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  1. Radical Embodied Cognitive Science.Anthony Chemero - 2009 - Bradford.
    While philosophers of mind have been arguing over the status of mental representations in cognitive science, cognitive scientists have been quietly engaged in studying perception, action, and cognition without explaining them in terms of mental representation. In this book, Anthony Chemero describes this nonrepresentational approach, puts it in historical and conceptual context, and applies it to traditional problems in the philosophy of mind. Radical embodied cognitive science is a direct descendant of the American naturalist psychology of William James and John (...)
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  • Recovering Understanding.Linda Zagzebski - 2001 - In Matthias Steup (ed.), Knowledge, truth, and duty: essays on epistemic justification, responsibility, and virtue. New York: Oxford University Press.
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  • Six Views of Embodied Cognition.Margaret Wilson - 2002 - Psychonomic Bulletin and Review 9 (4):625--636.
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  • (1 other version)The Current Relevance of Merleau-Ponty's Phenomenology of Embodiment.Hubert L. Dreyfus - 1998 - Electronic Journal of Analytic Philosophy.
    In this paper I would like to explain, defend, and draw out the implications of this claim. Since the intentional arc is supposed to embody the interconnection of skillful action and perception, I will first lay out an account of skill.
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  • On understanding understanding.Roger Penrose - 1997 - International Studies in the Philosophy of Science 11 (1):7 – 20.
    It is argued, by use of specific examples, that mathematical understanding is something which cannot be modelled in terms of entirely computational procedures. Our conception of a natural number (a non-negative integer: 0, 1, 2, 3,…) is something which goes beyond any formulation in terms of computational rules. Our ability to perceive the properties of natural numbers depends upon our awareness, and represents just one of the many ways in which awareness provides an essential ingredient to our ability to understand. (...)
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  • The brain's concepts: The role of the sensory-motor system in conceptual knowledge.Vittorio Gallese & George Lakoff - 2007 - Cognitive Neuropsychology 22 (3-4):455-479.
    Concepts are the elementary units of reason and linguistic meaning. They are conventional and relatively stable. As such, they must somehow be the result of neural activity in the brain. The questions are: Where? and How? A common philosophical position is that all concepts—even concepts about action and perception—are symbolic and abstract, and therefore must be implemented outside the brain’s sensory-motor system. We will argue against this position using (1) neuroscientific evidence; (2) results from neural computation; and (3) results about (...)
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  • Perceptions of perceptual symbols.Lawrence Barsalou - 1999 - Behavioral and Brain Sciences 22 (4):637-660.
    Various defenses of amodal symbol systems are addressed, including amodal symbols in sensory-motor areas, the causal theory of concepts, supramodal concepts, latent semantic analysis, and abstracted amodal symbols. Various aspects of perceptual symbol systems are clarified and developed, including perception, features, simulators, category structure, frames, analogy, introspection, situated action, and development. Particular attention is given to abstract concepts, language, and computational mechanisms.
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  • From monkey-like action recognition to human language: An evolutionary framework for neurolinguistics.Michael A. Arbib - 2005 - Behavioral and Brain Sciences 28 (2):105-124.
    The article analyzes the neural and functional grounding of language skills as well as their emergence in hominid evolution, hypothesizing stages leading from abilities known to exist in monkeys and apes and presumed to exist in our hominid ancestors right through to modern spoken and signed languages. The starting point is the observation that both premotor area F5 in monkeys and Broca's area in humans contain a “mirror system” active for both execution and observation of manual actions, and that F5 (...)
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  • Is understanding a species of knowledge?Stephen R. Grimm - 2006 - British Journal for the Philosophy of Science 57 (3):515-535.
    Among philosophers of science there seems to be a general consensus that understanding represents a species of knowledge, but virtually every major epistemologist who has thought seriously about understanding has come to deny this claim. Against this prevailing tide in epistemology, I argue that understanding is, in fact, a species of knowledge: just like knowledge, for example, understanding is not transparent and can be Gettiered. I then consider how the psychological act of "grasping" that seems to be characteristic of understanding (...)
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  • (1 other version)The current relevance of Merleau-ponty's phenomenology of embodiment.Hubert L. Dreyfus - unknown
    In this paper I would like to explain, defend, and draw out the implications of this claim. Since the intentional arc is supposed to embody the interconnection of skillful action and perception, I will first lay out an account of skill.
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  • The Ecological Approach to Visual Perception: Classic Edition.James J. Gibson - 1979 - Houghton Mifflin.
