Publications

Displaying 101 - 192 of 192
  • Lev-Ari, S. (2019). The influence of social network properties on language processing and use. In M. S. Vitevitch (Ed.), Network Science in Cognitive Psychology (pp. 10-29). New York, NY: Routledge.

    Abstract

    Language is a social phenomenon. The author learns, processes, and uses it in social contexts. In other words, the social environment shapes the linguistic knowledge and use of the knowledge. To a degree, this is trivial. A child exposed to Japanese will become fluent in Japanese, whereas a child exposed to only Spanish will not understand Japanese but will master the sounds, vocabulary, and grammar of Spanish. Language is a structured system. Sounds and words do not occur randomly but are characterized by regularities. Learners are sensitive to these regularities and exploit them when learning language. People differ in the sizes of their social networks. Some people tend to interact with only a few people, whereas others might interact with a wide range of people. This is reflected in people’s holiday greeting habits: some people might send cards to only a few people, whereas other would send greeting cards to more than 350 people.
  • Levelt, W. J. M. (1988). Psycholinguistics: An overview. In W. Bright (Ed.), International encyclopedia of linguistics: Vol. 3 (pp. 290-294). Oxford: Oxford University press.
  • Levelt, W. J. M. (1962). Motion breaking and the perception of causality. In A. Michotte (Ed.), Causalité, permanence et réalité phénoménales: Etudes de psychologie expérimentale (pp. 244-258). Louvain: Publications Universitaires.
  • Levelt, W. J. M. (2004). Language. In G. Adelman, & B. H. Smith (Eds.), Elsevier's encyclopedia of neuroscience [CD-ROM] (3rd). Amsterdam: Elsevier.
  • Levelt, W. J. M. (2015). Levensbericht George Armitage Miller 1920 - 2012. In KNAW levensberichten en herdenkingen 2014 (pp. 38-42). Amsterdam: KNAW.
  • Levelt, W. J. M. (2000). Introduction Section VII: Language. In M. S. Gazzaniga (Ed.), The new cognitive neurosciences; 2nd ed. (pp. 843-844). Cambridge: MIT Press.
  • Levelt, W. J. M. (2000). Psychology of language. In K. Pawlik, & M. R. Rosenzweig (Eds.), International handbook of psychology (pp. 151-167). London: SAGE publications.
  • Levelt, W. J. M. (2015). Sleeping Beauties. In I. Toivonen, P. Csúrii, & E. Van der Zee (Eds.), Structures in the Mind: Essays on Language, Music, and Cognition in Honor of Ray Jackendoff (pp. 235-255). Cambridge, MA: MIT Press.
  • Levelt, W. J. M. (2000). Speech production. In A. E. Kazdin (Ed.), Encyclopedia of psychology (pp. 432-433). Oxford University Press.
  • Levelt, W. J. M., & Indefrey, P. (2000). The speaking mind/brain: Where do spoken words come from? In A. Marantz, Y. Miyashita, & W. O'Neil (Eds.), Image, language, brain: Papers from the First Mind Articulation Project Symposium (pp. 77-94). Cambridge, Mass.: MIT Press.
  • Levinson, S. C. (1988). Conceptual problems in the study of regional and cultural style. In N. Dittmar, & P. Schlobinski (Eds.), The sociolinguistics of urban vernaculars: Case studies and their evaluation (pp. 161-190). Berlin: De Gruyter.
  • Levinson, S. C. (2004). Deixis. In L. Horn (Ed.), The handbook of pragmatics (pp. 97-121). Oxford: Blackwell.
  • Levinson, S. C., & Toni, I. (2019). Key issues and future directions: Interactional foundations of language. In P. Hagoort (Ed.), Human language: From genes and brain to behavior (pp. 257-261). Cambridge, MA: MIT Press.
  • Levinson, S. C. (2019). Interactional foundations of language: The interaction engine hypothesis. In P. Hagoort (Ed.), Human language: From genes and brain to behavior (pp. 189-200). Cambridge, MA: MIT Press.
  • Levinson, S. C. (2019). Natural forms of purposeful interaction among humans: What makes interaction effective? In K. A. Gluck, & J. E. Laird (Eds.), Interactive task learning: Humans, robots, and agents acquiring new tasks through natural interactions (pp. 111-126). Cambridge, MA: MIT Press.
  • Levinson, S. C. (1988). Putting linguistics on a proper footing: Explorations in Goffman's participation framework. In P. Drew, & A. Wootton (Eds.), Goffman: Exploring the interaction order (pp. 161-227). Oxford: Polity Press.
  • Lindström, E. (2004). Melanesian kinship and culture. In A. Majid (Ed.), Field Manual Volume 9 (pp. 70-73). Nijmegen: Max Planck Institute for Psycholinguistics. doi:10.17617/2.1552190.
  • Majid, A. (2015). Comparing lexicons cross-linguistically. In J. R. Taylor (Ed.), The Oxford Handbook of the Word (pp. 364-379). Oxford: Oxford University Press. doi:10.1093/oxfordhb/9780199641604.013.020.

