sejnowski, T. J. (2013). Learning where to look for a hidden target. Proceedings of the National Academy of Sciences, 110, 10438–10445.
go back to reference Cisler, J. M., & Koster, E. H. W. (2010). Mechanisms of attentional biases towards threat in the anxiety disorders: An integrative review. Clinical Psychology Review, 30(2), 203–216.PubMed Cisler, J. M., & Koster, E. H. W. (2010). Mechanisms of attentional biases towards threat in the anxiety disorders: An integrative review. Clinical Psychology Review, 30(2), 203–216.PubMed
go back to reference Cunningham, C. A., & Egeth, H. E. (2016). Taming the white bear: Initial costs and eventual benefits of distractor inhibition. Psychological Science, 27(4), 476–485.PubMed Cunningham, C. A., & Egeth, H. E. (2016). Taming the white bear: Initial costs and eventual benefits of distractor inhibition. Psychological Science, 27(4), 476–485.PubMed
go back to reference Donk, M., & Theeuwes, J. (2001). Visual marking beside the mark: Prioritizing selection by abrupt onsets. Perception & Psychophysics, 63(5), 891–900. Donk, M., & Theeuwes, J. (2001). Visual marking beside the mark: Prioritizing selection by abrupt onsets. Perception & Psychophysics, 63(5), 891–900.
go back to reference Donk, M., & van Zoest, W. (2008). Effects of salience are short-lived. Psychological Science, 19(7), 733–739.PubMed Donk, M., & van Zoest, W. (2008). Effects of salience are short-lived. Psychological Science, 19(7), 733–739.PubMed
go back to reference Failing, M., Nissens, T., Pearson, D., Le Pelley, M., & Theeuwes, J. (2015). Oculomotor capture by stimuli that signal the availability of reward. Journal of Neurophysiology, 114(4), 2316–2327.PubMedPubMedCentral Failing, M., Nissens, T., Pearson, D., Le Pelley, M., & Theeuwes, J. (2015). Oculomotor capture by stimuli that signal the availability of reward. Journal of Neurophysiology, 114(4), 2316–2327.PubMedPubMedCentral
go back to reference Hermans, D., Vansteenwegen, D., & Eelen, P. (1999). Eye movement registration as a continuous index of attention deployment: Data from a group of spider anxious students. Cognition and Emotion, 13(4), 419–434. Hermans, D., Vansteenwegen, D., & Eelen, P. (1999). Eye movement registration as a continuous index of attention deployment: Data from a group of spider anxious students. Cognition and Emotion, 13(4), 419–434.
go back to reference Hickey, C., & van Zoest, W. (2012). Reward creates oculomotor salience. Current Biology, 22(7), R219–R220.PubMed Hickey, C., & van Zoest, W. (2012). Reward creates oculomotor salience. Current Biology, 22(7), R219–R220.PubMed
go back to reference Hopkins, L. S., Helmstetter, F. J., & Hannula, D. E. (2016). Eye movements are captured by a perceptually simple conditioned stimulus in the absence of explicit contingency knowledge. Emotion, 16(8), 1157–1171.PubMed Hopkins, L. S., Helmstetter, F. J., & Hannula, D. E. (2016). Eye movements are captured by a perceptually simple conditioned stimulus in the absence of explicit contingency knowledge. Emotion, 16(8), 1157–1171.PubMed
go back to reference Koster, E. H., Crombez, G., Van Damme, S., Verschuere, B., & De Houwer, J. (2004). Does imminent threat capture and hold attention? Emotion, 4(3), 312–317.PubMed Koster, E. H., Crombez, G., Van Damme, S., Verschuere, B., & De Houwer, J. (2004). Does imminent threat capture and hold attention? Emotion, 4(3), 312–317.PubMed
go back to reference Koster, E. H. W., Crombez, G., Verschuere, B., Van Damme, S., & Wiersema, J. R. (2006). Components of attentional bias to threat in high trait anxiety: Facilitated engagement, impaired disengagement, and attentional avoidance. Behaviour Research and Therapy, 44(12), 1757–1771.PubMed Koster, E. H. W., Crombez, G., Verschuere, B., Van Damme, S., & Wiersema, J. R. (2006). Components of attentional bias to threat in high trait anxiety: Facilitated engagement, impaired disengagement, and attentional avoidance. Behaviour Research and Therapy, 44(12), 1757–1771.PubMed
go back to reference Le Pelley, M. E., Watson, P., Pearson, D., Abeywickrama, R. S., & Most, S. B. (2018). Winners and losers: Reward and punishment produce biases in temporal selection. Journal of Experimental Psychology. Learning, Memory, and Cognition, 45(5), 822–833.PubMed Le Pelley, M. E., Watson, P., Pearson, D., Abeywickrama, R. S., & Most, S. B. (2018). Winners and losers: Reward and punishment produce biases in temporal selection. Journal of Experimental Psychology. Learning, Memory, and Cognition, 45(5), 822–833.PubMed
go back to reference Mogg, K., Bradley, B., Miles, F., & Dixon, R. (2004). Brief report time course of attentional bias for threat scenes: Testing the vigilance-avoidance hypothesis. Cognition and Emotion, 18(5), 689–700. Mogg, K., Bradley, B., Miles, F., & Dixon, R. (2004). Brief report time course of attentional bias for threat scenes: Testing the vigilance-avoidance hypothesis. Cognition and Emotion, 18(5), 689–700.
