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  1. Static-Dynamic Hybridity in Dynamical Models of Cognition.Naftali Weinberger & Colin Allen - 2022 - Philosophy of Science 89 (2):283-301.
    Dynamical models of cognition have played a central role in recent cognitive science. In this paper, we consider a common strategy by which dynamical models describe their target systems neither as purely static nor as purely dynamic, but rather using a hybrid approach. This hybridity reveals how dynamical models involve representational choices that are important for understanding the relationship between dynamical and non-dynamical representations of a system.
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  • In defense of some "cartesian" assumption concerning the brain and its operation.Rick Grush - 2003 - Biology and Philosophy 18 (1):53-92.
    I argue against a growing radical trend in current theoretical cognitive science that moves from the premises of embedded cognition, embodied cognition, dynamical systems theory and/or situated robotics to conclusions either to the effect that the mind is not in the brain or that cognition does not require representation, or both. I unearth the considerations at the foundation of this view: Haugeland's bandwidth-component argument to the effect that the brain is not a component in cognitive activity, and arguments inspired by (...)
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  • Under Pressure: Processing Representational Decoupling in False-Belief Tasks.Anna Ciaunica - 2014 - Review of Philosophy and Psychology 5 (4):527-542.
    Several studies demonstrated that children younger than 3 years of age, who consistently fail the standard verbal false-belief task, can anticipate others’ actions based on their attributed false beliefs. This gave rise to the so-called “Developmental Paradox”. De Bruin and Kästner recently suggested that the Developmental Paradox is best addressed in terms of the relation between coupled and decoupled processes and argued that if enactivism is to be a genuine alternative to classic cognitivism, it should be able to bridge the (...)
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  • Mental machines.David L. Barack - 2019 - Biology and Philosophy 34 (6):63.
    Cognitive neuroscientists are turning to an increasingly rich array of neurodynamical systems to explain mental phenomena. In these explanations, cognitive capacities are decomposed into a set of functions, each of which is described mathematically, and then these descriptions are mapped on to corresponding mathematical descriptions of the dynamics of neural systems. In this paper, I outline a novel explanatory schema based on these explanations. I then argue that these explanations present a novel type of dynamicism for the philosophy of mind (...)
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  • Mental machines.David L. Barack - 2019 - Biology and Philosophy 34 (6):63.
    Cognitive neuroscientists are turning to an increasingly rich array of neurodynamical systems to explain mental phenomena. In these explanations, cognitive capacities are decomposed into a set of functions, each of which is described mathematically, and then these descriptions are mapped on to corresponding mathematical descriptions of the dynamics of neural systems. In this paper, I outline a novel explanatory schema based on these explanations. I then argue that these explanations present a novel type of dynamicism for the philosophy of mind (...)
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  • How Beliefs Make A Difference.Susan G. Sterrett - 1999 - Dissertation, University of Pittsburgh
    How are beliefs efficacious? One answer is: via rational intentional action. But there are other ways that beliefs are efficacious. This dissertation examines these other ways, and sketches an answer to the question of how beliefs are efficacious that takes into account how beliefs are involved in the full range of behavioral disciplines, from psychophysiology and cognition to social and economic phenomena. The account of how beliefs are efficacious I propose draws on work on active accounts of perception. I develop (...)
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  • Six Views of Embodied Cognition.Margaret Wilson - 2002 - Psychonomic Bulletin and Review 9 (4):625--636.