    Abstract

    The lexicon is central to the concerns of disparate disciplines and has correspondingly elicited conflicting proposals about some of its foundational properties. Some suppose that word meanings and their associated concepts are largely universal, while others note that local cultural interests infiltrate every category in the lexicon. This chapter reviews research in two semantic domains—perception and the body—in order to illustrate crosslinguistic similarities and differences in semantic fields. Data is considered from a wide array of languages, especially those from small-scale indigenous communities which are often overlooked. In every lexical field we find considerable variation across cultures, raising the question of where this variation comes from. Is it the result of different ecological or environmental niches, cultural practices, or accidents of historical pasts? Current evidence suggests that diverse pressures differentially shape lexical fields.
  • Majid, A., Jordan, F., & Dunn, M. (Eds.). (2015). Semantic systems in closely related languages [Special Issue]. Language Sciences, 49.
  • Majid, A. (2019). Preface. In L. J. Speed, C. O'Meara, L. San Roque, & A. Majid (Eds.), Perception Metaphors (pp. vii-viii). Amsterdam: Benjamins.
  • Malt, B. C., Gennari, S., Imai, M., Ameel, E., Saji, N., & Majid, A. (2015). Where are the concepts? What words can and can’t reveal. In E. Margolis, & S. Laurence (Eds.), The conceptual Mind: New directions in the study of concepts (pp. 291-326). Cambridge, MA: MIT Press.

    Abstract

    Concepts are so fundamental to human cognition that Fodor declared the heart of a cognitive science to be its theory of concepts. To study concepts, though, cognitive scientists need to be able to identify some. The prevailing assumption has been that they are revealed by words such as triangle, table, and robin. But languages vary dramatically in how they carve up the world with names. Either ordinary concepts must be heavily language dependent, or names cannot be a direct route to concepts. We asked speakers of English, Dutch, Spanish, and Japanese to name a set of 36 video clips of human locomotion and to judge the similarities among them. We investigated what name inventories, name extensions, scaling solutions on name similarity, and scaling solutions on nonlinguistic similarity from the groups, individually and together, suggest about the underlying concepts. Aggregated naming data and similarity solutions converged on results distinct from individual languages.
  • Martin, R. C., & Tan, Y. (2015). Sentence comprehension deficits: Independence and interaction of syntax, semantics, and working memory. In A. E. Hillis (Ed.), Handbook of adult language disorders (2nd ed., pp. 303-327). Boca Raton: CRC Press.
  • Matić, D. (2015). Information structure in linguistics. In J. D. Wright (Ed.), The International Encyclopedia of Social and Behavioral Sciences (2nd ed.) Vol. 12 (pp. 95-99). Amsterdam: Elsevier. doi:10.1016/B978-0-08-097086-8.53013-X.

