Delayed disengagement of attention from distractors signalling reward
暂无分享,去创建一个
[1] M. Field,et al. Less than meets the eye: reappraising the clinical relevance of attentional bias in addiction. , 2015, Addictive behaviors.
[2] Denis G. Pelli,et al. ECVP '07 Abstracts , 2007, Perception.
[3] Giselle Toth. Less than Meets the Eye , 1990, Bio/Technology.
[4] K. Nakayama,et al. Priming of pop-out: II. The role of position , 1996, Perception & psychophysics.
[5] Jan Theeuwes,et al. Value-modulated oculomotor capture by task-irrelevant stimuli is a consequence of early competition on the saccade map , 2016, Attention, Perception, & Psychophysics.
[6] R. Wiers,et al. Prioritizing pleasure and pain: attentional capture by reward-related and punishment-related stimuli , 2019, Current Opinion in Behavioral Sciences.
[7] A. Guastella,et al. Assessing the role of spatial engagement and disengagement of attention in anxiety-linked attentional bias: a critique of current paradigms and suggestions for future research directions , 2013, Anxiety, stress, and coping.
[8] Joseph H. Goldberg,et al. Identifying fixations and saccades in eye-tracking protocols , 2000, ETRA.
[9] Yoolim Hong,et al. Implicitly learned suppression of irrelevant spatial locations , 2016, Psychonomic bulletin & review.
[10] Nicholas A. Steinmetz,et al. Top-down control of visual attention , 2010, Current Opinion in Neurobiology.
[11] J. Theeuwes,et al. Programming of endogenous and exogenous saccades: evidence for a competitive integration model. , 2002, Journal of experimental psychology. Human perception and performance.
[12] James R. Brockmole,et al. Should I stay or should I go? Attentional disengagement from visually unique and unexpected items at fixation. , 2009, Journal of experimental psychology. Human perception and performance.
[13] M. Field,et al. Attentional bias in addictive behaviors: a review of its development, causes, and consequences. , 2008, Drug and alcohol dependence.
[14] K. Berridge,et al. The neural basis of drug craving: An incentive-sensitization theory of addiction , 1993, Brain Research Reviews.
[15] Steven B. Most,et al. Cognitive control and counterproductive oculomotor capture by reward-related stimuli , 2015 .
[16] Jan Theeuwes,et al. Statistical regularities bias overt attention , 2019, Attention, Perception, & Psychophysics.
[17] Steven B. Most,et al. Winners and Losers: Reward and Punishment Produce Biases in Temporal Selection , 2019, Journal of experimental psychology. Learning, memory, and cognition.
[18] Briana L. Kennedy,et al. Miss it and miss out: Counterproductive nonspatial attentional capture by task-irrelevant, value-related stimuli , 2017, Attention, perception & psychophysics.
[19] J. Theeuwes,et al. Evidence for a dissociation between the control of oculomotor capture and disengagement , 2010, Experimental Brain Research.
[20] Brian A Anderson,et al. What is abnormal about addiction-related attentional biases? , 2016, Drug and alcohol dependence.
[21] E. Koster,et al. Mechanisms of attentional biases towards threat in anxiety disorders: An integrative review. , 2010, Clinical psychology review.
[22] Christopher J. Mitchell,et al. Attention and associative learning in humans: An integrative review. , 2016, Psychological bulletin.
[23] Albrecht W. Inhoff,et al. Isolating attentional systems: A cognitive-anatomical analysis , 1987, Psychobiology.
[24] Michel F. Failing,et al. Nonspatial attentional capture by previously rewarded scene semantics , 2015 .
[25] J. Gottlieb. Attention, Learning, and the Value of Information , 2012, Neuron.
[26] Steven Yantis,et al. Attentional Bias for Non-drug Reward is Magnified in Addiction , 2014 .
[27] J. Theeuwes,et al. Mixed signals: The effect of conflicting reward- and goal-driven biases on selective attention , 2017, Attention, Perception, & Psychophysics.
[28] Steven B. Most,et al. Capture and Control: Working Memory Modulates Attentional Capture by Reward-Related Stimuli , 2019, Psychological science.
[29] B. Anderson,et al. On the value-dependence of value-driven attentional capture , 2017, Attention, Perception, & Psychophysics.
[30] J. Theeuwes. Cross-dimensional perceptual selectivity , 1991, Perception & psychophysics.
[31] Steven Yantis,et al. Learned Value Magnifies Salience-Based Attentional Capture , 2011, PloS one.
[32] D. Wentura,et al. Attentional capture by evaluative stimuli: Gain- and loss-connoting colors boost the additional-singleton effect , 2014, Psychonomic bulletin & review.
[33] H. Deubel,et al. Saccade target selection and object recognition: Evidence for a common attentional mechanism , 1996, Vision Research.
[34] L. Chelazzi,et al. Behavioral/systems/cognitive Reward Changes Salience in Human Vision via the Anterior Cingulate , 2022 .
[35] D H Brainard,et al. The Psychophysics Toolbox. , 1997, Spatial vision.
