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  1. Illustrating a neural model of logic computations: The case of Sherlock Holmes’ old maxim.Eduardo Mizraji - 2016 - Theoria: Revista de Teoría, Historia y Fundamentos de la Ciencia 31 (1):7-25.
    Natural languages can express some logical propositions that humans are able to understand. We illustrate this fact with a famous text that Conan Doyle attributed to Holmes: “It is an old maxim of mine that when you have excluded the impossible, whatever remains, however improbable, must be the truth”. This is a subtle logical statement usually felt as an evident true. The problem we are trying to solve is the cognitive reason for such a feeling. We postulate here that we (...)
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  • Book: Cognitive Design for Artificial Minds.Antonio Lieto - 2021 - London, UK: Routledge, Taylor & Francis Ltd.
    Book Description (Blurb): Cognitive Design for Artificial Minds explains the crucial role that human cognition research plays in the design and realization of artificial intelligence systems, illustrating the steps necessary for the design of artificial models of cognition. It bridges the gap between the theoretical, experimental and technological issues addressed in the context of AI of cognitive inspiration and computational cognitive science. -/- Beginning with an overview of the historical, methodological and technical issues in the field of Cognitively-Inspired Artificial Intelligence, (...)
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  • Reconciling reinforcement learning models with behavioral extinction and renewal: Implications for addiction, relapse, and problem gambling.A. David Redish, Steve Jensen, Adam Johnson & Zeb Kurth-Nelson - 2007 - Psychological Review 114 (3):784-805.
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  • A unified framework for addiction: Vulnerabilities in the decision process.A. David Redish, Steve Jensen & Adam Johnson - 2008 - Behavioral and Brain Sciences 31 (4):415-437.
    The understanding of decision-making systems has come together in recent years to form a unified theory of decision-making in the mammalian brain as arising from multiple, interacting systems (a planning system, a habit system, and a situation-recognition system). This unified decision-making system has multiple potential access points through which it can be driven to make maladaptive choices, particularly choices that entail seeking of certain drugs or behaviors. We identify 10 key vulnerabilities in the system: (1) moving away from homeostasis, (2) (...)
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  • The Development of Scientific Concepts and their Embodiment in the Representational Activities of Cognitive Systems.Markus Peschl - 1996 - Philosophica 57 (1).
  • Constructivism, cognition, and science – an investigation of its links and possible shortcomings.Markus F. Peschl - 2001 - Foundations of Science 6 (1-3):125-161.
    This paper addresses the questions concerningthe relationship between scientific andcognitive processes. The fact that both,science and cognition, aim at acquiring somekind of knowledge or representationabout the world is the key for establishing alink between these two domains. It turns outthat the constructivist frameworkrepresents an adequate epistemologicalfoundation for this undertaking, as its focusof interest is on the (constructive)relationship between the world and itsrepresentation. More specifically, it will beshown how cognitive processes and their primaryconcern to construct a representation of theenvironment and to (...)
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  • Philosophical challenges for researchers at the interface between neuroscience and education.Paul Howard-Jones - 2008 - Journal of Philosophy of Education 42 (3-4):361-380.
    This article examines how discussions around the new interdisciplinary research area combining neuroscience and education have brought into sharp relief differences in the philosophies of learning in these two areas. It considers the difficulties faced by those working at the interface between these two areas and, in particular, it focuses on the challenge of avoiding 'non-sense' when attempting to include the brain in educational argument. The paper relates common transgressions in sense-making with dualist and monist notions of the mind-brain relationship. (...)
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  • Narrating the Brain.Edwin E. Gantt, Jeffrey R. Lacasse, Jacob Z. Hess & Nathan Vierling-Claassen - 2014 - Journal of Phenomenological Psychology 45 (2):168-208.
    Public conversation about biological contributors to mental disorder often centers on whether the problem is “biological or not.” In this paper, we propose moving beyond this bifurcation to a very different question:how exactlyare these problems understood to be biological? Specifically, we consider four issues around which different interpretations of the body’s relationship to mental disorder exist:1. The body’s relationship to day-to-day action; 2. The extent to which the body is changeable; 3. The body’s relationship to context; 4. The degree to (...)
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  • Language, Gesture, and Emotional Communication: An Embodied View of Social Interaction.Elisa De Stefani & Doriana De Marco - 2019 - Frontiers in Psychology 10.
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  • On the biological plausibility of grandmother cells: Implications for neural network theories in psychology and neuroscience.Jeffrey S. Bowers - 2009 - Psychological Review 116 (1):220-251.
    A fundamental claim associated with parallel distributed processing theories of cognition is that knowledge is coded in a distributed manner in mind and brain. This approach rejects the claim that knowledge is coded in a localist fashion, with words, objects, and simple concepts, that is, coded with their own dedicated representations. One of the putative advantages of this approach is that the theories are biologically plausible. Indeed, advocates of the PDP approach often highlight the close parallels between distributed representations learned (...)
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  • From a rule-based conception to dynamic patterns. Analyzing the self-organization of legal systems.Daniéle Bourcier & Gérard Clergue - 1999 - Artificial Intelligence and Law 7 (2-3):211-225.
    The representation of knowledge in the law has basically followed a rule-based logical-symbolic paradigm. This paper aims to show how the modeling of legal knowledge can be re-examined using connectionist models, from the perspective of the theory of the dynamics of unstable systems and chaos. We begin by showing the nature of the paradigm shift from a rule-based approach to one based on dynamic structures and by discussing how this would translate into the field of theory of law. In order (...)
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  • Creativity refined: Bypassing the gatekeepers of appropriateness and value.Alan Dorin & Kevin Korb - unknown
  • A comparison of different cognitive paradigms using simple animats in a virtual laboratory, with implications to the notion of cognition.Carlos Gershenson - 2002
    In this thesis I present a virtual laboratory which implements five different models for controlling animats: a rule-based system, a behaviour-based system, a concept-based system, a neural network, and a Braitenberg architecture. Through different experiments, I compare the performance of the models and conclude that there is no best model, since different models are better for different things in different contexts. The models I chose, although quite simple, represent different approaches for studying cognition. Using the results as an empirical philosophical (...)
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  • What do neural nets and quantum theory tell us about mind and reality?P. Werbos - 2002 - In Kunio Yasue, Marj Jibu & Tarcisio Della Senta (eds.), No Matter, Never Mind: Proceedings of Toward a Science of Consciousness: Fundamental Approaches (Tokyo '99). John Benjamins. pp. 33--63.
  • Methodological Problems on the Way to Integrative Human Neuroscience.Kotchoubey Boris, Tretter Felix, A. Braun Hans, Buchheim Thomas, Draguhn Andreas, Fuchs Thomas, Hasler Felix, Hastedt Heiner, Hinterberger Thilo, Northoff Georg, Rentschler Ingo, Schleim Stephan, Sellmaier Stephan, Van Elst Ludger Tebartz & Tschacher Wolfgang - unknown
    Neuroscience is a multidisciplinary effort to understand the structures and functions of the brain and brain-mind relations. This effort results in an increasing amount of data, generated by sophisticated technologies. However, these data enhance our descriptive knowledge, rather than improve our understanding of brain functions. This is caused by methodological gaps both within and between subdisciplines constituting neuroscience, and the atomistic approach that limits the study of macro- and mesoscopic issues. Whole-brain measurement technologies do not resolve these issues, but rather (...)
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