    Abstract

    Information structure is a subfield of linguistic research dealing with the ways speakers encode instructions to the hearer on how to process the message relative to their temporary mental states. To this end, sentences are segmented into parts conveying known and yet-unknown information, usually labeled ‘topic’ and ‘focus.’ Many languages have developed specialized grammatical and lexical means of indicating this segmentation.
  • McQueen, J. M., & Meyer, A. S. (2019). Key issues and future directions: Towards a comprehensive cognitive architecture for language use. In P. Hagoort (Ed.), Human language: From genes and brain to behavior (pp. 85-96). Cambridge, MA: MIT Press.
  • Meyer, A. S. (2004). The use of eye tracking in studies of sentence generation. In J. M. Henderson, & F. Ferreira (Eds.), The interface of language, vision, and action: Eye movements and the visual world (pp. 191-212). Hove: Psychology Press.
  • Muysken, P., Hammarström, H., Birchall, J., van Gijn, R., Krasnoukhova, O., & Müller, N. (2015). Linguistic Areas, bottom up or top down? The case of the Guaporé-Mamoré region. In B. Comrie, & L. Golluscio (Eds.), Language Contact and Documentation / Contacto lingüístico y documentación (pp. 205-238). Berlin: De Gruyter.
  • Narasimhan, B., Bowerman, M., Brown, P., Eisenbeiss, S., & Slobin, D. I. (2004). "Putting things in places": Effekte linguisticher Typologie auf die Sprachentwicklung. In G. Plehn (Ed.), Jahrbuch der Max-Planck Gesellschaft (pp. 659-663). Göttingen: Vandenhoeck & Ruprecht.

    Abstract

    Effekte linguisticher Typologie auf die Sprach-entwicklung. In G. Plehn (Ed.), Jahrbuch der Max-Planck Gesellsch
  • Neijt, A., Schreuder, R., & Baayen, R. H. (2004). Seven years later: The effect of spelling on interpretation. In L. Cornips, & J. Doetjes (Eds.), Linguistics in the Netherlands 2004 (pp. 134-145). Amsterdam: Benjamins.
  • Noordman, L. G. M., Vonk, W., Cozijn, R., & Frank, S. (2015). Causal inferences and world knowledge. In E. J. O'Brien, A. E. Cook, & R. F. Lorch (Eds.), Inferences during reading (pp. 260-289). Cambridge, UK: Cambridge University Press.
  • Noordman, L. G. M., & Vonk, W. (2015). Inferences in Discourse, Psychology of. In J. D. Wright (Ed.), International Encyclopedia of the Social & Behavioral Sciences (2nd ed.) Vol. 12 (pp. 37-44). Amsterdam: Elsevier. doi:10.1016/B978-0-08-097086-8.57012-3.

    Abstract

    An inference is defined as the information that is not expressed explicitly by the text but is derived on the basis of the understander's knowledge and is encoded in the mental representation of the text. Inferencing is considered as a central component in discourse understanding. Experimental methods to detect inferences, established findings, and some developments are reviewed. Attention is paid to the relation between inference processes and the brain.
  • Norcliffe, E., & Konopka, A. E. (2015). Vision and language in cross-linguistic research on sentence production. In R. K. Mishra, N. Srinivasan, & F. Huettig (Eds.), Attention and vision in language processing (pp. 77-96). New York: Springer. doi:10.1007/978-81-322-2443-3_5.

    Abstract

    To what extent are the planning processes involved in producing sentences fine-tuned to grammatical properties of specific languages? In this chapter we survey the small body of cross-linguistic research that bears on this question, focusing in particular on recent evidence from eye-tracking studies. Because eye-tracking methods provide a very fine-grained temporal measure of how conceptual and linguistic planning unfold in real time, they serve as an important complement to standard psycholinguistic methods. Moreover, the advent of portable eye-trackers in recent years has, for the first time, allowed eye-tracking techniques to be used with language populations that are located far away from university laboratories. This has created the exciting opportunity to extend the typological base of vision-based psycholinguistic research and address key questions in language production with new language comparisons.
  • Norman, D. A., & Levelt, W. J. M. (1988). Life at the center. In W. Hirst (Ed.), The making of cognitive science: essays in honor of George A. Miller (pp. 100-109). Cambridge University Press.
  • O'Connor, L. (2004). Going getting tired: Associated motion through space and time in Lowland Chontal. In M. Achard, & S. Kemmer (Eds.), Language, culture and mind (pp. 181-199). Stanford: CSLI.
  • O'Meara, C., Speed, L. J., San Roque, L., & Majid, A. (2019). Perception Metaphors: A view from diversity. In L. J. Speed, C. O'Meara, L. San Roque, & A. Majid (Eds.), Perception Metaphors (pp. 1-16). Amsterdam: Benjamins.

