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From Vocal Replication to Shared Combinatorial Speech Codes: A Small Step for Evolution, A Big Step for Language

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Emergence of Communication and Language

Abstract

Humans use spoken vocalizations, or their signed equivalent, as a physical support to carry language. This support is highly organized: vocalizations are built with the re-use of a small number of articulatory units, which are themselves discrete elements carved up by each linguistic community in the articulatory continuum. Moreover, the repertoires of these elementary units (the gestures, the phonemes, the morphemes) have a number of structural regularities: for example, while our vocal tract allows physically the production of hundreds of vowels, each language uses most often 5, and never more than 20 of them. Also, certain vowels are very frequent, like /a,e,i,o,u/, and some others are very rare, like /en/. All the speakers of a given linguistic community categorize the speech sounds in the same manner, and share the same repertoire of vocalizations. Speakers of different communities may have very different ways of categorizing sounds (for example, Chinese use tones to distinguish sounds), and repertoires of vocalizations. Such an organized physical support of language is crucial for the existence of language, and thus asking how it may have appeared in the biological and/or cultural history of humans is a fundamental questions. In particular, one can wonder how much the evolution of human speech codes relied on specific evolutionary innovations, and thus how difficult (or not) it was for speech to appear.

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References

  • Beecher, M., Brenowitz, E., 2005. Functional aspects of song learning in songbirds. Trends in Ecology and Evolution 20, 143–149.

    Article  Google Scholar 

  • Boe, L., Schwartz, J., Valle, N., 1995. The prediction of vowel systems: perceptual contrast and stability. In: E., K. (Ed.), Fundamentals of Speech Synthesis and Recognition. Chichester: John Wiley, pp. 185–213.

    Google Scholar 

  • Crothers, J., 1978. Typology and universals of vowels systems. Phonology 2, 93–152.

    Google Scholar 

  • de Boer, B., 2001. The origins of vowel systems. Oxford Linguistics. Oxford University Press.

    Google Scholar 

  • Kohonen, T., 1982. Self-organized formation of topologically correct feature maps. Biological Cybernetics 43 (1), 59–69.

    Article  MathSciNet  MATH  Google Scholar 

  • Ladefoged, P., Maddieson, I., 1996. The Sounds of the World’s Languages. Blackwell Publishers, Oxford.

    Google Scholar 

  • Lindblom, B., 1992. Phonological units as adaptive emergents of lexical development. In: Ferguson, Menn, Stoel-Gammon (Eds.), Phonological Development: Models, Research, Implications. York Press, Timonnium, MD, pp. 565–604.

    Google Scholar 

  • Maddieson, I., 1984. Patterns of sound. Cambridge university press.

    Google Scholar 

  • Mehler, J., Christophe, A., Ramus, F., 2000. What we know about the initial state for language. In: Marantz, A., Miyashita, Y., O’Neil, W. (Eds.), Image, Language, Brain: Papers from the first Mind-Brain Articulation Project symposium. Cambridge, MA: MIT Press, pp. 51–75.

    Google Scholar 

  • Morasso, P., Sanguinetti, V., Frisone, F., Perico, L., 1998. Coordinate-free sensorimotor processing: computing with population codes. Neural Networks 11, 1417–1428.

    Article  Google Scholar 

  • Nehaniv, C. L., Dautenhahn, K., 2002. The correspondence problem. In: Dautenhahn, K., Nehaniv, C. L. (Eds.), Imitation in Animals and Artifacts. MIT Press, pp. 41–61.

    Google Scholar 

  • Oudeyer, P.-Y., 2005. How phonological structures can be culturally selected for learnability. Adaptive Behavior 13 (4), 269–280.

    Article  Google Scholar 

  • Oudeyer, P.-Y., 2006. Self-Organization in the Evolution of Speech. Studies in the Evolution of Language. Oxford University Press.

    Book  Google Scholar 

  • Schwartz, J., Bo, L., Valle, N., Abry, C., 1997. Major trends in vowel systems inventories. Journal of Phonetics 25, 255–286.

    Article  Google Scholar 

  • Sejnowsky, T., 1977. Storing covariance with non-linearly interacting neurons. Journal of mathematical biology 4, 303–312.

    Article  Google Scholar 

  • Stevens, K., 1972. The quantal nature of speech: evidence from articulatory-acoustic data. New-York: Mc Graw-Hill, pp. 51–66.

    Google Scholar 

  • Vihman, M., 1996. Phonological Development: The Origins of Language in the Child. Oxford, UK: Blackwell Publishers.

    Google Scholar 

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Oudeyer, PY. (2007). From Vocal Replication to Shared Combinatorial Speech Codes: A Small Step for Evolution, A Big Step for Language. In: Lyon, C., Nehaniv, C.L., Cangelosi, A. (eds) Emergence of Communication and Language. Springer, London. https://doi.org/10.1007/978-1-84628-779-4_10

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  • DOI: https://doi.org/10.1007/978-1-84628-779-4_10

  • Publisher Name: Springer, London

  • Print ISBN: 978-1-84628-491-5

  • Online ISBN: 978-1-84628-779-4

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