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  1. Of (zombie) mice and animats.S. J. Nasuto & J. M. Bishop - 2013 - In Vincent Müller (ed.), Philosophy and Theory of Artificial Intelligence. Springer. pp. 85-107.
    The Chinese Room Argument purports to show that‘ syntax is not sufficient for semantics’; an argument which led John Searle to conclude that ‘programs are not minds’ and hence that no computational device can ever exhibit true understanding. Yet, although this controversial argument has received a series of criticisms, it has withstood all attempts at decisive rebuttal so far. One of the classical responses to CRA has been based on equipping a purely computational device with a physical robot body. This (...)
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  • Being There: Putting Brain, Body and World Together Again.Tim van Gelder & Andy Clark - 1998 - Philosophical Review 107 (4):647.
    A great deal of philosophy of mind in the modern era has been driven by an intense aversion to Cartesian dualism. In the 1950s, materialists claimed to have succeeded once and for all in exorcising the Cartesian ghost by identifying the mind with the brain. In subsequent decades, cognitive science put scientific meat on this metaphysical skeleton by explicating mental processes as digital computation implemented in the brain's hardware.
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  • Simulacra and Simulation.Jean Baudrillard - 1994 - University of Michigan Press.
    Develops a theory of contemporary culture that relies on displacing economic notions of cultural production with notions of cultural expenditure. This book represents an effort to rethink cultural theory from the perspective of a concept of cultural materialism, one that radically redefines postmodern formulations of the body.
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  • The Mangle of Practice: Time, Agency, and Science.Andrew Pickering - 1995 - University of Chicago Press.
    This ambitious book by one of the most original and provocative thinkers in science studies offers a sophisticated new understanding of the nature of scientific, mathematical, and engineering practice and the production of scientific knowledge. Andrew Pickering offers a new approach to the unpredictable nature of change in science, taking into account the extraordinary number of factors—social, technological, conceptual, and natural—that interact to affect the creation of scientific knowledge. In his view, machines, instruments, facts, theories, conceptual and mathematical structures, disciplined (...)
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  • When Species Meet.Donna Jeanne Haraway - 2007 - Univ of Minnesota Press.
    “When Species Meet is a breathtaking meditation on the intersection between humankind and dog, philosophy and science, and macro and micro cultures.” —Cameron Woo, Publisher of Bark magazine In 2006, about 69 million U.S. households had pets, giving homes to around 73.9 million dogs, 90.5 million cats, and 16.6 million birds, and spending over $38 billion dollars on companion animals. As never before in history, our pets are truly members of the family. But the notion of “companion species”—knotted from human (...)
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  • Defining agency: Individuality, normativity, asymmetry, and spatio-temporality in action.Xabier Barandiaran, E. Di Paolo & M. Rohde - 2009 - Adaptive Behavior 17 (5):367-386.
    The concept of agency is of crucial importance in cognitive science and artificial intelligence, and it is often used as an intuitive and rather uncontroversial term, in contrast to more abstract and theoretically heavy-weighted terms like “intentionality”, “rationality” or “mind”. However, most of the available definitions of agency are either too loose or unspecific to allow for a progressive scientific program. They implicitly and unproblematically assume the features that characterize agents, thus obscuring the full potential and challenge of modeling agency. (...)
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  • On technical mediation.Bruno Latour - 1994 - Common Knowledge 3 (2):29-64.
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  • Encounters with animal minds.Barbara Smuts - 2001 - Journal of Consciousness Studies 8 (5-7):5-7.
    In this article I draw on personal experience to explore the kinds of relationships that can develop between human and nonhuman animals. The first part of the article describes my encounters with wild baboons, whom I studied in East Africa over the course of many years. The baboons treated me as a social being, and to gain their trust I had to learn the troop's social conventions and behave in accordance with them. This process gave me a feeling for what (...)
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  • Toward a Philosophy of Technology.Hans Jonas - 1979 - Hastings Center Report 9 (1):34-43.
