Cognitive control processes and hypnosis
暂无分享,去创建一个
Tobias Egner | Amir Raz | T. Egner | A. Raz
[1] John Gruzelier,et al. A working model of the neurophysiology of hypnosis: a review of evidence , 1998 .
[2] N. Cohen,et al. The relative involvement of anterior cingulate and prefrontal cortex in attentional control depends on nature of conflict. , 2001, Brain research. Cognitive brain research.
[3] John D. E. Gabrieli,et al. Material-dependent and material-independent selection processes in the frontal and parietal lobes: an event-related fMRI investigation of response competition , 2003, Neuropsychologia.
[4] Jin Fan,et al. The activation of attentional networks , 2005, NeuroImage.
[5] M. Posner,et al. Executive attention: Conflict, target detection, and cognitive control. , 1998 .
[6] I. Kirsch,et al. Dissociation theories of hypnosis. , 1998, Psychological bulletin.
[7] Graham A. Jamieson,et al. An empirical test of Woody and Bowers’s dissociated-control theory of hypnosis , 2004, The International journal of clinical and experimental hypnosis.
[8] E. Crone,et al. Dissociation of response conflict, attentional selection, and expectancy with functional magnetic resonance imaging. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[9] T. Braver,et al. Anterior cingulate cortex and response conflict: effects of response modality and processing domain. , 2001, Cerebral Cortex.
[10] G. Mangun,et al. The neural mechanisms of top-down attentional control , 2000, Nature Neuroscience.
[11] M. Botvinick,et al. Conflict monitoring and cognitive control. , 2001, Psychological review.
[12] S. Krippner,et al. Hypnosis and attention: a review. , 1974, The American journal of clinical hypnosis.
[13] T. Barber. The Necessary and Sufficient Conditions for Hypnotic Behavior , 1960, The American journal of clinical hypnosis.
[14] J. Laurence,et al. Hypnotic susceptibility and verbal automaticity: automatic and strategic processing differences in the Stroop color-naming task. , 1992, Journal of abnormal psychology.
[15] David Spiegel,et al. Negative and Positive Visual Hypnotic Hallucinations: Attending Inside and Out , 2003, The International journal of clinical and experimental hypnosis.
[16] Amir Raz,et al. Hypnosis and neuroscience: a cross talk between clinical and cognitive research. , 2002, Archives of General Psychiatry.
[17] J. M. Cattell. THE TIME IT TAKES TO SEE AND NAME OBJECTS , 1886 .
[18] G D Logan,et al. Constraints on strategy construction in a speeded discrimination task. , 1982, Journal of experimental psychology. Human perception and performance.
[19] Dorret I. Boomsma,et al. Accounting for sequential trial effects in the flanker task: Conflict adaptation or associative priming? , 2006, Memory & cognition.
[20] P. Rabbitt. Errors and error correction in choice-response tasks. , 1966, Journal of experimental psychology.
[21] J. Stroop. Studies of interference in serial verbal reactions. , 1992 .
[22] C. Eriksen,et al. Effects of noise letters upon the identification of a target letter in a nonsearch task , 1974 .
[23] Colin M. Macleod. Half a century of research on the Stroop effect: an integrative review. , 1991, Psychological bulletin.
[24] T. Egner,et al. Cognitive control mechanisms resolve conflict through cortical amplification of task-relevant information , 2005, Nature Neuroscience.
[25] M. Botvinick,et al. Parsing executive processes: strategic vs. evaluative functions of the anterior cingulate cortex. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[26] C. Carter,et al. The Timing of Action-Monitoring Processes in the Anterior Cingulate Cortex , 2002, Journal of Cognitive Neuroscience.
[27] J. Kaiser,et al. Hypnosis and event-related potential correlates of error processing in a stroop-type paradigm: a test of the frontal hypothesis. , 1997, International journal of psychophysiology : official journal of the International Organization of Psychophysiology.
[28] E. Miller,et al. An integrative theory of prefrontal cortex function. , 2001, Annual review of neuroscience.
[29] M. Raichle,et al. The anterior cingulate cortex mediates processing selection in the Stroop attentional conflict paradigm. , 1990, Proceedings of the National Academy of Sciences of the United States of America.
[30] Colin M. Macleod,et al. Interdimensional interference in the Stroop effect: uncovering the cognitive and neural anatomy of attention , 2000, Trends in Cognitive Sciences.
[31] J. Cohen,et al. Dissociating the role of the dorsolateral prefrontal and anterior cingulate cortex in cognitive control. , 2000, Science.
[32] J. Hohnsbein,et al. Effects of crossmodal divided attention on late ERP components. II. Error processing in choice reaction tasks. , 1991, Electroencephalography and clinical neurophysiology.
[33] G. Logan,et al. When it helps to be misled: Facilitative effects of increasing the frequency of conflicting stimuli in a Stroop-like task , 1979 .
[34] J. Laurence,et al. Hypnotizability and automaticity: toward a parallel distributed processing model of hypnotic responding. , 1990, Journal of abnormal psychology.
[35] G. Glover,et al. Error‐related brain activation during a Go/NoGo response inhibition task , 2001, Human brain mapping.
[36] G. S. Blum,et al. The detection over time of subjects simulating hypnosis. , 1971, The International journal of clinical and experimental hypnosis.
[37] O. Bertrand,et al. Oscillatory gamma activity in humans and its role in object representation , 1999, Trends in Cognitive Sciences.
[38] B. Hommel,et al. A feature-integration account of sequential effects in the Simon task , 2004, Psychological research.
[39] D. Meyer,et al. A Neural System for Error Detection and Compensation , 1993 .
[40] James L. McClelland,et al. On the control of automatic processes: a parallel distributed processing account of the Stroop effect. , 1990, Psychological review.
