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  1. (1 other version)Balancing Effort and Information Transmission During Language Acquisition: Evidence From Word Order and Case Marking.Maryia Fedzechkina, Elissa L. Newport & T. Florian Jaeger - 2017 - Cognitive Science 41 (2):416-446.
    Across languages of the world, some grammatical patterns have been argued to be more common than expected by chance. These are sometimes referred to as (statistical) language universals. One such universal is the correlation between constituent order freedom and the presence of a case system in a language. Here, we explore whether this correlation can be explained by a bias to balance production effort and informativity of cues to grammatical function. Two groups of learners were presented with miniature artificial languages (...)
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  • Aspects of the Theory of Syntax.Ann S. Ferebee - 1965 - Journal of Symbolic Logic 35 (1):167.
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  • Simplicity and Specificity in Language: Domain-General Biases Have Domain-Specific Effects.Jennifer Culbertson & Simon Kirby - 2015 - Frontiers in Psychology 6.
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  • Compression and communication in the cultural evolution of linguistic structure.Simon Kirby, Monica Tamariz, Hannah Cornish & Kenny Smith - 2015 - Cognition 141 (C):87-102.
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  • Word Meanings Evolve to Selectively Preserve Distinctions on Salient Dimensions.Catriona Silvey, Simon Kirby & Kenny Smith - 2015 - Cognitive Science 39 (1):212-226.
    Words refer to objects in the world, but this correspondence is not one-to-one: Each word has a range of referents that share features on some dimensions but differ on others. This property of language is called underspecification. Parts of the lexicon have characteristic patterns of underspecification; for example, artifact nouns tend to specify shape, but not color, whereas substance nouns specify material but not shape. These regularities in the lexicon enable learners to generalize new words appropriately. How does the lexicon (...)
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  • Natural selection and natural language.Steven Pinker & Paul Bloom - 1990 - Behavioral and Brain Sciences 13 (4):707-784.
    Many people have argued that the evolution of the human language faculty cannot be explained by Darwinian natural selection. Chomsky and Gould have suggested that language may have evolved as the by-product of selection for other abilities or as a consequence of as-yet unknown laws of growth and form. Others have argued that a biological specialization for grammar is incompatible with every tenet of Darwinian theory – that it shows no genetic variation, could not exist in any intermediate forms, confers (...)
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  • Comprehension of sentences by bottlenosed dolphins.Louis M. Herman, Douglas G. Richards & James P. Wolz - 1984 - Cognition 16 (2):129-219.
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  • Foundations of Representation: Where Might Graphical Symbol Systems Come From?Simon Garrod, Nicolas Fay, John Lee, Jon Oberlander & Tracy MacLeod - 2007 - Cognitive Science 31 (6):961-987.
    It has been suggested that iconic graphical signs evolve into symbolic graphical signs through repeated usage. This article reports a series of interactive graphical communication experiments using a ‘pictionary’ task to establish the conditions under which the evolution might occur. Experiment 1 rules out a simple repetition based account in favor of an account that requires feedback and interaction between communicators. Experiment 2 shows how the degree of interaction affects the evolution of signs according to a process of grounding. Experiment (...)
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  • Simplicity: A unifying principle in cognitive science?Nick Chater & Paul Vitányi - 2003 - Trends in Cognitive Sciences 7 (1):19-22.
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  • Natural language and natural selection.Steven Pinker & Paul Bloom - 1990 - Behavioral and Brain Sciences 13 (4):707-27.
    Many people have argued that the evolution of the human language faculty cannot be explained by Darwinian natural selection. Chomsky and Gould have suggested that language may have evolved as the by-product of selection for other abilities or as a consequence of as-yet unknown laws of growth and form. Others have argued that a biological specialization for grammar is incompatible with every tenet of Darwinian theory – that it shows no genetic variation, could not exist in any intermediate forms, confers (...)
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  • The origins of syntax in visually grounded robotic agents.Luc Steels - 1998 - Artificial Intelligence 103 (1-2):133-156.
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  • Self domestication and the evolution of language.James Thomas & Simon Kirby - 2018 - Biology and Philosophy 33 (1-2):9.
    We set out an account of how self-domestication plays a crucial role in the evolution of language. In doing so, we focus on the growing body of work that treats language structure as emerging from the process of cultural transmission. We argue that a full recognition of the importance of cultural transmission fundamentally changes the kind of questions we should be asking regarding the biological basis of language structure. If we think of language structure as reflecting an accumulated set of (...)
