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  1. The Neural Basis of Error Detection: Conflict Monitoring and the Error-Related Negativity.Nick Yeung, Matthew M. Botvinick & Jonathan D. Cohen - 2004 - Psychological Review 111 (4):931-959.
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  • Differential patterns of spontaneous experiential response to a hypnotic induction: A latent profile analysis.Devin Blair Terhune & Etzel Cardeña - 2010 - Consciousness and Cognition 19 (4):1140-1150.
    A hypnotic induction produces different patterns of spontaneous experiences across individuals. The magnitude and characteristics of these responses covary moderately with hypnotic suggestibility, but also differ within levels of hypnotic suggestibility. This study sought to identify discrete phenomenological profiles in response to a hypnotic induction and assess whether experiential variability among highly suggestible individuals matches the phenomenological profiles predicted by dissociative typological models of high hypnotic suggestibility. Phenomenological state scores indexed in reference to a resting epoch during hypnosis were submitted (...)
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  • HYPNOSIS INDUCES A CHANGED COMPOSITION OF BRAIN OSCILLATIONS IN EEG: A CASE STUDY.Andrew And Alexander Fingelkurts, Sakari Kallio & Antti Revonsuo - 2007 - Contemporary Hypnosis 24 (1):3-18.
    Cognitive functions associated with the frontal lobes of the brain may be specifi cally involved in hypnosis. Thus, the frontal area of the brain has recently been of great interest when searching for neural changes associated with hypnosis. We tested the hypothesis that EEG during pure hypnosis would differ from the normal non-hypnotic EEG especially above the frontal area of the brain. The composition of brain oscillations was examined in a broad frequency band (130 Hz) in the electroencephalogram (EEG) of (...)
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  • Hypnosis modulates activity in brain structures involved in the regulation of consciousness.Pierre Rainville, Rrrobert K. Hofbauer, M. Catherine Bushnell, Gary H. Duncan & Donald D. Price - 2002 - Journal of Cognitive Neuroscience 14 (6):887-901.
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  • Persistent operational synchrony within brain default-mode network and self-processing operations in healthy subjects.Andrew A. Fingelkurts & Alexander A. Fingelkurts - 2011 - Brain and Cognition 75 (2):79-90.
    Based on the theoretical analysis of self-consciousness concepts, we hypothesized that the spatio-temporal pattern of functional connectivity within the default-mode network (DMN) should persist unchanged across a variety of different cognitive tasks or acts, thus being task-unrelated. This supposition is in contrast with current understanding that DMN activated when the subjects are resting and deactivated during any attention-demanding cognitive tasks. To test our proposal, we used, in retrospect, the results from our two early studies ([Fingelkurts, 1998] and [Fingelkurts et al., (...)
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  • Hypnotic induction decreases anterior default mode activity.William J. McGeown, Giuliana Mazzoni, Annalena Venneri & Irving Kirsch - 2009 - Consciousness and Cognition 18 (4):848-855.
    The ‘default mode’ network refers to cortical areas that are active in the absence of goal-directed activity. In previous studies, decreased activity in the ‘default mode’ has always been associated with increased activation in task-relevant areas. We show that the induction of hypnosis can reduce anterior default mode activity during rest without increasing activity in other cortical regions. We assessed brain activation patterns of high and low suggestible people while resting in the fMRI scanner and while engaged in visual tasks, (...)
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  • Hypnotic phenomena and altered states of consciousness: A multilevel framework of description and explanation.Sakari Kallio & Antti Revonsuo - 2003 - Contemporary Hypnosis 20 (3):111-164.
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  • Hypnosis and hemispheric asymmetry.Peter L. N. Naish - 2010 - Consciousness and Cognition 19 (1):230-234.
    Participants of low and high hypnotic susceptibility were tested on a temporal order judgement task, both with and without hypnosis. Judgements were made of the order of presentation of light flashes appearing in first one hemi-field then the other. There were differences in the inter-stimulus intervals required accurately to report the order, depending upon which hemi-field led. This asymmetry was most marked in hypnotically susceptible participants and reversed when they were hypnotised. This implies not only that brain activity changes in (...)
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