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  1. Free-energy and the brain.Karl Friston & Klaas Stephan - 2007 - Synthese 159 (3):417-458.
    If one formulates Helmholtz’s ideas about perception in terms of modern-day theories one arrives at a model of perceptual inference and learning that can explain a remarkable range of neurobiological facts. Using constructs from statistical physics it can be shown that the problems of inferring what cause our sensory inputs and learning causal regularities in the sensorium can be resolved using exactly the same principles. Furthermore, inference and learning can proceed in a biologically plausible fashion. The ensuing scheme rests on (...)
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  • Remembering the past and imagining the future: A neural model of spatial memory and imagery.Patrick Byrne, Suzanna Becker & Neil Burgess - 2007 - Psychological Review 114 (2):340-375.
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  • The neurobiology of semantic memory.Jeffrey R. Binder & Rutvik H. Desai - 2011 - Trends in Cognitive Sciences 15 (11):527-536.
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  • The Time Machine in Our Mind.Kurt Stocker - 2012 - Cognitive Science 36 (3):385-420.
    This article provides the first comprehensive conceptual account for the imagistic mental machinery that allows us to travel through time—for the time machine in our mind. It is argued that language reveals this imagistic machine and how we use it. Findings from a range of cognitive fields are theoretically unified and a recent proposal about spatialized mental time travel is elaborated on. The following novel distinctions are offered: external versus internal viewing of time; ‘‘watching” time versus projective ‘‘travel” through time; (...)
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  • Coordinating with the future: The anticipatory nature of representation. [REVIEW]Giovanni Pezzulo - 2008 - Minds and Machines 18 (2):179-225.
    Humans and other animals are able not only to coordinate their actions with their current sensorimotor state, but also to imagine, plan and act in view of the future, and to realize distal goals. In this paper we discuss whether or not their future-oriented conducts imply (future-oriented) representations. We illustrate the role played by anticipatory mechanisms in natural and artificial agents, and we propose a notion of representation that is grounded in the agent’s predictive capabilities. Therefore, we argue that the (...)
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  • Free-Energy and the Brain.Karl J. Friston & Klaas E. Stephan - 2007 - Synthese 159 (3):417 - 458.
    If one formulates Helmholtz's ideas about perception in terms of modern-day theories one arrives at a model of perceptual inference and learning that can explain a remarkable range of neurobiological facts. Using constructs from statistical physics it can be shown that the problems of inferring what cause our sensory inputs and learning causal regularities in the sensorium can be resolved using exactly the same principles. Furthermore, inference and learning can proceed in a biologically plausible fashion. The ensuing scheme rests on (...)
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  • Examining the role of the temporo-parietal network in memory, imagery, and viewpoint transformations.Kiret Dhindsa, Vladislav Drobinin, John King, Geoffrey B. Hall, Neil Burgess & Suzanna Becker - 2014 - Frontiers in Human Neuroscience 8.
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  • Creative thinking as orchestrated by semantic processing vs. cognitive control brain networks.Anna Abraham - 2014 - Frontiers in Human Neuroscience 8.
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  • Spatial memory: how egocentric and allocentric combine.Neil Burgess - 2006 - Trends in Cognitive Sciences 10 (12):551-557.
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