    Abstract

    Our bodily experiences play an important role in the way that we think and speak. Abstract language is, however, difficult to reconcile with this body-centred view, unless we appreciate the role metaphors play. To explore the role of the senses across semantic domains, we focus on perception metaphors, and examine their realisation across diverse languages, methods, and approaches. To what extent do mappings in perception metaphor adhere to predictions based on our biological propensities; and to what extent is there space for cross-linguistic and cross-cultural variation? We find that while some metaphors have widespread commonality, there is more diversity attested than should be comfortable for universalist accounts.
  • Ozyurek, A. (2000). Differences in spatial conceptualization in Turkish and English discourse: Evidence from both speech and gesture. In A. Goksel, & C. Kerslake (Eds.), Studies on Turkish and Turkic languages (pp. 263-272). Wiesbaden: Harrassowitz.
  • Ozyurek, A., & Woll, B. (2019). Language in the visual modality: Cospeech gesture and sign language. In P. Hagoort (Ed.), Human language: From genes and brain to behavior (pp. 67-83). Cambridge, MA: MIT Press.
  • Ozyurek, A. (2000). The influence of addressee location on spatial language and representational gestures of direction. In D. McNeill (Ed.), Language and gesture (pp. 64-83). Cambridge: Cambridge University Press.
  • Perniss, P. M., Ozyurek, A., & Morgan, G. (Eds.). (2015). The influence of the visual modality on language structure and conventionalization: Insights from sign language and gesture [Special Issue]. Topics in Cognitive Science, 7(1). doi:10.1111/tops.12113.
  • Piai, V., & Zheng, X. (2019). Speaking waves: Neuronal oscillations in language production. In K. D. Federmeier (Ed.), Psychology of Learning and Motivation (pp. 265-302). Elsevier.

    Abstract

    Language production involves the retrieval of information from memory, the planning of an articulatory program, and executive control and self-monitoring. These processes can be related to the domains of long-term memory, motor control, and executive control. Here, we argue that studying neuronal oscillations provides an important opportunity to understand how general neuronal computational principles support language production, also helping elucidate relationships between language and other domains of cognition. For each relevant domain, we provide a brief review of the findings in the literature with respect to neuronal oscillations. Then, we show how similar patterns are found in the domain of language production, both through review of previous literature and novel findings. We conclude that neurophysiological mechanisms, as reflected in modulations of neuronal oscillations, may act as a fundamental basis for bringing together and enriching the fields of language and cognition.
  • Poletiek, F. H., & Stolker, C. J. J. M. (2004). Who decides the worth of an arm and a leg? Assessing the monetary value of nonmonetary damage. In E. Kurz-Milcke, & G. Gigerenzer (Eds.), Experts in science and society (pp. 201-213). New York: Kluwer Academic/Plenum Publishers.
  • Randall, J., Van Hout, A., Weissenborn, J., & Baayen, R. H. (2004). Acquiring unaccusativity: A cross-linguistic look. In A. Alexiadou (Ed.), The unaccusativity puzzle (pp. 332-353). Oxford: Oxford University Press.
  • Ravignani, A., Chiandetti, C., & Kotz, S. (2019). Rhythm and music in animal signals. In J. Choe (Ed.), Encyclopedia of Animal Behavior (vol. 1) (2nd ed., pp. 615-622). Amsterdam: Elsevier.
  • Reesink, G. (2004). Interclausal relations. In G. Booij (Ed.), Morphologie / morphology (pp. 1202-1207). Berlin: Mouton de Gruyter.
  • Roelofs, A. (2004). The seduced speaker: Modeling of cognitive control. In A. Belz, R. Evans, & P. Piwek (Eds.), Natural language generation. (pp. 1-10). Berlin: Springer.

    Abstract

    Although humans are the ultimate “natural language generators”, the area of psycholinguistic modeling has been somewhat underrepresented in recent approaches to Natural Language Generation in computer science. To draw attention to the area and illustrate its potential relevance to Natural Language Generation, I provide an overview of recent work on psycholinguistic modeling of language production together with some key empirical findings, state-of-the-art experimental techniques, and their historical roots. The techniques include analyses of speech-error corpora, chronometric analyses, eyetracking, and neuroimaging.
    The overview is built around the issue of cognitive control in natural language generation, concentrating on the production of single words, which is an essential ingredient of the generation of larger utterances. Most of the work exploited the fact that human speakers are good but not perfect at resisting temptation, which has provided some critical clues about the nature of the underlying system.
  • Roelofs, A., & Schiller, N. (2004). Produzieren von Ein- und Mehrwortäusserungen. In G. Plehn (Ed.), Jahrbuch der Max-Planck Gesellschaft (pp. 655-658). Göttingen: Vandenhoeck & Ruprecht.
  • Rojas-Berscia, L. M. (2019). Nominalization in Shawi/Chayahuita. In R. Zariquiey, M. Shibatani, & D. W. Fleck (Eds.), Nominalization in languages of the Americas (pp. 491-514). Amsterdam: Benjamins.