go back to reference Moher, J., & Egeth, H. E. (2012). The ignoring paradox: Cueing distractor features leads first to selection, then to inhibition of to-be-ignored items. Attention, Perception, and Psychophysics, 74(8), 1590–1605. Moher, J., & Egeth, H. E. (2012). The ignoring paradox: Cueing distractor features leads first to selection, then to inhibition of to-be-ignored items. Attention, Perception, and Psychophysics, 74(8), 1590–1605.
go back to reference Mulckhuyse, M. (2018). The influence of emotional stimuli on the oculomotor system: A review of the literature. Cognitive, Affective, & Behavioral Neuroscience, 18(3), 411–425. Mulckhuyse, M. (2018). The influence of emotional stimuli on the oculomotor system: A review of the literature. Cognitive, Affective, & Behavioral Neuroscience, 18(3), 411–425.
go back to reference Mulckhuyse, M., Crombez, G., & Van der Stigchel, S. (2013). Conditioned fear modulates visual selection. Emotion, 13(3), 529–536.PubMed Mulckhuyse, M., Crombez, G., & Van der Stigchel, S. (2013). Conditioned fear modulates visual selection. Emotion, 13(3), 529–536.PubMed
go back to reference Mulckhuyse, M., & Dalmaijer, E. S. (2016). Distracted by danger: Temporal and spatial dynamics of visual selection in the presence of threat. Cognitive, Affective, & Behavioral Neuroscience, 16(2), 315–324. Mulckhuyse, M., & Dalmaijer, E. S. (2016). Distracted by danger: Temporal and spatial dynamics of visual selection in the presence of threat. Cognitive, Affective, & Behavioral Neuroscience, 16(2), 315–324.
go back to reference Mulckhuyse, M., Van der Stigchel, S., & Theeuwes, J. (2009). Early and late modulation of saccade deviations by target distractor similarity. Journal of Neurophysiology, 102(3), 1451–1458.PubMed Mulckhuyse, M., Van der Stigchel, S., & Theeuwes, J. (2009). Early and late modulation of saccade deviations by target distractor similarity. Journal of Neurophysiology, 102(3), 1451–1458.PubMed
go back to reference Mulckhuyse, M., van Zoest, W., & Theeuwes, J. (2008). Capture of the eyes by relevant and irrelevant onsets. Experimental Brain Research, 186(2), 225–235.PubMed Mulckhuyse, M., van Zoest, W., & Theeuwes, J. (2008). Capture of the eyes by relevant and irrelevant onsets. Experimental Brain Research, 186(2), 225–235.PubMed
go back to reference Nissens, T., Failing, M., & Theeuwes, J. (2017). People look at the object they fear: Oculomotor capture by stimuli that signal threat. Cognition and Emotion, 31(8), 1707–1714.PubMed Nissens, T., Failing, M., & Theeuwes, J. (2017). People look at the object they fear: Oculomotor capture by stimuli that signal threat. Cognition and Emotion, 31(8), 1707–1714.PubMed
go back to reference Öhman, A., & Mineka, S. (2001). Fears, phobias, and preparedness: Toward an evolved module of fear and fear learning. Psychological Review, 108(3), 483–522.PubMed Öhman, A., & Mineka, S. (2001). Fears, phobias, and preparedness: Toward an evolved module of fear and fear learning. Psychological Review, 108(3), 483–522.PubMed
go back to reference Pearson, D., Osborn, R., Whitford, T. J., Failing, M., Theeuwes, J., & Le Pelley, M. E. (2016). Value-modulated oculomotor capture by task-irrelevant stimuli is a consequence of early competition on the saccade map. Attention, Perception, & Psychophysics, 78(7), 2226–2240. Pearson, D., Osborn, R., Whitford, T. J., Failing, M., Theeuwes, J., & Le Pelley, M. E. (2016). Value-modulated oculomotor capture by task-irrelevant stimuli is a consequence of early competition on the saccade map. Attention, Perception, & Psychophysics, 78(7), 2226–2240.