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  • The extended body: a case study in the neurophenomenology of social interaction. [REVIEW]Tom Froese & Thomas Fuchs - 2012 - Phenomenology and the Cognitive Sciences 11 (2):205-235.
    There is a growing realization in cognitive science that a theory of embodied intersubjectivity is needed to better account for social cognition. We highlight some challenges that must be addressed by attempts to interpret ‘simulation theory’ in terms of embodiment, and argue for an alternative approach that integrates phenomenology and dynamical systems theory in a mutually informing manner. Instead of ‘simulation’ we put forward the concept of the ‘extended body’, an enactive and phenomenological notion that emphasizes the socially mediated nature (...)
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  • Supersizing the mind: embodiment, action, and cognitive extension.Andy Clark (ed.) - 2008 - New York: Oxford University Press.
    In Supersizing the Mind, Andy Clark argues that the human mind is not bound inside the head but extends into body and environment.
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  • Technics and time.Bernard Stiegler - 1998 - Stanford, Calif.: Stanford University Press.
    At the beginning of Western philosophy, Aristotle contrasted made objects, which did not have the source of their own production within themselves, with beings formed by nature. This distinction persisted until Marx, who conceived of the possibility of an evolution of the technical object. This philosophy developed while industrialisation was in the process of overthrowing the contemporary order of social organisation, which highlighted technology's new place in philosophical enquiry. Bernard Stiegler goes back to the beginning of Western philosophy and revises (...)
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  • Making sense of sense-making: Reflections on enactive and extended mind theories.Evan Thompson & Mog Stapleton - 2009 - Topoi 28 (1):23-30.
    This paper explores some of the differences between the enactive approach in cognitive science and the extended mind thesis. We review the key enactive concepts of autonomy and sense-making . We then focus on the following issues: (1) the debate between internalism and externalism about cognitive processes; (2) the relation between cognition and emotion; (3) the status of the body; and (4) the difference between ‘incorporation’ and mere ‘extension’ in the body-mind-environment relation.
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  • Extended life.Ezequiel Di Paolo - 2008 - Topoi 28 (1):9-21.
    This paper reformulates some of the questions raised by extended mind theorists from an enactive, life/mind continuity perspective. Because of its reliance on concepts such as autopoiesis, the enactive approach has been deemed internalist and thus incompatible with the extended mind hypothesis. This paper answers this criticism by showing (1) that the relation between organism and cogniser is not one of co-extension, (2) that cognition is a relational phenomenon and thereby has no location, and (3) that the individuality of a (...)
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  • Life after Kant: Natural purposes and the autopoietic foundations of biological individuality. [REVIEW]Andreas Weber & Francisco J. Varela - 2002 - Phenomenology and the Cognitive Sciences 1 (2):97-125.
    This paper proposes a basic revision of the understanding of teleology in biological sciences. Since Kant, it has become customary to view purposiveness in organisms as a bias added by the observer; the recent notion of teleonomy expresses well this as-if character of natural purposes. In recent developments in science, however, notions such as self-organization (or complex systems) and the autopoiesis viewpoint, have displaced emergence and circular self-production as central features of life. Contrary to an often superficial reading, Kant gives (...)
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  • Empathy and consciousness.Evan Thompson - 2001 - Journal of Consciousness Studies 8 (5-7):1-32.
    This article makes five main points. Individual human consciousness is formed in the dynamic interrelation of self and other, and therefore is inherently intersubjective. The concrete encounter of self and other fundamentally involves empathy, under- stood as a unique and irreducible kind of intentionality. Empathy is the precondi- tion of the science of consciousness. Human empathy.
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  • Mind in Life: Biology, Phenomenology, and the Sciences of Mind.Evan Thompson - 2007 - Cambridge, Mass.: Harvard University Press.
    The question has long confounded philosophers and scientists, and it is this so-called explanatory gap between biological life and consciousness that Evan ...
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  • Natural-Born Cyborgs: Minds, Technologies, and the Future of Human Intelligence.Andy Clark - 2003 - Oxford University Press. Edited by Alberto Peruzzi.