[41] Jonathan D. Cohen,et al. Conflict monitoring versus selection-for-action in anterior cingulate cortex , 1999, Nature.
[42] D. V. Cramon,et al. Subprocesses of Performance Monitoring: A Dissociation of Error Processing and Response Competition Revealed by Event-Related fMRI and ERPs , 2001, NeuroImage.
[43] Jonathan D. Cohen,et al. The neural basis of error detection: conflict monitoring and the error-related negativity. , 2004, Psychological review.
[44] Jonathan D. Cohen,et al. Conflict monitoring and anterior cingulate cortex: an update , 2004, Trends in Cognitive Sciences.
[45] Tobias Egner,et al. Hypnosis decouples cognitive control from conflict monitoring processes of the frontal lobe , 2005, NeuroImage.
[46] Jin Fan,et al. Hypnotic suggestion and the modulation of Stroop interference. , 2002, Archives of general psychiatry.
[47] M. Posner,et al. Localization of a Neural System for Error Detection and Compensation , 1994 .
[48] Walter Schneider,et al. Controlled and Automatic Human Information Processing: 1. Detection, Search, and Attention. , 1977 .
[49] M. Herrmann,et al. Source localization (LORETA) of the error-related-negativity (ERN/Ne) and positivity (Pe). , 2004, Brain research. Cognitive brain research.
[50] M. Posner,et al. Attention and cognitive control. , 1975 .
[51] R. Karlin. Hypnotizability and attention. , 1979, Journal of abnormal psychology.
[52] Amir Raz,et al. Posthypnotic suggestion and the modulation of Stroop interference under cycloplegia , 2003, Consciousness and Cognition.
[53] A. Tellegen,et al. Openness to absorbing and self-altering experiences ("absorption"), a trait related to hypnotic susceptibility. , 1974, Journal of abnormal psychology.
[54] Aziz M. Ulug,et al. Parametric manipulation of conflict and response competition using rapid mixed-trial event-related fMRI , 2003, NeuroImage.
[55] K. Kiehl,et al. Error processing and the rostral anterior cingulate: an event-related fMRI study. , 2000, Psychophysiology.
[56] C. Braun,et al. Event-Related Brain Potentials Following Incorrect Feedback in a Time-Estimation Task: Evidence for a Generic Neural System for Error Detection , 1997, Journal of Cognitive Neuroscience.
[57] D. Stuss,et al. Stroop performance in focal lesion patients: dissociation of processes and frontal lobe lesion location , 2001, Neuropsychologia.
[58] Parashkev Nachev,et al. Volition and Conflict in Human Medial Frontal Cortex , 2005, Current Biology.
[59] E. Awh,et al. Conflict adaptation effects in the absence of executive control , 2003, Nature Neuroscience.
[60] L. M. Warner,et al. The Neural Mechanisms for Minimizing Cross-Modal Distraction , 2004, The Journal of Neuroscience.
[61] Karl J. Friston,et al. Investigations of the functional anatomy of attention using the stroop test , 1993, Neuropsychologia.
[62] M. Posner,et al. The attention system of the human brain. , 1990, Annual review of neuroscience.
[63] P. Sheehan,et al. Strategy manipulation and the Stroop effect in hypnosis. , 1988, Journal of abnormal psychology.
[64] D. Norman,et al. Attention to Action: Willed and Automatic Control of Behavior Technical Report No. 8006. , 1980 .
[65] Christoph Braun,et al. Coherence of gamma-band EEG activity as a basis for associative learning , 1999, Nature.
[66] H. Nordby,et al. Effects of Hypnotizability on Performance of a Stroop Task and Event-Related Potentials , 1999, Perceptual and motor skills.
[67] P. Skudlarski,et al. An event-related functional MRI study of the stroop color word interference task. , 2000, Cerebral cortex.
[68] Jonathan D. Cohen,et al. Anterior Cingulate Cortex, Conflict Monitoring, and Levels of Processing , 2001, NeuroImage.
[69] Jin Fan,et al. Hypnotic suggestion reduces conflict in the human brain. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[70] Colin M. Macleod,et al. Training and Stroop-like interference: evidence for a continuum of automaticity. , 1988, Journal of experimental psychology. Learning, memory, and cognition.
[71] Jin Fan,et al. Cognitive and Brain Consequences of Conflict , 2003, NeuroImage.
[72] Jonathan D. Cohen,et al. Anterior Cingulate Conflict Monitoring and Adjustments in Control , 2004, Science.
[73] K. R. Ridderinkhof,et al. Error-related brain potentials are differentially related to awareness of response errors: evidence from an antisaccade task. , 2001, Psychophysiology.
[74] Tobias Egner,et al. The neural correlates and functional integration of cognitive control in a Stroop task , 2005, NeuroImage.
[75] Jonathan D. Cohen,et al. Interference and Facilitation Effects during Selective Attention: An H2 15O PET Study of Stroop Task Performance , 1995, NeuroImage.
[76] J. Duncan,et al. Common regions of the human frontal lobe recruited by diverse cognitive demands , 2000, Trends in Neurosciences.
[77] J. Hohnsbein,et al. ERP components on reaction errors and their functional significance: a tutorial , 2000, Biological Psychology.
[78] M. Botvinick,et al. Anterior cingulate cortex, error detection, and the online monitoring of performance. , 1998, Science.
[79] E. Donchin,et al. Optimizing the use of information: strategic control of activation of responses. , 1992, Journal of experimental psychology. General.
[80] R. Simons,et al. To err is autonomic: error-related brain potentials, ANS activity, and post-error compensatory behavior. , 2003, Psychophysiology.
[81] C. Kennard,et al. The anatomy of visual neglect , 2003 .