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  1. Mirror neurons: From origin to function.Richard Cook, Geoffrey Bird, Caroline Catmur, Clare Press & Cecilia Heyes - 2014 - Behavioral and Brain Sciences 37 (2):177-192.
    This article argues that mirror neurons originate in sensorimotor associative learning and therefore a new approach is needed to investigate their functions. Mirror neurons were discovered about 20 years ago in the monkey brain, and there is now evidence that they are also present in the human brain. The intriguing feature of many mirror neurons is that they fire not only when the animal is performing an action, such as grasping an object using a power grip, but also when the (...)
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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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  • Android science: Conscious and subconscious recognition.Hiroshi Ishiguro - 2006 - Connection Science 18 (4):319-332.
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  • Behavioral speed contagion: Automatic modulation of movement timing by observation of body movements.Katsumi Watanabe - 2008 - Cognition 106 (3):1514-1524.
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  • (1 other version)What is a Human?: Toward psychological benchmarks in the field of human–robot interaction.Peter H. Kahn, Hiroshi Ishiguro, Batya Friedman, Takayuki Kanda, Nathan G. Freier, Rachel L. Severson & Jessica Miller - 2007 - Interaction Studies 8 (3):363-390.
    In this paper, we move toward offering psychological benchmarks to measure success in building increasingly humanlike robots. By psychological benchmarks we mean categories of interaction that capture conceptually fundamental aspects of human life, specified abstractly enough to resist their identity as a mere psychological instrument, but capable of being translated into testable empirical propositions. Nine possible benchmarks are considered: autonomy, imitation, intrinsic moral value, moral accountability, privacy, reciprocity, conventionality, creativity, and authenticity of relation. Finally, we discuss how getting the right (...)
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  • Brain-to-brain coupling: a mechanism for creating and sharing a social world.Uri Hasson, Asif A. Ghazanfar, Bruno Galantucci, Simon Garrod & Christian Keysers - 2012 - Trends in Cognitive Sciences 16 (2):114-121.
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  • Artificial agents in social cognitive sciences.Thierry Chaminade & Jessica K. Hodgins - 2006 - Interaction Studies. Social Behaviour and Communication in Biological and Artificial Systemsinteraction Studies / Social Behaviour and Communication in Biological and Artificial Systemsinteraction Studies 7 (3):347-353.
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  • Socially intelligent robots: dimensions of human-robot interaction.Kerstin Dautenhahn - 2007 - In Nathan Emery, Nicola Clayton & Chris Frith (eds.), Social Intelligence: From Brain to Culture. 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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