    In Natural-Born Cyborgs, Clark argues that what makes humans so different from other species is our capacity to fully incorporate tools and supporting cultural ...
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  • The extended mind.Andy Clark & David J. Chalmers - 1998 - Analysis 58 (1):7-19.
    Where does the mind stop and the rest of the world begin? The question invites two standard replies. Some accept the demarcations of skin and skull, and say that what is outside the body is outside the mind. Others are impressed by arguments suggesting that the meaning of our words "just ain't in the head", and hold that this externalism about meaning carries over into an externalism about mind. We propose to pursue a third position. We advocate a very different (...)
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  • Imitation by social interaction? Analysis of a minimal agent-based model of the correspondence problem.Tom Froese, Charles Lenay & Takashi Ikegami - 2012 - Frontiers in Human Neuroscience 6.
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  • Separability and Technical Constitution.Charles Lenay - 2012 - Foundations of Science 17 (4):379-384.
    The question of the status and the mode of functioning of technologies which participate in our cognitive activity (action, perception, reasoning) is inseparable from the question of the bodily inscription of these faculties. One can adopt the principle that a tool is fully appropriate when it functions as a component of the organs of our lived body. However, these technical entities can be differentiated along a scale according to the role played by their separability. The possibility of picking up and (...)
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  • (2 other versions)The phenomenon of life: toward a philosophical biology.Hans Jonas - 1966 - Evanston, Ill.: Northwestern University Press.
    A classic of phenomenology and existentialism and arguably Jonas's greatest work, The Phenomenon of Life sets forth a systematic and comprehensive philosophy -- ...
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  • Hume and the enactive approach to mind.Tom Froese - 2009 - Phenomenology and the Cognitive Sciences 8 (1):95-133.
    An important part of David Hume’s work is his attempt to put the natural sciences on a firmer foundation by introducing the scientific method into the study of human nature. This investigation resulted in a novel understanding of the mind, which in turn informed Hume’s critical evaluation of the scope and limits of the scientific method as such. However, while these latter reflections continue to influence today’s philosophy of science, his theory of mind is nowadays mainly of interest in terms (...)
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  • Behavior, purpose and teleology.Arturo Rosenblueth, Norbert Wiener & Julian Bigelow - 1943 - Philosophy of Science 10 (1):18-24.
    This essay has two goals. The first is to define the behavioristic study of natural events and to classify behavior. The second is to stress the importance of the concept of purpose.Given any object, relatively abstracted from its surroundings for study, the behavioristic approach consists in the examination of the output of the object and of the relations of this output to the input. By output is meant any change produced in the surroundings by the object. By input, conversely, is (...)
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  • A dynamical systems perspective on agent-environment interaction.Randall D. Beer - 1995 - Artificial Intelligence 72 (1-2):173-215.
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  • Enactive artificial intelligence: Investigating the systemic organization of life and mind.Tom Froese & Tom Ziemke - 2009 - Artificial Intelligence 173 (3-4):466-500.
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  • (2 other versions)The phenomenon of life, toward a philosophical biology.Hans Jonas - 1966 - Revue Philosophique de la France Et de l'Etranger 160:494-494.
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  • Empathy and consciousness. E. Thompson - 2001 - Journal of Consciousness Studies 8 (5-7):1-32.
    This article makes five main points. Individual human consciousness is formed in the dynamic interrelation of self and other, and therefore is inherently intersubjective. The concrete encounter of self and other fundamentally involves empathy, understood as a unique and irreducible kind of intentionality. Empathy is the precondition of the science of consciousness. Human empathy is inherently developmental: open to it are pathways to non-egocentric or self-transcendent modes of intersubjectivity. Real progress in the understanding of intersubjectivity requires integrating the methods and (...)
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  • Introduction.Jon Stewart - 2003 - In Kierkegaard and His Contemporaries: The Culture of Golden Age Denmark. De Gruyter.
