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  1. Brain responses to a lab-evolved artificial language with space-time metaphors.Tessa Verhoef, Tyler Marghetis, Esther Walker & Seana Coulson - 2024 - Cognition 246 (C):105763.
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  • The Role of Social Network Structure in the Emergence of Linguistic Structure.Limor Raviv, Antje Meyer & Shiri Lev-Ari - 2020 - Cognitive Science 44 (8):e12876.
    Social network structure has been argued to shape the structure of languages, as well as affect the spread of innovations and the formation of conventions in the community. Specifically, theoretical and computational models of language change predict that sparsely connected communities develop more systematic languages, while tightly knit communities can maintain high levels of linguistic complexity and variability. However, the role of social network structure in the cultural evolution of languages has never been tested experimentally. Here, we present results from (...)
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  • Why do languages tolerate heterography? An experimental investigation into the emergence of informative orthography.Jon W. Carr & Kathleen Rastle - 2024 - Cognition 249 (C):105809.
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  • Simplicity and informativeness in semantic category systems.Jon W. Carr, Kenny Smith, Jennifer Culbertson & Simon Kirby - 2020 - Cognition 202 (C):104289.
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  • Individual Differences in Learning Abilities Impact Structure Addition: Better Learners Create More Structured Languages.Tamar Johnson, Noam Siegelman & Inbal Arnon - 2020 - Cognitive Science 44 (8):e12877.
    Over the last decade, iterated learning studies have provided compelling evidence for the claim that linguistic structure can emerge from non‐structured input, through the process of transmission. However, it is unclear whether individuals differ in their tendency to add structure, an issue with implications for understanding who are the agents of change. Here, we identify and test two contrasting predictions: The first sees learning as a pre‐requisite for structure addition, and predicts a positive correlation between learning accuracy and structure addition, (...)
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  • Zipfian distributions facilitate children's learning of novel word-referent mappings.Lucie Wolters, Ori Lavi-Rotbain & Inbal Arnon - 2024 - Cognition 253 (C):105932.
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  • What makes a language easy to learn? A preregistered study on how systematic structure and community size affect language learnability.Limor Raviv, Marianne de Heer Kloots & Antje Meyer - 2021 - Cognition 210 (C):104620.
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  • Evolving artificial sign languages in the lab: From improvised gesture to systematic sign.Yasamin Motamedi, Marieke Schouwstra, Kenny Smith, Jennifer Culbertson & Simon Kirby - 2019 - Cognition 192 (C):103964.
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  • Compositional structure can emerge without generational transmission.Limor Raviv, Antje Meyer & Shiri Lev-Ari - 2019 - Cognition 182 (C):151-164.
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  • Experimental Semiotics: A Systematic Categorization of Experimental Studies on the Bootstrapping of Communication Systems.Angelo Delliponti, Renato Raia, Giulia Sanguedolce, Adam Gutowski, Michael Pleyer, Marta Sibierska, Marek Placiński, Przemysław Żywiczyński & Sławomir Wacewicz - 2023 - Biosemiotics 16 (2):291-310.
    Experimental Semiotics (ES) is the study of novel forms of communication that communicators develop in laboratory tasks whose designs prevent them from using language. Thus, ES relates to pragmatics in a “pure,” radical sense, capturing the process of creating the relation between signs and their interpreters as biological, psychological, and social agents. Since such a creation of meaning-making from scratch is of central importance to language evolution research, ES has become the most prolific experimental approach in this field of research. (...)
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  • Amount of Learning and Signal Stability Modulate Emergence of Structure and Iconicity in Novel Signaling Systems.Vera Kempe, Nicolas Gauvrit, Nikolay Panayotov, Sheila Cunningham & Monica Tamariz - 2021 - Cognitive Science 45 (11):e13057.
    Cognitive Science, Volume 45, Issue 11, November 2021.
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