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  1. Toward a second-person neuroscience.Bert Timmermans, Vasudevi Reddy, Alan Costall, Gary Bente, Tobias Schlicht, Kai Vogeley & Leonhard Schilbach - 2013 - Behavioral and Brain Sciences 36 (4):393-414.
    In spite of the remarkable progress made in the burgeoning field of social neuroscience, the neural mechanisms that underlie social encounters are only beginning to be studied and could —paradoxically— be seen as representing the ‘dark matter’ of social neuroscience. Recent conceptual and empirical developments consistently indicate the need for investigations, which allow the study of real-time social encounters in a truly interactive manner. This suggestion is based on the premise that social cognition is fundamentally different when we are in (...)
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  • The distributed human neural system for face perception.Elizabeth A. Hoffman, M. Ida Gobbini & James V. Haxby - 2000 - Trends in Cognitive Sciences 4 (6):223-233.
    Face perception, perhaps the most highly developed visual skill in humans, is mediated by a distributed neural system in humans that is comprised of multiple, bilateral regions. We propose a model for the organization of this system that emphasizes a distinction between the representation of invariant and changeable aspects of faces. The representation of invariant aspects of faces underlies the recognition of individuals, whereas the representation of changeable aspects of faces, such as eye gaze, expression, and lip movement, underlies the (...)
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  • Perceiving temporal regularity in music.Edward W. Large & Caroline Palmer - 2002 - Cognitive Science 26 (1):1-37.
    We address how listeners perceive temporal regularity in music performances, which are rich in temporal irregularities. A computational model is described in which a small system of internal self‐sustained oscillations, operating at different periods with specific phase and period relations, entrains to the rhythms of music performances. Based on temporal expectancies embodied by the oscillations, the model predicts the categorization of temporally changing event intervals into discrete metrical categories, as well as the perceptual salience of deviations from these categories. The (...)
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  • Empathy: Its ultimate and proximate bases.Stephanie D. Preston & Frans B. M. de Waal - 2001 - Behavioral and Brain Sciences 25 (1):1-20.
    There is disagreement in the literature about the exact nature of the phenomenon of empathy. There are emotional, cognitive, and conditioning views, applying in varying degrees across species. An adequate description of the ultimate and proximate mechanism can integrate these views. Proximately, the perception of an object's state activates the subject's corresponding representations, which in turn activate somatic and autonomic responses. This mechanism supports basic behaviors that are crucial for the reproductive success of animals living in groups. The Perception-Action Model, (...)
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  • The Senses Considered as Perceptual Systems.James Jerome Gibson - 1966 - Boston, USA: Houghton Mifflin.
    Describes the various senses as sensory systems that are attuned to the environment. Develops the notion of rich sensory information that specifies the distal environment. Includes a discussion of affordances.
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  • Defining the 'field at a given time.'.K. Lewin - 1943 - Psychological Review 50 (3):292-310.
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  • Relating the “mirrorness” of mirror neurons to their origins.James M. Kilner & Karl J. Friston - 2014 - Behavioral and Brain Sciences 37 (2):207-208.
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  • Music, memory and emotion.Lutz Jäncke - 2008 - Journal of Biology 7 (6).
    Because emotions enhance memory processes and music evokes strong emotions, music could be involved in forming memories, either about pieces of music or about episodes and information associated with particular music. A recent study in BMC Neuroscience has given new insights into the role of emotion in musical memory.
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  • Boundaries and potentials of traditional and alternative neuroscience research methods in music therapy research.Andrea M. Hunt - 2015 - Frontiers in Human Neuroscience 9.
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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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  • Young Children's Theory of Mind and Emotion.Paul L. Harris, Carl N. Johnson, Deborah Hutton, Giles Andrews & Tim Cooke - 1989 - Cognition and Emotion 3 (4):379-400.
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  • The Senses Considered as Perceptual Systems.D. W. Hamlyn & James J. Gibson - 1968 - Philosophical Review 77 (3):361.
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  • Salience, relevance, and firing: a priority map for target selection.Jillian H. Fecteau & Douglas P. Munoz - 2006 - Trends in Cognitive Sciences 10 (8):382-390.
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  • The empathic brain: how, when and why?Frederique de Vignemont & Tania Singer - 2006 - Trends in Cognitive Sciences 10 (10):435-441.
    Recent imaging results suggest that individuals automatically share the emotions of others when exposed to their emotions. We question the assumption of the automaticity and propose a contextual approach, suggesting several modulatory factors that might influence empathic brain responses. Contextual appraisal could occur early in emotional cue evaluation, which then might or might not lead to an empathic brain response, or not until after an empathic brain response is automatically elicited. We propose two major roles for empathy; its epistemological role (...)
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  • Your body, my body, our coupling moves our bodies.Guillaume Dumas, Julien Laroche & Alexandre Lehmann - 2014 - Frontiers in Human Neuroscience 8.
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  • Organismic achievement and environmental probability.E. Brunswik - 1943 - Psychological Review 50 (3):255-272.
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  • The Senses Considered as Perceptual Systems.Charles K. West & James J. Gibson - 1969 - Journal of Aesthetic Education 3 (1):142.
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  • Intra- and interbrain synchronization and network properties when playing guitar in duets.Johanna Sänger, Viktor Müller & Ulman Lindenberger - 2012 - Frontiers in Human Neuroscience 6.
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