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  • The enactive approach: Theoretical sketches from cell to society.Tom Froese & Ezequiel A. Paolo Di - 2011 - Pragmatics and Cognition 19 (1):1-36.
    There is a small but growing community of researchers spanning a spectrum of disciplines which are united in rejecting the still dominant computationalist paradigm in favor of the enactive approach. The framework of this approach is centered on a core set of ideas, such as autonomy, sense-making, emergence, embodiment, and experience. These concepts are finding novel applications in a diverse range of areas. One hot topic has been the establishment of an enactive approach to social interaction. The main purpose of (...)
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  • Biological Foundations of Individuality.Hans Jonas - 1968 - International Philosophical Quarterly 8 (2):231-251.
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  • Technology and the Body: the (Im)Possibilities of Re-embodiment. [REVIEW]Helena De Preester - 2011 - Foundations of Science 16 (2-3):119-137.
    This article argues for a more rigorous distinction between body extensions on the one hand and incorporation of non-bodily objects into the body on the other hand. Real re-embodiment would be a matter of taking things (most often technologies) into the body, i.e. of incorporation of non-bodily items into the body. This, however, is a difficult process often limited by a number of conditions of possibility that are absent in the case of ‘mere’ body extensions. Three categories are discussed: limb (...)
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  • Technology and prognostic predicaments.Don Ihde - 1999 - AI and Society 13 (1-2):44-51.
    As societies become increasingly technologised, the need for careful and critical assessment rises. However, attempts to assess or normatively evaluate technological development invariably meet with an antinomy: both structurally and historically, technologies display multistable possibilities regarding uses, effects, side effects and other outcomes. Philosophers, usually expected to play applied ethics roles, often come to the scene after these effects are known. But others who participate at the research and development stages find even more difficulties with prognosis. Recent work on ‘revenge’ (...)
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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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  • Chasing Technoscience: Matrix for Materiality.Don Ihde & Evan Selinger - 2006 - Human Studies 29 (3):399-403.
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  • Equipment and existential spatiality: Heidegger, cognitive science and the prosthetic subject.Helena De Preester - 2012 - In Julian Kiverstein & Michael Wheeler (eds.), Heidegger and Cognitive Science. New York: Palgrave-Macmillan.
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  • The enactive approach: Theoretical sketches from cell to society.Tom Froese & Ezequiel A. Di Paolo - 2011 - Pragmatics and Cognition 19 (1):1-36.
    There is a small but growing community of researchers spanning a spectrum of disciplines which are united in rejecting the still dominant computationalist paradigm in favor of the enactive approach. The framework of this approach is centered on a core set of ideas, such as autonomy, sense-making, emergence, embodiment, and experience. These concepts are finding novel applications in a diverse range of areas. One hot topic has been the establishment of an enactive approach to social interaction. The main purpose of (...)
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  • Stretching the In-between: Embodiment and Beyond. [REVIEW]Don Ihde - 2011 - Foundations of Science 16 (2-3):109-118.
    Today’s scientific imaging technologies are able to detect and image emissions and radiations from a much wider range of the electromagnetic spectrum than ever before. Such phenomena lie beyond the horizons of ordinary human perceptibility. I examine here the implications of such translation mediations for the production of scientific knowledge and show how human embodiment is implicit for all perceptual observational possibilities. The framework is that of a postphenomenology which is able to relate these new phenomena to human embodiment.
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  • Husserl’s Galileo Needed a Telescope!Don Ihde - 2011 - Philosophy and Technology 24 (1):69-82.
    Husserl’s Crisis argues that early modern science, exemplified in Galileo, separates the Lifeworld from a world of science by forgetting its origins in bodily perception on the one side, and the practices which found the science on the other. This essay argues that, rather, by overemphasizing mathematization and underemphasizing instruments or technologies which mediate perception, Husserl creates the division he describes. Positively, through the embodied use of instruments science remains thoroughly immersed in the Lifeworld.
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  • The Mangle of Practice.Andrew Pickering & Jed Z. Buchwald - 1996 - British Journal for the Philosophy of Science 47 (3):479-482.
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