    Abstract

    This paper deals with the Shawi nominalizing suffixes -su’~-ru’~-nu’ ‘general nominalizer’, -napi/-te’/-tun‘performer/agent nominalizer’, -pi’‘patient nominalizer’, and -nan ‘instrument nominalizer’. The goal of this article is to provide a description of nominalization in Shawi. Throughout this paper I apply the Generalized Scale Model (GSM) (Malchukov, 2006) to Shawi verbal nominalizations, with the intention of presenting a formal representation that will provide a basis for future areal and typological studies of nominalization. In addition, I dialogue with Shibatani’s model to see how the loss or gain of categories correlates with the lexical or grammatical nature of nominalizations. strong nominalization in Shawi correlates with lexical nominalization, whereas weak nominalizations correlate with grammatical nominalization. A typology which takes into account the productivity of the nominalizers is also discussed.
  • Rowland, C. F., & Kidd, E. (2019). Key issues and future directions: How do children acquire language? In P. Hagoort (Ed.), Human language: From genes and brain to behavior (pp. 181-185). Cambridge, MA: MIT Press.
  • Rubio-Fernández, P. (2019). Theory of mind. In C. Cummins, & N. Katsos (Eds.), The Handbook of Experimental Semantics and Pragmatics (pp. 524-536). Oxford: Oxford University Press.
  • De Ruiter, J. P. (2004). Response systems and signals of recipiency. In A. Majid (Ed.), Field Manual Volume 9 (pp. 53-55). Nijmegen: Max Planck Institute for Psycholinguistics. doi:10.17617/2.506961.

    Abstract

    Listeners’ signals of recipiency, such as “Mm-hm” or “uh-huh” in English, are the most elementary or minimal “conversational turns” possible. Minimal, because apart from acknowledging recipiency and inviting the speaker to continue with his/her next turn, they do not add any new information to the discourse of the conversation. The goal of this project is to gather cross cultural information on listeners’ feedback behaviour during conversation. Listeners in a conversation usually provide short signals that indicate to the speaker that they are still “with the speaker”. These signals could be verbal (like for instance “mm hm” in English or “hm hm” in Dutch) or nonverbal (visual), like nodding. Often, these signals are produced in overlap with the speaker’s vocalisation. If listeners do not produce these signals, speakers often invite them explicitly (e.g. “are you still there?” in a telephone conversation). Our goal is to investigate what kind of signals are used by listeners of different languages to signal “recipiency” to the speaker.
  • San Roque, L., & Bergvist, H. (Eds.). (2015). Epistemic marking in typological perspective [Special Issue]. STUF -Language typology and universals, 68(2).
  • Sandberg, A., Lansner, A., Petersson, K. M., & Ekeberg, Ö. (2000). A palimpsest memory based on an incremental Bayesian learning rule. In J. M. Bower (Ed.), Computational Neuroscience: Trends in Research 2000 (pp. 987-994). Amsterdam: Elsevier.
  • Schiller, N. O., & Verdonschot, R. G. (2015). Accessing words from the mental lexicon. In J. Taylor (Ed.), The Oxford handbook of the word (pp. 481-492). Oxford: Oxford University Press.

