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The unusual suspect: Influence of phonological overlap on language control*

Published online by Cambridge University Press:  29 December 2014

MATHIEU DECLERCK*
Affiliation:
RWTH Aachen University, Institute of Psychology, Aachen, Germany
ANDREA M. PHILIPP
Affiliation:
RWTH Aachen University, Institute of Psychology, Aachen, Germany
*
Address for correspondence: Mathieu Declerck, Aix-Marseille Université, Centre St. Charles, 3 place Victor Hugo, 13331 Marseille, France[email protected]

Abstract

The present study examined the influence of phonology on language switching. Unlike previous studies that investigated this influence by comparing words that are phonologically similar vs. dissimilar in two languages, the current language switching study focused on the role of phonological characteristics across words. Specifically, words with the first two phonemes being identical to those of the word in the previous trial were contrasted against words without such phonological overlap. The results revealed that the switch cost asymmetry was influenced by phonological overlap. Further investigation revealed that this influence was mainly due to persisting after-effects of phonological overlap, which caused a reversal of the asymmetrical switch cost pattern in the following trial. These results clearly indicate that manipulations on the level of phonology can have an effect on language switching. Therefore, we propose that, in contrast with the claims of most models, phonological characteristics of words play an important role in language control.

Type
Research Article
Copyright
Copyright © Cambridge University Press 2014 

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Footnotes

*

The authors would like to thank Johanna Josten and Verena Maag for conducting the experiment. We would like to thank Susan C. Bobb and two anonymous reviewers for their helpful comments on earlier drafts of this paper. Since this paper was accepted for publication, the first author's affiliation has changed from Institute of Psychology, RWTH Aachen University to Laboratoire de Psychologie Cognitive, Aix-Marseille Université and Centre National de la Recherche Scientifique, Marseille.