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  • (1 other version)Balancing Effort and Information Transmission During Language Acquisition: Evidence From Word Order and Case Marking.Maryia Fedzechkina, Elissa L. Newport & T. Florian Jaeger - 2016 - Cognitive Science 40 (6):n/a-n/a.
    Across languages of the world, some grammatical patterns have been argued to be more common than expected by chance. These are sometimes referred to as language universals. One such universal is the correlation between constituent order freedom and the presence of a case system in a language. Here, we explore whether this correlation can be explained by a bias to balance production effort and informativity of cues to grammatical function. Two groups of learners were presented with miniature artificial languages containing (...)
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  • Referring as a collaborative process.Herbert H. Clark & Deanna Wilkes-Gibbs - 1986 - Cognition 22 (1):1-39.
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  • Language as shaped by the brain.Morten H. Christiansen & Nick Chater - 2008 - Behavioral and Brain Sciences 31 (5):489-509.
    It is widely assumed that human learning and the structure of human languages are intimately related. This relationship is frequently suggested to derive from a language-specific biological endowment, which encodes universal, but communicatively arbitrary, principles of language structure (a Universal Grammar or UG). How might such a UG have evolved? We argue that UG could not have arisen either by biological adaptation or non-adaptationist genetic processes, resulting in a logical problem of language evolution. Specifically, as the processes of language change (...)
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  • Modeling Co‐evolution of Speech and Biology.Bart Boer - 2016 - Topics in Cognitive Science 8 (2):459-468.
    Two computer simulations are investigated that model interaction of cultural evolution of language and biological evolution of adaptations to language. Both are agent-based models in which a population of agents imitates each other using realistic vowels. The agents evolve under selective pressure for good imitation. In one model, the evolution of the vocal tract is modeled; in the other, a cognitive mechanism for perceiving speech accurately is modeled. In both cases, biological adaptations to using and learning speech evolve, even though (...)
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  • Language Evolution by Iterated Learning With Bayesian Agents.Thomas L. Griffiths & Michael L. Kalish - 2007 - Cognitive Science 31 (3):441-480.
    Languages are transmitted from person to person and generation to generation via a process of iterated learning: people learn a language from other people who once learned that language themselves. We analyze the consequences of iterated learning for learning algorithms based on the principles of Bayesian inference, assuming that learners compute a posterior distribution over languages by combining a prior (representing their inductive biases) with the evidence provided by linguistic data. We show that when learners sample languages from this posterior (...)
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  • Aspects of the Theory of Syntax.John Lyons - 1966 - Philosophical Quarterly 16 (65):393-395.
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  • Contextual predictability shapes signal autonomy.James Winters, Simon Kirby & Kenny Smith - 2018 - Cognition 176 (C):15-30.
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  • Remembering.F. C. Bartlett - 1935 - Scientia 29 (57):221.
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  • Learning biases predict a word order universal.Jennifer Culbertson, Paul Smolensky & Géraldine Legendre - 2012 - Cognition 122 (3):306-329.
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  • How communication changes when we cannot mime the world: Experimental evidence for the effect of iconicity on combinatoriality.Gareth Roberts, Jirka Lewandowski & Bruno Galantucci - 2015 - Cognition 141 (C):52-66.
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  • Signal dimensionality and the emergence of combinatorial structure.Hannah Little, Kerem Eryılmaz & Bart de Boer - 2017 - Cognition 168 (C):1-15.
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  • Saying what you mean in dialogue: A study in conceptual and semantic co-ordination.Simon Garrod & Anthony Anderson - 1987 - Cognition 27 (2):181-218.
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  • An Experimental Study of the Emergence of Human Communication Systems.Bruno Galantucci - 2005 - Cognitive Science 29 (5):737-767.
    The emergence of human communication systems is typically investigated via 2 approaches with complementary strengths and weaknesses: naturalistic studies and computer simulations. This study was conducted with a method that combines these approaches. Pairs of participants played video games requiring communication. Members of a pair were physically separated but exchanged graphic signals through a medium that prevented the use of standard symbols (e.g., letters). Communication systems emerged and developed rapidly during the games, integrating the use of explicit signs with information (...)
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  • Modeling Co‐evolution of Speech and Biology.Bart de Boer - 2016 - Topics in Cognitive Science 8 (2):459-468.
    Two computer simulations are investigated that model interaction of cultural evolution of language and biological evolution of adaptations to language. Both are agent‐based models in which a population of agents imitates each other using realistic vowels. The agents evolve under selective pressure for good imitation. In one model, the evolution of the vocal tract is modeled; in the other, a cognitive mechanism for perceiving speech accurately is modeled. In both cases, biological adaptations to using and learning speech evolve, even though (...)
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