go back to reference Rinck, M., & Becker, E. S. (2006). Spider fearful individuals attend to threat, then quickly avoid it: Evidence from eye movements. Journal of Abnormal Psychology, 115(2), 231–238.PubMed Rinck, M., & Becker, E. S. (2006). Spider fearful individuals attend to threat, then quickly avoid it: Evidence from eye movements. Journal of Abnormal Psychology, 115(2), 231–238.PubMed
go back to reference Rouder, J. N., Speckman, P. L., Sun, D., Morey, R. D., & Iverson, G. (2009). Bayesian t tests for accepting and rejecting the null hypothesis. Psychonomic Bulletin & Review, 16(2), 225–237. Rouder, J. N., Speckman, P. L., Sun, D., Morey, R. D., & Iverson, G. (2009). Bayesian t tests for accepting and rejecting the null hypothesis. Psychonomic Bulletin & Review, 16(2), 225–237.
go back to reference Sagliano, L., Trojano, L., Amoriello, K., Migliozzi, M., & D’Olimpio, F. (2014). Attentional biases toward threat: The concomitant presence of difficulty of disengagement and attentional avoidance in low trait anxious individuals. Frontiers in Psychology, 5, 685.PubMedPubMedCentral Sagliano, L., Trojano, L., Amoriello, K., Migliozzi, M., & D’Olimpio, F. (2014). Attentional biases toward threat: The concomitant presence of difficulty of disengagement and attentional avoidance in low trait anxious individuals. Frontiers in Psychology, 5, 685.PubMedPubMedCentral
go back to reference Sali, A. W., Anderson, B. A., Yantis, S., Mostofsky, S. H., & Rosch, K. S. (2018). Reduced value-driven attentional capture among children with ADHD compared to typically developing controls. Journal of Abnormal Child Psychology, 46(6), 1187–1200.PubMedPubMedCentral Sali, A. W., Anderson, B. A., Yantis, S., Mostofsky, S. H., & Rosch, K. S. (2018). Reduced value-driven attentional capture among children with ADHD compared to typically developing controls. Journal of Abnormal Child Psychology, 46(6), 1187–1200.PubMedPubMedCentral
go back to reference Sawaki, R., & Luck, S. J. (2010). Capture versus suppression of attention by salient singletons: Electrophysiological evidence for an automatic attend-to-me signal. Attention, Perception, & Psychophysics, 72(6), 1455–1470. Sawaki, R., & Luck, S. J. (2010). Capture versus suppression of attention by salient singletons: Electrophysiological evidence for an automatic attend-to-me signal. Attention, Perception, & Psychophysics, 72(6), 1455–1470.
go back to reference Schmidt, L. J., Belopolsky, A. V., & Theeuwes, J. (2012). The presence of threat affects saccade trajectories. Visual Cognition, 20(3), 284–299. Schmidt, L. J., Belopolsky, A. V., & Theeuwes, J. (2012). The presence of threat affects saccade trajectories. Visual Cognition, 20(3), 284–299.
go back to reference Schmidt, L. J., Belopolsky, A. V., & Theeuwes, J. (2015). Attentional capture by signals of threat. Cognition and Emotion, 29(4), 687–694.PubMed Schmidt, L. J., Belopolsky, A. V., & Theeuwes, J. (2015). Attentional capture by signals of threat. Cognition and Emotion, 29(4), 687–694.PubMed
go back to reference Schmidt, L. J., Belopolsky, A. V., & Theeuwes, J. (2017). The time course of attentional bias to cues of threat and safety. Cognition and Emotion, 31(5), 845–857.PubMed Schmidt, L. J., Belopolsky, A. V., & Theeuwes, J. (2017). The time course of attentional bias to cues of threat and safety. Cognition and Emotion, 31(5), 845–857.PubMed
go back to reference Smith, S. D., Most, S. B., Newsome, L. A., & Zald, D. H. (2006). An emotion-induced attentional blink elicited by aversively conditioned stimuli. Emotion, 6(3), 523–527.PubMed Smith, S. D., Most, S. B., Newsome, L. A., & Zald, D. H. (2006). An emotion-induced attentional blink elicited by aversively conditioned stimuli. Emotion, 6(3), 523–527.PubMed
go back to reference Theeuwes, J., de Vries, G. J., & Godijn, R. (2003). Attentional and oculomotor capture with static singletons. Perception & Psychophysics, 65(5), 735–746. Theeuwes, J., de Vries, G. J., & Godijn, R. (2003). Attentional and oculomotor capture with static singletons. Perception & Psychophysics, 65(5), 735–746.