    This is a book about how we see: the environment around us (its surfaces, their layout, and their colors and textures); where we are in the environment; whether or not we are moving and, if we are, where we are going; what things are good for; how to do things (to thread a needle or drive an automobile); or why things look as they do.The basic assumption is that vision depends on the eye which is connected to the brain. The (...)
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  • Being There: Putting Brain, Body, and World Together Again.Andy Clark - 1981 - MIT Press.
    In treating cognition as problem solving, Andy Clark suggests, we may often abstract too far from the very body and world in which our brains evolved to guide...
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  • An embodied cognitive science?Andy Clark - 1999 - Trends in Cognitive Sciences 3 (9):345-351.
    The last ten years have seen an increasing interest, within cognitive science, in issues concerning the physical body, the local environment, and the complex interplay between neural systems and the wider world in which they function. --œPhysically embodied, environmentally embedded--� approaches thus loom large on the contemporary cognitive scientific scene. Yet many unanswered questions remain, and the shape of a genuinely embodied, embedded science of the mind is still unclear. I begin by sketching a few examples of the approach, and (...)
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  • Simulation and self-knowledge: A defence of the theory-theory.Peter Carruthers - 1996 - In Peter Carruthers & Peter K. Smith (eds.), Theories of Theories of Mind. New York: Cambridge University Press. pp. 22--38.
    In this chapter I attempt to curb the pretensions of simulationism. I argue that it is, at best, an epistemological doctrine of limited scope. It may explain how we go about attributing beliefs and desires to others, and perhaps to ourselves, in some cases. But simulation cannot provide the fundamental basis of our conception of, or knowledge of, minded agency.
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  • Perceptual symbol systems.Lawrence W. Barsalou - 1999 - Behavioral and Brain Sciences 22 (4):577-660.
    Prior to the twentieth century, theories of knowledge were inherently perceptual. Since then, developments in logic, statis- tics, and programming languages have inspired amodal theories that rest on principles fundamentally different from those underlying perception. In addition, perceptual approaches have become widely viewed as untenable because they are assumed to implement record- ing systems, not conceptual systems. A perceptual theory of knowledge is developed here in the context of current cognitive science and neuroscience. During perceptual experience, association areas in the (...)
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  • (2 other versions)Facing up to the problem of consciousness.David Chalmers - 1995 - Journal of Consciousness Studies 2 (3):200-19.
    To make progress on the problem of consciousness, we have to confront it directly. In this paper, I first isolate the truly hard part of the problem, separating it from more tractable parts and giving an account of why it is so difficult to explain. I critique some recent work that uses reductive methods to address consciousness, and argue that such methods inevitably fail to come to grips with the hardest part of the problem. Once this failure is recognized, the (...)
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  • The Value of Knowledge and the Pursuit of Understanding.Jonathan L. Kvanvig - 2003 - Cambridge University Press.
    Epistemology has for a long time focused on the concept of knowledge and tried to answer questions such as whether knowledge is possible and how much of it there is. Often missing from this inquiry, however, is a discussion on the value of knowledge. In The Value of Knowledge and the Pursuit of Understanding Jonathan Kvanvig argues that epistemology properly conceived cannot ignore the question of the value of knowledge. He also questions one of the most fundamental assumptions in epistemology, (...)
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  • (2 other versions)Facing up to the problem of consciousness.D. J. Chalmers - 1996 - Toward a Science of Consciousness:5-28.
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  • The Ecological Approach to Visual Perception.Marc H. Bornstein - 1980 - Journal of Aesthetics and Art Criticism 39 (2):203-206.
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  • (1 other version)The Body in the Mind: The Bodily Basis of Meaning, Imagination, and Reason.Mark Johnson - 1987 - The Personalist Forum 5 (1):58-60.
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  • (3 other versions)Phenomenology of Perception.Maurice Merleau-Ponty - 1962 - New York: Routledge. Edited by Donald A. Landes.
    Challenging and rewarding in equal measure, _Phenomenology of Perception_ is Merleau-Ponty's most famous work. Impressive in both scope and imagination, it uses the example of perception to return the _body_ to the forefront of philosophy for the first time since Plato. Drawing on case studies such as brain-damaged patients from the First World War, Merleau-Ponty brilliantly shows how the body plays a crucial role not only in perception but in speech, sexuality and our relation to others. Perhaps above all, Merleau-Ponty's (...)
