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The (lack of) mental life of some machines

In Shimon Edelman, Tomer Fekete & Neta Zach (eds.), Being in Time: Dynamical Models of Phenomenal Experience. John Benjamins.. pp. 88--95 (2012)

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  1. Towards a computational theory of experience.Tomer Fekete & Shimon Edelman - 2011 - Consciousness and Cognition 20 (3):807-827.
    A standing challenge for the science of mind is to account for the datum that every mind faces in the most immediate – that is, unmediated – fashion: its phenomenal experience. The complementary tasks of explaining what it means for a system to give rise to experience and what constitutes the content of experience (qualia) in computational terms are particularly challenging, given the multiple realizability of computation. In this paper, we identify a set of conditions that a computational theory must (...)
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  • Philosophical Investigations.Ludwig Wittgenstein - 1953 - New York, NY, USA: Wiley-Blackwell. Edited by G. E. M. Anscombe.
    Editorial preface to the fourth edition and modified translation -- The text of the Philosophische Untersuchungen -- Philosophische untersuchungen = Philosophical investigations -- Philosophie der psychologie, ein fragment = Philosophy of psychology, a fragment.
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  • Why we view the brain as a computer.Oron Shagrir - 2006 - Synthese 153 (3):393-416.
    The view that the brain is a sort of computer has functioned as a theoretical guideline both in cognitive science and, more recently, in neuroscience. But since we can view every physical system as a computer, it has been less than clear what this view amounts to. By considering in some detail a seminal study in computational neuroscience, I first suggest that neuroscientists invoke the computational outlook to explain regularities that are formulated in terms of the information content of electrical (...)
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  • The ‘causal power’ of machines.Zenon W. Pylyshyn - 1980 - Behavioral and Brain Sciences 3 (3):442-444.
  • A model for visual shape recognition.Peter M. Milner - 1974 - Psychological Review 81 (6):521-535.
  • Consciousness without a cerbral cortex: A challenge for neuroscience and medicine.Bjorn Merker - 2007 - Behavioral and Brain Sciences 30 (1):63-81.
    A broad range of evidence regarding the functional organization of the vertebrate brain – spanning from comparative neurology to experimental psychology and neurophysiology to clinical data – is reviewed for its bearing on conceptions of the neural organization of consciousness. A novel principle relating target selection, action selection, and motivation to one another, as a means to optimize integration for action in real time, is introduced. With its help, the principal macrosystems of the vertebrate brain can be seen to form (...)
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  • Extending Dynamical Systems Theory to Model Embodied Cognition.Scott Hotton & Jeff Yoshimi - 2011 - Cognitive Science 35 (3):444-479.
    We define a mathematical formalism based on the concept of an ‘‘open dynamical system” and show how it can be used to model embodied cognition. This formalism extends classical dynamical systems theory by distinguishing a ‘‘total system’’ (which models an agent in an environment) and an ‘‘agent system’’ (which models an agent by itself), and it includes tools for analyzing the collections of overlapping paths that occur in an embedded agent's state space. To illustrate the way this formalism can be (...)
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  • Representational systems.Tomer Fekete - 2010 - Minds and Machines 20 (1):69-101.
    The concept of representation has been a key element in the scientific study of mental processes, ever since such studies commenced. However, usage of the term has been all but too liberal—if one were to adhere to common use it remains unclear if there are examples of physical systems which cannot be construed in terms of representation. The problem is considered afresh, taking as the starting point the notion of activity spaces—spaces of spatiotemporal events produced by dynamical systems. It is (...)
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  • Darwin's Dangerous Idea.Daniel Dennett - 1994 - Behavior and Philosophy 24 (2):169-174.
  • Darwin’s Dangerous Idea: Evolution and the Meanings of Life. [REVIEW]David L. Hull - 1996 - Ethics 107 (1):170-174.
  • Consciousness and Mind.David M. Rosenthal - 2005 - New York: Oxford University Press UK.
    Consciousness and Mind presents David Rosenthal's influential work on the nature of consciousness. Central to that work is Rosenthal's higher-order-thought theory of consciousness, according to which a sensation, thought, or other mental state is conscious if one has a higher-order thought that one is in that state. The first four essays develop various aspects of that theory. The next three essays present Rosenthal's homomorphism theory of mental qualities and qualitative consciousness, and show how that theory fits with and helps sustain (...)
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  • Absent qualia, fading qualia, dancing qualia.David J. Chalmers - 1995 - In Thomas Metzinger (ed.), Conscious Experience. Ferdinand Schoningh. pp. 309--328.
    It is widely accepted that conscious experience has a physical basis. That is, the properties of experience (phenomenal properties, or qualia) systematically depend on physical properties according to some lawful relation. There are two key questions about this relation. The first concerns the strength of the laws: are they logically or metaphysically necessary, so that consciousness is nothing "over and above" the underlying physical process, or are they merely contingent laws like the law of gravity? This question about the strength (...)
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  • Sensory qualities, consciousness, and perception.David M. Rosenthal - 2005 - In Consciousness and Mind. Clarendon Press. pp. 175-226.
  • Troubles with Functionalism.Ned Block - 1978 - In Alvin Goldman (ed.), Readings in Philosophy and Cognitive Science. Cambridge: MIT Press. pp. 231.
  • Troubles with functionalism.Ned Block - 1978 - Minnesota Studies in the Philosophy of Science 9:261-325.
    The functionalist view of the nature of the mind is now widely accepted. Like behaviorism and physicalism, functionalism seeks to answer the question "What are mental states?" I shall be concerned with identity thesis formulations of functionalism. They say, for example, that pain is a functional state, just as identity thesis formulations of physicalism say that pain is a physical state.
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