    Abstract

    This chapter describes how speakers access words from the mental lexicon. Lexical access is a crucial
    component in the process of transforming thoughts into speech. Some theories consider lexical access to be
    strictly serial and discrete, while others view this process as being cascading or even interactive, i.e. the different
    sub-levels influence each other. We discuss some of the evidence in favour and against these viewpoints, and
    also present arguments regarding the ongoing debate on how words are selected for production. Another important
    issue concerns the access to morphologically complex words such as derived and inflected words, as well as
    compounds. Are these accessed as whole entities from the mental lexicon or are the parts assembled online? This
    chapter tries to provide an answer to that question as well.
  • Schmitt, B. M., Schiller, N. O., Rodriguez-Fornells, A., & Münte, T. F. (2004). Elektrophysiologische Studien zum Zeitverlauf von Sprachprozessen. In H. H. Müller, & G. Rickheit (Eds.), Neurokognition der Sprache (pp. 51-70). Tübingen: Stauffenburg.
  • Schriefers, H., & Vigliocco, G. (2015). Speech Production, Psychology of [Repr.]. In J. D. Wright (Ed.), International Encyclopedia of the Social & Behavioral Sciences (2nd ed) Vol. 23 (pp. 255-258). Amsterdam: Elsevier. doi:10.1016/B978-0-08-097086-8.52022-4.

    Abstract

    This article is reproduced from the previous edition, volume 22, pp. 14879–14882, © 2001, Elsevier Ltd.
  • Schubotz, L., Oostdijk, N., & Ernestus, M. (2015). Y’know vs. you know: What phonetic reduction can tell us about pragmatic function. In S. Lestrade, P. De Swart, & L. Hogeweg (Eds.), Addenda: Artikelen voor Ad Foolen (pp. 361-380). Njimegen: Radboud University.
  • Senft, G. (2004). Sprache, Kognition und Konzepte des Raumes in verschiedenen Kulturen - Zum Problem der Interdependenz sprachlicher und mentaler Strukturen. In L. Jäger (Ed.), Medialität und Mentalität (pp. 163-176). Paderborn: Wilhelm Fink.
  • Senft, G. (2004). What do we really know about serial verb constructions in Austronesian and Papuan languages? In I. Bril, & F. Ozanne-Rivierre (Eds.), Complex predicates in Oceanic languages (pp. 49-64). Berlin: Mouton de Gruyter.
  • Senft, G. (2004). Wosi tauwau topaisewa - songs about migrant workers from the Trobriand Islands. In A. Graumann (Ed.), Towards a dynamic theory of language. Festschrift for Wolfgang Wildgen on occasion of his 60th birthday (pp. 229-241). Bochum: Universitätsverlag Dr. N. Brockmeyer.
  • Senft, G. (2004). Aspects of spatial deixis in Kilivila. In G. Senft (Ed.), Deixis and demonstratives in Oceanic languages (pp. 59-80). Canberra: Pacific Linguistics.
  • Senft, G. (2004). Introduction. In G. Senft (Ed.), Deixis and demonstratives in Oceanic languages (pp. 1-13). Canberra: Pacific Linguistics.
  • Senft, G. (2000). Introduction. In G. Senft (Ed.), Systems of nominal classification (pp. 1-10). Cambridge University Press.
  • Senft, G. (2004). Participation and posture. In A. Majid (Ed.), Field Manual Volume 9 (pp. 80-82). Nijmegen: Max Planck Institute for Psycholinguistics. doi:10.17617/2.506964.

    Abstract

    Human ethologists have shown that humans are both attracted to others and at the same time fear them. They refer to this kind of fear with the technical term ‘social fear’ and claim that “it is alleviated with personal acquaintance but remains a principle characteristic of interpersonal behaviour. As a result, we maintain various degrees of greater distance between ourselves and others depending on the amount of confidence we have in the other” (Eibl-Eibesfeldt 1989: 335). The goal of this task is to conduct exploratory, heuristic research to establish a new subproject that – based on a corpus of video data – will investigate various forms of human spatial behaviour cross-culturally.
  • Senft, G. (2019). Rituelle Kommunikation. In F. Liedtke, & A. Tuchen (Eds.), Handbuch Pragmatik (pp. 423-430). Stuttgart: J. B. Metzler. doi:10.1007/978-3-476-04624-6_41.