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  • (3 other versions)Phenomenology of Perception.Maurice Merleau-Ponty - 1945 - New York: Routledge. Edited by Donald A. Landes.
    First published in 1945, Maurice Merleau-Ponty’s monumental _Phénoménologie de la perception _signalled the arrival of a major new philosophical and intellectual voice in post-war Europe. Breaking with the prevailing picture of existentialism and phenomenology at the time, it has become one of the landmark works of twentieth-century thought. This new translation, the first for over fifty years, makes this classic work of philosophy available to a new generation of readers. _Phenomenology of Perception _stands in the great phenomenological tradition of Husserl, (...)
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  • Autopoiesis and Cognition: The Realization of the Living.Humberto Muturana, H. R. Maturana & F. J. Varela - 1973/1980 - Springer.
    What makes a living system a living system? What kind of biological phenomenon is the phenomenon of cognition? These two questions have been frequently considered, but, in this volume, the authors consider them as concrete biological questions. Their analysis is bold and provocative, for the authors have constructed a systematic theoretical biology which attempts to define living systems not as objects of observation and description, nor even as interacting systems, but as self-contained unities whose only reference is to themselves. The (...)
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  • Where Mathematics Comes From How the Embodied Mind Brings Mathematics Into Being.George Lakoff & Rafael E. Núñez - 2000
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  • (2 other versions)Metaphor Interpretation as Embodied Simulation.Raymond W. Gibbs - 2006 - Mind Language 21 (3):434-458.
    Cognitive theories of metaphor understanding are typically described in terms of the mappings between different kinds of abstract, schematic, disembodied knowledge. My claim in this paper is that part of our ability to make sense of metaphorical language, both individual utterances and extended narratives, resides in the automatic construction of a simulation whereby we imagine performing the bodily actions referred to in the language. Thus, understanding metaphorical expressions like ‘grasp a concept’ or ‘get over’ an emotion involve simulating what it (...)
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  • Introduction: Mind embodied, embedded, enacted: One church or many?Julian Kiverstein & Andy Clark - 2009 - Topoi 28 (1):1-7.
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  • A robot that walks; emergent behaviors from a carefully evolved network.Rodney A. Brooks - unknown
    Most animals have significant behavioral expertise built in without having to explicitly learn it all from scratch. This expertise is a product of evolution of the organism; it can be viewed as a very long term form of learning which provides a structured system within which individuals might learn more specialized skills or abilities. This paper suggests one possible mechanism for analagous robot evolution by describing a carefully designed series of networks, each one being a strict augmentation of the previous (...)
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  • (2 other versions)Metaphor interpretation as embodied simulation.Raymond W. Gibbs - 2006 - Mind and Language 21 (3):434–458.
    Cognitive theories of metaphor understanding are typically described in terms of the mappings between different kinds of abstract, schematic, disembodied knowledge. My claim in this paper is that part of our ability to make sense of metaphorical language, both individual utterances and extended narratives, resides in the automatic construction of a simulation whereby we imagine performing the bodily actions referred to in the language. Thus, understanding metaphorical expressions like ‘grasp a concept’ or ‘get over’ an emotion involve simulating what it (...)
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  • (4 other versions)Neurophenomenology.Antoine Lutz & Evan Thompson - 2003 - Journal of Consciousness Studies 10 (9-10):31-52.
    _sciousness called ‘neurophenomenology’ (Varela 1996) and illustrates it with a_ _recent pilot study (Lutz et al., 2002). At a theoretical level, neurophenomenology_ _pursues an embodied and large-scale dynamical approach to the_ _neurophysiology of consciousness (Varela 1995; Thompson and Varela 2001;_ _Varela and Thompson 2003). At a methodological level, the neurophenomeno-_ _logical strategy is to make rigorous and extensive use of first-person data about_ _subjective experience as a heuristic to describe and quantify the large-scale_ _neurodynamics of consciousness (Lutz 2002). The paper (...)
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  • The Body in the Mind: The Bodily Basis of Meaning, Imagination, and Reason.Mark Johnson - 1987 - Chicago: University of Chicago Press.
    "There are books—few and far between—which carefully, delightfully, and genuinely turn your head inside out. This is one of them. It ranges over some central issues in Western philosophy and begins the long overdue job of giving us a radically new account of meaning, rationality, and objectivity."—Yaakov Garb, _San Francisco Chronicle_.
