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  1. Training effortless attention.M. I. Posner, M. K. Rothbart, M. R. Rueda & Y. Tang - 2010 - In Brian Bruya (ed.), Effortless Attention: A New Perspective in the Cognitive Science of Attention and Action. MIT Press.
    This chapter explains the concept of effort on the basis of evidence from experimental and cognitive psychology, demonstrates how it has been used in conducting studies of brain activity, and goes on to examine the individual differences that play a role in determining the efficiency of brain networks associated with effortful control. It also reviews certain educational training methods; those when used among children can change these networks, along with conditional changes developed in adults through meditation training. The findings reveal (...)
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  • The Phenomenology of Action: A Conceptual Framework.Elisabeth Pacherie - 2008 - Cognition 107 (1):179 - 217.
    After a long period of neglect, the phenomenology of action has recently regained its place in the agenda of philosophers and scientists alike. The recent explosion of interest in the topic highlights its complexity. The purpose of this paper is to propose a conceptual framework allowing for a more precise characterization of the many facets of the phenomenology of agency, of how they are related and of their possible sources. The key assumption guiding this attempt is that the processes through (...)
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  • From phantom limb to phantom body: Varieties of extracorporeal awareness.Peter Brugger - 2006 - In Günther Knoblich, Ian Thornton, Marc Grosjean & Maggie Shiffrar (eds.), Human Body Perception From the Inside Out. Oxford University Press. pp. 171-209.
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  • Brain, conscious experience, and the observing self.Bernard J. Baars, Thomas Zoega Ramsoy & Steven Laureys - 2003 - Trends in Neurosciences 26 (12):671-5.
    Conscious perception, like the sight of a coffee cup, seems to involve the brain identifying a stimulus. But conscious input activates more brain regions than are needed to identify coffee cups and faces. It spreads beyond sensory cortex to frontoparietal association areas, which do not serve stimulus identification as such. What is the role of those regions? Parietal cortex support the ‘first person perspective’ on the visual world, unconsciously framing the visual object stream. Some prefrontal areas select and interpret conscious (...)
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  • Towards a cognitive neuroscience of consciousness: Basic evidence and a workspace framework.Stanislas Dehaene & Lionel Naccache - 2001 - Cognition 79 (1):1-37.
    This introductory chapter attempts to clarify the philosophical, empirical, and theoretical bases on which a cognitive neuroscience approach to consciousness can be founded. We isolate three major empirical observations that any theory of consciousness should incorporate, namely (1) a considerable amount of processing is possible without consciousness, (2) attention is a prerequisite of consciousness, and (3) consciousness is required for some specific cognitive tasks, including those that require durable information maintenance, novel combinations of operations, or the spontaneous generation of intentional (...)
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  • Neural correlates of establishing, maintaining, and switching brain states.Yi-Yuan Tang, Mary K. Rothbart & Michael I. Posner - 2012 - Trends in Cognitive Sciences 16 (6):330.
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  • Perceptions as hypotheses.Richard L. Gregory - 1974 - In Philosophy Of Psychology. London: : Macmillan.
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  • What about the “Self” is Processed in the Posterior Cingulate Cortex?Judson A. Brewer, Kathleen A. Garrison & Susan Whitfield-Gabrieli - 2013 - Frontiers in Human Neuroscience 7.
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  • The emergence of a shared action ontology: Building blocks for a theory.Thomas Metzinger & Vittorio Gallese - 2003 - Consciousness and Cognition 12 (4):549-571.
    To have an ontology is to interpret a world. In this paper we argue that the brain, viewed as a representational system aimed at interpreting our world, possesses an ontology too. It creates primitives and makes existence assumptions. It decomposes target space in a way that exhibits a certain invariance, which in turn is functionally significant. We will investigate which are the functional regularities guiding this decomposition process, by answering to the following questions: What are the explicit and implicit assumptions (...)
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  • The proactive brain: using analogies and associations to generate predictions.Moshe Bar - 2007 - Trends in Cognitive Sciences 11 (7):280-289.
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  • (2 other versions)Meditation and the neuroscience of consciousness: An introduction.John D. Dunne, Antione Lutz & Richard Davidson - 2007 - In Morris Moscovitch, Philip Zelazo & Evan Thompson (eds.), Cambridge Handbook of Consciousness. New York: Cambridge University Press.
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  • Brain function in coma, vegetative state, and related disorders.Steven Laureys, Adrian M. Owen & Nicholas D. Schiff - 2004 - Lancet Neurology 3:537-546.
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  • Neural systems supporting interoceptive awareness.Hugo D. Critchley, Stefan Wiens, Pia Rotshtein, Arne Öhman & Raymond J. Dolan - 2004 - Nature Neuroscience 7 (2):189-195.
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  • Human feelings: Why are some more aware than others?A. D. Craig - 2004 - Trends in Cognitive Sciences 8 (6):239-241.
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  • Consciousness.Adam Z. J. Zeman - 2001 - Brain 124 (7):1263-89.
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