go back to reference Thigpen, N. N., Bartsch, F., & Keil, A. (2017). The malleability of emotional perception: Short-term plasticity in retinotopic neurons accompanies the formation of perceptual bias to threat. Journal of Experimental Psychology: General, 146(4), 464–471. Thigpen, N. N., Bartsch, F., & Keil, A. (2017). The malleability of emotional perception: Short-term plasticity in retinotopic neurons accompanies the formation of perceptual bias to threat. Journal of Experimental Psychology: General, 146(4), 464–471.
go back to reference Van der Stigchel, S., & Theeuwes, J. (2007). The relationship between covert and overt attention in endogenous cuing. Perception & Psychophysics, 69(5), 719–731. Van der Stigchel, S., & Theeuwes, J. (2007). The relationship between covert and overt attention in endogenous cuing. Perception & Psychophysics, 69(5), 719–731.
go back to reference van Zoest, W., Donk, M., & Theeuwes, J. (2004). The role of stimulus-driven and goal-driven control in saccadic visual selection. Journal of Experimental Psychology: Human Perception and Performance, 30(4), 746–759.PubMed van Zoest, W., Donk, M., & Theeuwes, J. (2004). The role of stimulus-driven and goal-driven control in saccadic visual selection. Journal of Experimental Psychology: Human Perception and Performance, 30(4), 746–759.PubMed
go back to reference Vuilleumier, P. (2005). How brains beware: Neural mechanisms of emotional attention. Trends in Cognitive Sciences, 9(12), 585–594.PubMed Vuilleumier, P. (2005). How brains beware: Neural mechanisms of emotional attention. Trends in Cognitive Sciences, 9(12), 585–594.PubMed
go back to reference Wang, L., Yu, H., & Zhou, X. (2013). Interaction between value and perceptual salience in value-driven attentional capture. Journal of Vision, 13(3), 1–13. Wang, L., Yu, H., & Zhou, X. (2013). Interaction between value and perceptual salience in value-driven attentional capture. Journal of Vision, 13(3), 1–13.
go back to reference Weaver, M. D., van Zoest, W., & Hickey, C. (2017). A temporal dependency account of attentional inhibition in oculomotor control. NeuroImage, 147, 880–894.PubMed Weaver, M. D., van Zoest, W., & Hickey, C. (2017). A temporal dependency account of attentional inhibition in oculomotor control. NeuroImage, 147, 880–894.PubMed
go back to reference Weierich, M. R., Treat, T. A., & Hollingworth, A. (2008). Theories and measurement of visual attentional processing in anxiety. Cognition and Emotion, 22(6), 985–1018. Weierich, M. R., Treat, T. A., & Hollingworth, A. (2008). Theories and measurement of visual attentional processing in anxiety. Cognition and Emotion, 22(6), 985–1018.
go back to reference Wentura, D., Muller, P., & Rothermund, K. (2014). Attentional capture by evaluative stimuli: Gain- and loss-connoting colors boost the additional singleton effect. Psychonomic Bulletin & Review, 21(3), 701–707. Wentura, D., Muller, P., & Rothermund, K. (2014). Attentional capture by evaluative stimuli: Gain- and loss-connoting colors boost the additional singleton effect. Psychonomic Bulletin & Review, 21(3), 701–707.
go back to reference 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 and Performance, 29(2), 483–502.PubMed 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 and Performance, 29(2), 483–502.PubMed
go back to reference Wolfe, J. M., Cain, M. S., & Aizenman, A. M. (2019). Guidance and selection history in hybrid foraging visual search. Attention, Perception, & Psychophysics, 81(3), 637–653. Wolfe, J. M., Cain, M. S., & Aizenman, A. M. (2019). Guidance and selection history in hybrid foraging visual search. Attention, Perception, & Psychophysics, 81(3), 637–653.
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(5), 601–621.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(5), 601–621.PubMed
Metagegevens
Titel
Attentional avoidance of threatening stimuli
Auteurs
Mark K. Britton
Brian A. Anderson
Publicatiedatum
11-10-2019
Uitgeverij
Springer Berlin Heidelberg
Gepubliceerd in
Psychological Research / Uitgave 1/2021
Print ISSN: 0340-0727
Elektronisch ISSN: 1430-2772
DOI
https://doi.org/10.1007/s00426-019-01255-6