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  1. An Integrative Theory of Prefrontal Cortex Function.Earl K. Miller & Jonathan D. Cohen - 2001 - Annual Review of Neuroscience 24 (1):167-202.
    The prefrontal cortex has long been suspected to play an important role in cognitive control, in the ability to orchestrate thought and action in accordance with internal goals. Its neural basis, however, has remained a mystery. Here, we propose that cognitive control stems from the active maintenance of patterns of activity in the prefrontal cortex that represent goals and the means to achieve them. They provide bias signals to other brain structures whose net effect is to guide the flow of (...)
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  • A Systematic Investigation of the Effect of Action Observation Training and Motor Imagery Training on the Development of Mental Representation Structure and Skill Performance.Taeho Kim, Cornelia Frank & Thomas Schack - 2017 - Frontiers in Human Neuroscience 11.
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  • The emulation theory of representation: Motor control, imagery, and perception.Rick Grush - 2004 - Behavioral and Brain Sciences 27 (3):377-396.
    The emulation theory of representation is developed and explored as a framework that can revealingly synthesize a wide variety of representational functions of the brain. The framework is based on constructs from control theory (forward models) and signal processing (Kalman filters). The idea is that in addition to simply engaging with the body and environment, the brain constructs neural circuits that act as models of the body and environment. During overt sensorimotor engagement, these models are driven by efference copies in (...)
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  • The influence of expertise on brain activation of the action observation network during anticipation of tennis and volleyball serves.Nils Balser, Britta Lorey, Sebastian Pilgramm, Tim Naumann, Stefan Kindermann, Rudolf Stark, Karen Zentgraf, A. Mark Williams & Jörn Munzert - 2014 - Frontiers in Human Neuroscience 8.
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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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  • Inhibition and the right inferior frontal cortex.Adam R. Aron, Trevor W. Robbins & Russell A. Poldrack - 2004 - Trends in Cognitive Sciences 8 (4):170-177.
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  • A neuropsychological theory of motor skill learning.Daniel B. Willingham - 1998 - Psychological Review 105 (3):558-584.
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