    Abstract

    Die Sprachwissenschaft hat den Begriff und das Konzept ›Rituelle Kommunikation‹ von der vergleichenden Verhaltensforschung übernommen. Humanethologen unterscheiden eine Reihe von sogenannten ›Ausdrucksbewegungen‹, die in der Mimik, der Gestik, der Personaldistanz (Proxemik) und der Körperhaltung (Kinesik) zum Ausdruck kommen. Viele dieser Ausdrucksbewegungen haben sich zu spezifischen Signalen entwickelt. Ethologen definieren Ritualisierung als Veränderung von Verhaltensweisen im Dienst der Signalbildung. Die zu Signalen ritualisierten Verhaltensweisen sind Rituale. Im Prinzip kann jede Verhaltensweise zu einem Signal werden, entweder im Laufe der Evolution oder durch Konventionen, die in einer bestimmten Gemeinschaft gültig sind, die solche Signale kulturell entwickelt hat und die von ihren Mitgliedern tradiert und gelernt werden.
  • Senft, G. (2000). What do we really know about nominal classification systems? In Conference handbook. The 18th national conference of the English Linguistic Society of Japan. 18-19 November, 2000, Konan University (pp. 225-230). Kobe: English Linguistic Society of Japan.
  • Senft, G. (2000). What do we really know about nominal classification systems? In G. Senft (Ed.), Systems of nominal classification (pp. 11-49). Cambridge University Press.
  • Senft, G. (2015). The Trobriand Islanders' concept of karewaga. In S. Lestrade, P. de Swart, & L. Hogeweg (Eds.), Addenda. Artikelen voor Ad Foolen (pp. 381-390). Nijmegen: Radboud University.
  • Seuren, P. A. M. (2000). A discourse-semantic account of topic and comment. In N. Nicolov, & R. Mitkov (Eds.), Recent advances in natural language processing II. Selected papers from RANLP '97 (pp. 179-190). Amsterdam: Benjamins.
  • Seuren, P. A. M. (2004). How the cognitive revolution passed linguistics by. In F. Brisard (Ed.), Language and revolution: Language and time. (pp. 63-77). Antwerpen: Universiteit van Antwerpen.
  • Seuren, P. A. M. (1988). Lexical meaning and presupposition. In W. Hüllen, & R. Schulze (Eds.), Understanding the lexicon: Meaning, sense and world knowledge in lexical semantics (pp. 170-187). Tübingen: Niemeyer.
  • Seuren, P. A. M. (2015). Prestructuralist and structuralist approaches to syntax. In T. Kiss, & A. Alexiadou (Eds.), Syntax--theory and analysis: An international handbook (pp. 134-157). Berlin: Mouton de Gruyter.
  • Seuren, P. A. M. (2000). Pseudocomplementen. In H. Den Besten, E. Elffers, & J. Luif (Eds.), Samengevoegde woorden. Voor Wim Klooster bij zijn afscheid als hoogleraar (pp. 231-237). Amsterdam: Leerstoelgroep Nederlandse Taalkunde, Universiteit van Amsterdam.
  • Seuren, P. A. M. (2015). Taal is complexer dan je denkt - recursief. In S. Lestrade, P. De Swart, & L. Hogeweg (Eds.), Addenda. Artikelen voor Ad Foolen (pp. 393-400). Nijmegen: Radboud University.
  • Sjerps, M. J., & Chang, E. F. (2019). The cortical processing of speech sounds in the temporal lobe. In P. Hagoort (Ed.), Human language: From genes and brain to behavior (pp. 361-379). Cambridge, MA: MIT Press.
  • Skiba, R. (2004). Revitalisierung bedrohter Sprachen - Ein Ernstfall für die Sprachdidaktik. In H. W. Hess (Ed.), Didaktische Reflexionen "Berliner Didaktik" und Deutsch als Fremdsprache heute (pp. 251-262). Berlin: Staufenburg.
  • Skiba, R. (1988). Computer analysis of language data using the data transformation program TEXTWOLF in conjunction with a database system. In U. Jung (Ed.), Computers in applied linguistics and language teaching (pp. 155-159). Frankfurt am Main: Peter Lang.
  • Skiba, R. (1988). Computerunterstützte Analyse von sprachlichen Daten mit Hilfe des Datenumwandlungsprogramms TextWolf in Kombination mit einem Datenbanksystem. In B. Spillner (Ed.), Angewandte Linguistik und Computer (pp. 86-88). Tübingen: Gunter Narr.
  • De Sousa, H., Langella, F., & Enfield, N. J. (2015). Temperature terms in Lao, Southern Zhuang, Southern Pinghua and Cantonese. In M. Koptjevskaja-Tamm (Ed.), The linguistics of temperature (pp. 594-638). Amsterdam: Benjamins.
  • Stivers, T. (2004). Question sequences in interaction. In A. Majid (Ed.), Field Manual Volume 9 (pp. 45-47). Nijmegen: Max Planck Institute for Psycholinguistics. doi:10.17617/2.506967.