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  • Autopoiesis, structural coupling and cognition.Humberto Maturana - manuscript
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  • The Cognitive Neuroscience of Insight.John Kounios - 2018 - Frontiers in Human Neuroscience 12.
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  • Metaphors We Live by.Max Black - 1980 - Journal of Aesthetics and Art Criticism 40 (2):208-210.
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  • Phenomenology of Perception.Mary Warnock - 1964 - Philosophical Quarterly 14 (57):372-375.
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  • The Education of Perception.Robert L. Goldstone, David H. Landy & Ji Y. Son - 2010 - Topics in Cognitive Science 2 (2):265-284.
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  • (4 other versions)Neurophenomenology - integrating subjective experience and brain dynamics in the neuroscience of consciousness.Antoine Lutz & Evan Thompson - 2003 - Journal of Consciousness Studies 10 (9-10):31-52.
    The paper presents a research programme for the neuroscience of consciousness called 'neurophenomenology' and illustrates it with a recent pilot study . At a theoretical level, neurophenomenology pursues an embodied and large-scale dynamical approach to the neurophysiology of consciousness . At a methodological level, the neurophenomenological strategy is to make rigorous and extensive use of first-person data about subjective experience as a heuristic to describe and quantify the large-scale neurodynamics of consciousness . The paper focuses on neurophenomenology in relation to (...)
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  • Conceptual Integration Networks.Gilles Fauconnier & Mark Turner - 1998 - Cognitive Science 22 (2):133-187.
    Conceptual integration—“blending”—is a general cognitive operation on a par with analogy, recursion, mental modeling, conceptual categorization, and framing. It serves a variety of cognitive purposes. It is dynamic, supple, and active in the moment of thinking. It yields products that frequently become entrenched in conceptual structure and grammar, and it often performs new work on its previously entrenched products as inputs. Blending is easy to detect in spectacular cases but it is for the most part a routine, workaday process that (...)
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  • The Value of Knowledge and the Pursuit of Understanding.Michael Huemer - 2004 - Mind 113 (452):763-766.
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  • Metaphors We Live By.George Lakoff & Mark Johnson - 1980 - Ethics 93 (3):619-621.
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  • The proactive brain: using analogies and associations to generate predictions.Moshe Bar - 2007 - Trends in Cognitive Sciences 11 (7):280-289.
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  • (1 other version)What's that thing called embodiment?Tom Ziemke - 2015 - Avant: Trends in Interdisciplinary Studies 6 (2-3):161-174.
    Embodiment has become an important concept in many areas of cognitive science. There are, however, very different notions of exactly what embodiment is and what kind of body is required for what type of embodied cognition. Hence, while many nowadays would agree that humans are embodied cognizers, there is much less agreement on what kind of artifact could be considered embodied. This paper identifies and contrasts six different notions of embodiment which can roughly be characterized as structural coupling between agent (...)
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  • (2 other versions)Metaphor Interpretation as Embodied Simulation.Raymond W. Gibbs - 2006 - Mind Language 21 (3):434-458.
    Cognitive theories of metaphor understanding are typically described in terms of the mappings between different kinds of abstract, schematic, disembodied knowledge. My claim in this paper is that part of our ability to make sense of metaphorical language, both individual utterances and extended narratives, resides in the automatic construction of a simulation whereby we imagine performing the bodily actions referred to in the language. Thus, understanding metaphorical expressions like ‘grasp a concept’ or ‘get over’ an emotion involve simulating what it (...)
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  • Mirror neurons and the simulation theory of mind-reading.Vittorio Gallese & Alvin I. Goldman - 1998 - Trends in Cognitive Sciences 2 (12):493-501.
    A new class of visuomotor neuron has been recently discovered in the monkey’s premotor cortex: mirror neurons. These neurons respond both when a particular action is performed by the recorded monkey and when the same action, performed by another individual, is observed. Mirror neurons appear to form a cortical system matching observation and execution of goal-related motor actions. Experimental evidence suggests that a similar matching system also exists in humans. What might be the functional role of this matching system? One (...)
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  • (1 other version)The Body in the Mind: The Bodily Basis of Meaning, Imagination, and Reason.Mark Johnson - 1989 - Journal of Aesthetics and Art Criticism 47 (4):400-401.
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  • Automaticity in social-cognitive processes.John A. Bargh, Kay L. Schwader, Sarah E. Hailey, Rebecca L. Dyer & Erica J. Boothby - 2012 - Trends in Cognitive Sciences 16 (12):593-605.
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