References

Baayen, R. H., Piepenbrock, R., & Gulikers, L. (1995). The CELEX Lexical Database (CD-ROM). Philadelphia, PA: Linguistic Data Consortium, University of Pennsylvania.Google Scholar
Bernolet, S., Hartsuiker, R. J., & Pickering, M. J. (2011). Effects of phonological feedback on the selection of syntax: Evidence from between-language syntactic priming. Bilingualism: Language and Cognition, 15, 503516.Google Scholar
Bi, Y., Xu, Y., & Caramazza, A. (2009). Orthographic and phonological effects in the picture–word interference paradigm: Evidence from a logographic language. Applied Psycholinguistics, 30, 637658.Google Scholar
Bobb, S. C., & Wodniecka, Z. (2013). Language switching in picture naming: What asymmetric switch costs (do not) tell us about inhibition in bilingual speech planning. Journal of Cognitive Psychology, 25, 568585.Google Scholar
Christoffels, I. K., Firk, C., & Schiller, N. O. (2007). Bilingual language control: An event-related brain potential study. Brain Research, 1147, 192208.Google Scholar
Costa, A., Caramazza, A., & Sebastian-Galles, N. (2000). The cognate facilitation effect: Implications for models of lexical access. Journal of Experimental Psychology: Learning, Memory and Cognition, 26, 12831296.Google Scholar
Costa, A., Miozzo, M., & Caramazza, A. (1999). Lexical selection in bilinguals: Do words in the bilingual's two lexicons compete for selection? Journal of Memory and Language, 41, 365397.Google Scholar
Costa, A., Roelstraete, B., & Hartsuiker, R. J. (2006). The lexical bias effect in bilingual speech production: Evidence for feedback between lexical and sublexical levels across languages. Psychonomic Bulletin & Review, 13, 972977.Google Scholar
Costa, A., & Santesteban, M. (2004). Lexical access in bilingual speech production: Evidence from language switching in highly proficient bilinguals and L2 learners. Journal of Memory and Language, 50, 491511.CrossRefGoogle Scholar
Costa, A., Santesteban, M., & Ivanova, I. (2006). How do highly proficient bilinguals control their lexicalization process? Inhibitory and language-specific selection mechanisms are both functional. Journal of Experimental Psychology: Learning, Memory, and Cognition, 32, 10571074.Google Scholar
Damian, M. F., & Dumay, N. (2007). Time pressure and phonological advance planning in spoken production. Journal of Memory and Language, 57, 195209.Google Scholar
Damian, M. F., & Dumay, N. (2009). Exploring phonological encoding through repeated segments. Language and Cognitive Processes, 24, 685712.Google Scholar
Dumay, N., & Damian, M. F. (2011). A word order constraint in single word production? Failure to replicate Janssen, Alario and Caramazza (2008). Psychological Science, 22, 559561.Google Scholar
Declerck, M., Koch, I., & Philipp, A. M. (2012). Digits vs. pictures: The influence of stimulus-type on language switching. Bilingualism: Language and Cognition, 15, 896904.Google Scholar
Declerck, M., Philipp, A. M., & Koch, I. (2013). Bilingual control: Sequential memory in language switching. Journal of Experimental Psychology: Learning, Memory, and Cognition, 39, 17931806.Google Scholar
Dell, G. S. (1988). The retrieval of phonological forms in production: Tests of predictions from a connectionist model. Journal of Memory and Language, 27, 124142.Google Scholar
Filippi, R., Karaminis, T., & Thomas, M. S. C. (2014). Language switching in bilingual production: Empirical data and computational modeling. Bilingualism: Language and Cognition, 17, 294315.Google Scholar
Finkbeiner, M., Almeida, J., Janssen, N., & Caramazza, A. (2006). Lexical selection in bilingual speech production does not involve language suppression. Journal of Experimental Psychology: Learning, Memory, and Cognition, 32, 10751089.Google Scholar
Gollan, T. H., & Ferreira, V. S. (2009). Should I stay or should I switch? A cost–benefit analysis of voluntary language switching in young and aging bilinguals. Journal of Experimental Psychology: Learning, Memory, and Cognition, 35, 640665.Google Scholar
Gollan, T. H., Schotter, E. R., Gomez, J., Murillo, M., & Rayner, K. (2014). Multiple levels of bilingual language control: Evidence from language intrusions in reading aloud. Psychological Science, 25, 585595.CrossRefGoogle ScholarPubMed
Green, D. W. (1998). Mental control of the bilingual lexico-semantic system. Bilingualism: Language and Cognition, 1, 213229.Google Scholar
Hantsch, A., Jescheniak, J. D., & Schriefers, H. (2009). Distractor modality can turn semantic interference into semantic facilitation in the picture–word interference task: Implications for theories of lexical access in speech production. Journal of Experimental Psychology: Learning, Memory, and Cognition, 35, 14431453.Google Scholar
Hermans, D., Bongaerts, T., de Bot, K., & Schreuder, R. (1998). Producing words in a foreign language: Can speakers prevent interference from their first language? Bilingualism: Language and Cognition, 1, 213229.Google Scholar
Hoshino, N., & Kroll, J. F. (2008). Cognate effects in picture naming: Does cross-language activation survive a change of script? Cognition, 106, 501511.Google Scholar
Koch, I., Gade, M., Schuch, S., & Philipp, A. M. (2010). Task inhibition in task switching: A review. Psychonomic Bulletin & Review, 17, 114.Google Scholar
Macizo, P., Paolieri, D., & Bajo, T. (2012). Language switching and language competition. Second Language Research, 28, 131149.Google Scholar
Meuter, R. F. I., & Allport, A. (1999). Bilingual language switching in naming: Asymmetrical costs of language selection. Journal of Memory and Language, 40, 2540.Google Scholar
Meyer, A. S. (1990). The time course of phonological encoding in language production: The encoding of successive syllables of a word. Journal of Memory and Language, 29, 524545.Google Scholar
Meyer, A. S. (1991). The time course of phonological encoding in language production: Phonological encoding inside a syllable. Journal of Memory and Language, 30, 6969.CrossRefGoogle Scholar
Meyer, A. S., & Schriefers, H. (1991). Phonological facilitation in picture–word interference experiments: Effects of stimulus onset asynchrony and types of interfering stimuli. Journal of Experimental Psychology: Learning, Memory, and Cognition, 17, 11461160.Google Scholar
Philipp, A. M., Gade, M., & Koch, I. (2007). Inhibitory processes in language switching: Evidence from switching language-defined response sets. European Journal of Cognitive Psychology, 19, 395416.CrossRefGoogle Scholar
Philipp, A. M., & Koch, I. (2009). Inhibition in language switching: What is inhibited when switching between languages in naming tasks? Journal of Experimental Psychology: Learning, Memory, and Cognition, 35, 11871195.Google Scholar
Roelofs, A. (1998). Rightward incrementality in encoding simple phrasal forms in speech production: Verb–particle combinations. Journal of Experimental Psychology: Learning, Memory, and Cognition, 24, 904921.Google Scholar
Roelofs, A. (2003). Shared phonological encoding processes and representations of languages in bilingual speakers. Language and Cognitive Processes, 18, 175204.Google Scholar
Schriefers, H., Meyer, A. S., & Levelt, W. J. M. (1990). Exploring the time course of lexical access in language production: Picture-word interference studies. Journal of Memory and Language, 29, 86102.Google Scholar
Sevald, C. A., & Dell, G. S. (1994). The sequential cuing effect in speech production. Cognition, 53, 91127.Google Scholar
Starreveld, P. A. (2000). On the interpretation of onsets of auditory context effects in word production. Journal of Memory and Language, 42, 497525.Google Scholar
Sullivan, M. P., & Riffel, B. (1999). The nature of phonological encoding during spoken word retrieval. Language and Cognitive Processes, 14, 1545.CrossRefGoogle Scholar
Thomas, M. S. C., & Allport, A. (2000). Language switching costs in bilingual visual word recognition. Journal of Memory and Language, 43, 4466.Google Scholar
Verhoef, K., Roelofs, A., & Chwilla, D. J. (2009). Role of inhibition in language switching: Evidence from event-related brain potentials in overt picture naming. Cognition, 110, 8499.Google Scholar
Wheeldon, L. (2003). Inhibitory form priming of spoken word production. Language and Cognitive Processes, 18, 81109.Google Scholar