[36] Matthew Garner,et al. Effects of threat cues on attentional shifting, disengagement and response slowing in anxious individuals , 2008, Behaviour research and therapy.
[37] J. Theeuwes,et al. Reward grabs the eye: Oculomotor capture by rewarding stimuli , 2012, Vision Research.
[38] Steven Yantis,et al. Attentional bias for nondrug reward is magnified in addiction. , 2013, Experimental and clinical psychopharmacology.
[39] J. Brockmole,et al. Characterizing the time course and nature of attentional disengagement effects , 2012, Vision Research.
[40] J. Raymond,et al. Selective Visual Attention and Motivation , 2009, Psychological science.
[41] Reinout W. Wiers,et al. Cognitive Bias Modification and Cognitive Control Training in Addiction and Related Psychopathology , 2013 .
[42] M. Posner,et al. The attention system of the human brain. , 1990, Annual review of neuroscience.
[43] J. Theeuwes,et al. Top-down versus bottom-up attentional control: a failed theoretical dichotomy , 2012, Trends in Cognitive Sciences.
[44] D. E. Irwin,et al. Our Eyes do Not Always Go Where we Want Them to Go: Capture of the Eyes by New Objects , 1998 .
[45] Jan Theeuwes,et al. Selection history: How reward modulates selectivity of visual attention , 2017, Psychonomic Bulletin & Review.
[46] S. Yantis,et al. Visual attention: control, representation, and time course. , 1997, Annual review of psychology.
[47] M. Yücel,et al. Persistence of value-modulated attentional capture is associated with risky alcohol use , 2019, Addictive behaviors reports.
[48] Michel F. Failing,et al. Don’t let it distract you: how information about the availability of reward affects attentional selection , 2017, Attention, perception & psychophysics.
[49] J. Theeuwes. Perceptual selectivity for color and form , 1992, Perception & psychophysics.
[50] C. MacLeod,et al. The Attentional Bias Modification Approach to Anxiety Intervention , 2015 .
[51] D. Wentura,et al. Relevance drives attention: Attentional bias for gain- and loss-related stimuli is driven by delayed disengagement , 2016, Quarterly journal of experimental psychology.
[52] James T. Townsend,et al. Methods of Modeling Capacity in Simple Processing Systems , 2014 .
[53] Jon Driver,et al. Reward Priority of Visual Target Singletons Modulates Event-Related Potential Signatures of Attentional Selection , 2009, Psychological science.
[54] Richard D. Morey,et al. Confidence Intervals from Normalized Data: A correction to Cousineau (2005) , 2008 .
[55] Jane E Raymond,et al. Learned Predictiveness Speeds Visual Processing , 2012, Psychological science.
[56] Matt Field,et al. Eye movements to smoking-related cues: effects of nicotine deprivation , 2004, Psychopharmacology.
[57] M. L. Le Pelley,et al. Oculomotor capture is influenced by expected reward value but (maybe) not predictiveness , 2019, Quarterly journal of experimental psychology.
[58] Manon Mulckhuyse. The influence of emotional stimuli on the oculomotor system: A review of the literature , 2018, Cognitive, Affective, & Behavioral Neuroscience.
[59] A. Kandasamy,et al. Relapse prevention , 2018, Indian journal of psychiatry.
[60] M. Brysbaert,et al. Combining speed and accuracy in cognitive psychology: Is the inverse efficiency score (IES) a better dependent variable than the mean reaction time (RT) and the percentage of errors (PE)? , 2011 .
[61] Denis Cousineau,et al. Confidence intervals in within-subject designs: A simpler solution to Loftus and Masson's method , 2005 .
[62] J. Theeuwes,et al. Angry faces hold the eyes , 2011 .
[63] R. Wiers,et al. Selective attention moderates the relationship between attentional capture by signals of nondrug reward and illicit drug use. , 2017, Drug and alcohol dependence.
[64] K. Berridge,et al. Incentive-sensitization and addiction. , 2001, Addiction.
[65] Matt Field,et al. Eye movements to smoking-related pictures in smokers: relationship between attentional biases and implicit and explicit measures of stimulus valence. , 2003, Addiction.
[66] Matt Field,et al. Attentional bias in drug dependence: vigilance for cigarette-related cues in smokers. , 2003, Psychology of addictive behaviors : journal of the Society of Psychologists in Addictive Behaviors.
[67] Jan Theeuwes,et al. Oculomotor capture by stimuli that signal the availability of reward. , 2015, Journal of neurophysiology.
[68] Tom Beesley,et al. When goals conflict with values: counterproductive attentional and oculomotor capture by reward-related stimuli. , 2015, Journal of experimental psychology. General.
[69] R. Wiers,et al. Relapse Prevention in Abstinent Alcoholics by Cognitive Bias Modification: Clinical Effects of Combining Approach Bias Modification and Attention Bias Modification , 2018, Journal of consulting and clinical psychology.
[70] D G Pelli,et al. The VideoToolbox software for visual psychophysics: transforming numbers into movies. , 1997, Spatial vision.
[71] J. Theeuwes,et al. The time course of attentional bias to cues of threat and safety , 2017, Cognition & emotion.