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  1. Volition and the idle cortex: Beta oscillatory activity preceding planned and spontaneous movement.Scott L. Fairhall, Ian J. Kirk & Jeff P. Hamm - 2007 - Consciousness and Cognition 16 (2):221-228.
    Prior to the initiation of spontaneous movement, evoked potentials can be seen to precede awareness of the impending movement by several hundreds of milliseconds, meaning that this recorded neural activity is the result of unconscious processing. This study investigates the neural representations of impending movement with and without awareness. Specifically, the relationship between awareness and ‘idling’ cortical oscillations in the beta range was assessed. It was found that, in situations where there was awareness of the impending movement, pre-movement evoked potentials (...)
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  • Unconscious modulation of the conscious experience of voluntary control.Katrin Linser & Thomas Goschke - 2007 - Cognition 104 (3):459-475.
    How does the brain generate our experience of being in control over our actions and their effects? Here, we argue that the perception of events as self-caused emerges from a comparison between anticipated and actual action-effects: if the representation of an event that follows an action is activated before the action, the event is experienced as caused by one’s own action, whereas in the case of a mismatch it will be attributed to an external cause rather than to the self. (...)
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  • Non-conscious word processing in a mirror-masking paradigm causing attentional distraction: An ERP-study.Marco Hollenstein, Thomas Koenig, Matthias Kubat, Daniela Blaser & Walter J. Perrig - 2012 - Consciousness and Cognition 21 (1):353-365.
    In this event-related potential study a masking technique that prevents conscious perception of words and non-words through attentional distraction was used to reveal the temporal dynamics of word processing under non-conscious and conscious conditions. In the non-conscious condition, ERP responses differed between masked words and non-words from 112 to 160 ms after stimulus-onset over posterior brain areas. The early onset of the word–non-word differences was compatible with previous studies that reported non-conscious access to orthographic information within this time period. Moreover, (...)
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