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  1. Ecological constraints on internal representation: Resonant kinematics of perceiving, imagining, thinking, and dreaming.Roger N. Shepard - 1984 - Psychological Review 91 (4):417-447.
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  • The representing brain: Neural correlates of motor intention and imagery.Marc Jeannerod - 1994 - Behavioral and Brain Sciences 17 (2):187-202.
    This paper concerns how motor actions are neurally represented and coded. Action planning and motor preparation can be studied using a specific type of representational activity, motor imagery. A close functional equivalence between motor imagery and motor preparation is suggested by the positive effects of imagining movements on motor learning, the similarity between the neural structures involved, and the similar physiological correlates observed in both imaging and preparing. The content of motor representations can be inferred from motor images at a (...)
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  • Motor Cognition: What Actions Tell the Self.Marc Jeannerod - 2006 - Oxford University Press.
    Our ability to acknowledge and recognise our own identity - our 'self' - is a characteristic doubtless unique to humans. Where does this feeling come from? How does the combination of neurophysiological processes coupled with our interaction with the outside world construct this coherent identity? We know that our social interactions contribute via the eyes, ears etc. However, our self is not only influenced by our senses. It is also influenced by the actions we perform and those we see others (...)
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  • Autonomic nervous system correlates in movement observation and motor imagery.C. Collet, F. Di Rienzo, N. El Hoyek & A. Guillot - 2013 - Frontiers in Human Neuroscience 7.
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  • Neural Mechanisms for Interacting with a World Full of Action Choices.Paul Cisek & John F. Kalaska - 2010 - Annual Review of Neuroscience 33:269-298.
    The neural bases of behavior are often discussed in terms of perceptual, cognitive, and motor stages, defined within an information processing framework that was originally inspired by models of human abstract problem solving. Here, we review a growing body of neurophysiological data that is difficult to reconcile with this influential theoretical perspective. As an alternative foundation for interpreting neural data, we consider frameworks borrowed from ethology, which emphasize the kinds of real-time interactive behaviors that animals have engaged in for millions (...)
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