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  1. Robotic Specification of the Non-Conceptual Content of Visual Experience.Ron Chrisley & Joel Parthemore - 2007 - In Ron Chrisley & Joel Parthemore (eds.), Proceedings of the AAAI Fall Symposium on "Consciousness and Artificial Intelligence: Theoretical foundations and current approaches". AAAI.
    Standard, linguistic means of specifying the content of mental states do so by expressing the content in question. Such means fail when it comes to capturing non-conceptual aspects of visual experience, since no linguistic expression can adequately express such content. One alternative is to use depictions: images that either evoke (reproduce in the recipient) or refer to the content of the experience. Practical considerations concerning the generation and integration of such depictions argue in favour of a synthetic approach: the generation (...)
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  • The roots of self-awareness.Michael L. Anderson & Donald R. Perlis - 2005 - Phenomenology and the Cognitive Sciences 4 (3):297-333.
    In this paper we provide an account of the structural underpinnings of self-awareness. We offer both an abstract, logical account.
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  • Representations, symbols, and embodiment.Michael L. Anderson - 2003 - Artificial Intelligence 149 (1):151-156.
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  • Embodied AI beyond Embodied Cognition and Enactivism.Riccardo Manzotti - 2019 - Philosophies 4 (3):39.
    Over the last three decades, the rise of embodied cognition (EC) articulated in various schools (or versions) of embodied, embedded, extended and enacted cognition (Gallagher’s 4E) has offered AI a way out of traditional computationalism—an approach (or an understanding) loosely referred to as embodied AI. This view has split into various branches ranging from a weak form on the brink of functionalism (loosely represented by Clarks’ parity principle) to a strong form (often corresponding to autopoietic-friendly enactivism) suggesting that body−world interactions (...)
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  • A computational model of machine consciousness.Janusz A. Starzyk & Dilip K. Prasad - 2011 - International Journal of Machine Consciousness 3 (02):255-281.
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  • Anthropomorphism in social robotics: empirical results on human–robot interaction in hybrid production workplaces.Anja Richert, Sarah Müller, Stefan Schröder & Sabina Jeschke - 2018 - AI and Society 33 (3):413-424.
    New forms of artificial intelligence on the one hand and the ubiquitous networking of “everything with everything” on the other hand characterize the fourth industrial revolution. This results in a changed understanding of human–machine interaction, in new models for production, in which man and machine together with virtual agents form hybrid teams. The empirical study “Socializing with robots” aims to gain insight especially into conditions of development and processes of hybrid human–machine teams. In the experiment, human–robot actions and interactions were (...)
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  • How Helen Keller Used Syntactic Semantics to Escape from a Chinese Room.William J. Rapaport - 2006 - Minds and Machines 16 (4):381-436.
    A computer can come to understand natural language the same way Helen Keller did: by using “syntactic semantics”—a theory of how syntax can suffice for semantics, i.e., how semantics for natural language can be provided by means of computational symbol manipulation. This essay considers real-life approximations of Chinese Rooms, focusing on Helen Keller’s experiences growing up deaf and blind, locked in a sort of Chinese Room yet learning how to communicate with the outside world. Using the SNePS computational knowledge-representation system, (...)
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  • Does a Mind Need a Body?Alex McKeown & David R. Lawrence - 2021 - Cambridge Quarterly of Healthcare Ethics 30 (4):563-574.
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  • The computational stance is unfit for consciousness.Riccardo Manzotti - 2012 - International Journal of Machine Consciousness 4 (2):401-420.
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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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  • Minds Online: The Interface between Web Science, Cognitive Science, and the Philosophy of Mind.Paul Smart, Robert William Clowes & Richard Heersmink - 2017 - Foundations and Trends in Web Science 6 (1-2):1-234.
    Alongside existing research into the social, political and economic impacts of the Web, there is a need to study the Web from a cognitive and epistemic perspective. This is particularly so as new and emerging technologies alter the nature of our interactive engagements with the Web, transforming the extent to which our thoughts and actions are shaped by the online environment. Situated and ecological approaches to cognition are relevant to understanding the cognitive significance of the Web because of the emphasis (...)
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  • Enactive Cognitive Science. Part 2: Methods, Insights, and Potential.K. McGee - 2006 - Constructivist Foundations 1 (2):73-82.
    Purpose: This, the second part of a two-part paper, describes how the concerns of enactive cognitive science have been realized in actual research: methodological issues, proposed explanatory mechanisms and models, some of the potential as both a theoretical and applied science, and several of the major open research questions. Findings: Despite some skepticism about "mechanisms" in constructivist literature, enactive cognitive science attempts to develop cognitive formalisms and models. Such techniques as feedback loops, self-organization, autocatalytic networks, and dynamical systems modeling are (...)
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  • Artificial Intelligence and Consciousness.Antonio Chella & Riccardo Manzotti - 2007 - In Anthony Chella & Ricardo Manzotti (eds.), Ai and Consciousness: Theoretical Foundations and Current Approaches. Aaai Press, Merlo Park, Ca.
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