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  1. How to Bootstrap a Human Communication System.Nicolas Fay, Michael Arbib & Simon Garrod - 2013 - Cognitive Science 37 (7):1356-1367.
    How might a human communication system be bootstrapped in the absence of conventional language? We argue that motivated signs play an important role (i.e., signs that are linked to meaning by structural resemblance or by natural association). An experimental study is then reported in which participants try to communicate a range of pre-specified items to a partner using repeated non-linguistic vocalization, repeated gesture, or repeated non-linguistic vocalization plus gesture (but without using their existing language system). Gesture proved more effective (measured (...)
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  • The evolution of language: A comparative review. [REVIEW]W. Tecumseh Fitch - 2005 - Biology and Philosophy 20 (2-3):193-203.
    For many years the evolution of language has been seen as a disreputable topic, mired in fanciful “just so stories” about language origins. However, in the last decade a new synthesis of modern linguistics, cognitive neuroscience and neo-Darwinian evolutionary theory has begun to make important contributions to our understanding of the biology and evolution of language. I review some of this recent progress, focusing on the value of the comparative method, which uses data from animal species to draw inferences about (...)
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  • (1 other version)False-belief understanding in infants.Zijing He Renée Baillargeon, Rose M. Scott - 2010 - Trends in Cognitive Sciences 14 (3):110.
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  • From mouth to hand: Gesture, speech, and the evolution of right-handedness.Michael C. Corballis - 2003 - Behavioral and Brain Sciences 26 (2):199-208.
    The strong predominance of right-handedness appears to be a uniquely human characteristic, whereas the left-cerebral dominance for vocalization occurs in many species, including frogs, birds, and mammals. Right-handedness may have arisen because of an association between manual gestures and vocalization in the evolution of language. I argue that language evolved from manual gestures, gradually incorporating vocal elements. The transition may be traced through changes in the function of Broca's area. Its homologue in monkeys has nothing to do with vocal control, (...)
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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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  • 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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  • 15-Month-Old Infants Fast Map Words but Not Representational Gestures of Multimodal Labels.Daniel Puccini & Ulf Liszkowski - 2012 - Frontiers in Psychology 3.
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  • Brain mechanisms of acoustic communication in humans and nonhuman primates: An evolutionary perspective.Hermann Ackermann, Steffen R. Hage & Wolfram Ziegler - 2014 - Behavioral and Brain Sciences 37 (6):529-546.
    Any account of “what is special about the human brain” (Passingham 2008) must specify the neural basis of our unique ability to produce speech and delineate how these remarkable motor capabilities could have emerged in our hominin ancestors. Clinical data suggest that the basal ganglia provide a platform for the integration of primate-general mechanisms of acoustic communication with the faculty of articulate speech in humans. Furthermore, neurobiological and paleoanthropological data point at a two-stage model of the phylogenetic evolution of this (...)
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  • Preschoolers’ interpretations of gesture: Label or action associate?Paula Marentette & Elena Nicoladis - 2011 - Cognition 121 (3):386-399.
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  • Infants rapidly learn word-referent mappings via cross-situational statistics.Linda Smith & Chen Yu - 2008 - Cognition 106 (3):1558-1568.
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  • (1 other version)False-belief understanding in infants.Renée Baillargeon, Rose M. Scott & Zijing He - 2010 - Trends in Cognitive Sciences 14 (3):110-118.
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  • Where do mirror neurons come from.Cecilia Heyes - forthcoming - Neuroscience and Biobehavioral Reviews.
    1. Properties of mirror neurons in monkeys. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . (...)
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  • Embodied attention and word learning by toddlers.Chen Yu & Linda B. Smith - 2012 - Cognition 125 (2):244-262.
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  • Sensitivity to Quantity: What Counts across Species?Sarah T. Boysen & Anna M. Yocom - 2012 - In David McFarland, Keith Stenning & Maggie McGonigle (eds.), The Complex Mind: An Interdisciplinary Approach. Palgrave-Macmillan. pp. 80.
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