    Abstract

    When people request information, they have a variety of means for eliciting the information. In English two of the primary resources for eliciting information include asking questions, making statements about their interlocutor (thereby generating confirmation or revision). But within these types there are a variety of ways that these information elicitors can be designed. The goal of this task is to examine how different languages seek and provide information, the extent to which syntax vs prosodic resources are used (e.g., in questions), and the extent to which the design of information seeking actions and their responses display a structural preference to promote social solidarity.
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  • Udden, J., & Schoffelen, J.-M. (2015). Mother of all Unification Studies (MOUS). In A. E. Konopka (Ed.), Research Report 2013 | 2014 (pp. 21-22). Nijmegen: Max Planck Institute for Psycholinguistics. doi:10.17617/2.2236748.
  • Van Berkum, J. J. A., & Nieuwland, M. S. (2019). A cognitive neuroscience perspective on language comprehension in context. In P. Hagoort (Ed.), Human language: From genes and brain to behavior (pp. 429-442). Cambridge, MA: MIT Press.
  • Van Heugten, M., Bergmann, C., & Cristia, A. (2015). The Effects of Talker Voice and Accent on Young Children's Speech Perception. In S. Fuchs, D. Pape, C. Petrone, & P. Perrier (Eds.), Individual Differences in Speech Production and Perception (pp. 57-88). Bern: Peter Lang.

    Abstract

    Within the first few years of life, children acquire many of the building blocks of their native language. This not only involves knowledge about the linguistic structure of spoken language, but also knowledge about the way in which this linguistic structure surfaces in their speech input. In this chapter, we review how infants and toddlers cope with differences between speakers and accents. Within the context of milestones in early speech perception, we examine how voice and accent characteristics are integrated during language processing, looking closely at the advantages and disadvantages of speaker and accent familiarity, surface-level deviation between two utterances, variability in the input, and prior speaker exposure. We conclude that although deviation from the child’s standard can complicate speech perception early in life, young listeners can overcome these additional challenges. This suggests that early spoken language processing is flexible and adaptive to the listening situation at hand.
  • Van Berkum, J. J. A. (2004). Sentence comprehension in a wider discourse: Can we use ERPs to keep track of things? In M. Carreiras, Jr., & C. Clifton (Eds.), The on-line study of sentence comprehension: eyetracking, ERPs and beyond (pp. 229-270). New York: Psychology Press.
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  • Weissenborn, J. (1988). Von der demonstratio ad oculos zur Deixis am Phantasma. Die Entwicklung der lokalen Referenz bei Kindern. In Karl Bühler's Theory of Language. Proceedings of the Conference held at Kirchberg, August 26, 1984 and Essen, November 21–24, 1984 (pp. 257-276). Amsterdam: Benjamins.
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  • Zhang, Y., Chen, C.-h., & Yu, C. (2019). Mechanisms of cross-situational learning: Behavioral and computational evidence. In Advances in Child Development and Behavior; vol. 56 (pp. 37-63).

    Abstract

    Word learning happens in everyday contexts with many words and many potential referents for those words in view at the same time. It is challenging for young learners to find the correct referent upon hearing an unknown word at the moment. This problem of referential uncertainty has been deemed as the crux of early word learning (Quine, 1960). Recent empirical and computational studies have found support for a statistical solution to the problem termed cross-situational learning. Cross-situational learning allows learners to acquire word meanings across multiple exposures, despite each individual exposure is referentially uncertain. Recent empirical research shows that infants, children and adults rely on cross-situational learning to learn new words (Smith & Yu, 2008; Suanda, Mugwanya, & Namy, 2014; Yu & Smith, 2007). However, researchers have found evidence supporting two very different theoretical accounts of learning mechanisms: Hypothesis Testing (Gleitman, Cassidy, Nappa, Papafragou, & Trueswell, 2005; Markman, 1992) and Associative Learning (Frank, Goodman, & Tenenbaum, 2009; Yu & Smith, 2007). Hypothesis Testing is generally characterized as a form of learning in which a coherent hypothesis regarding a specific word-object mapping is formed often in conceptually constrained ways. The hypothesis will then be either accepted or rejected with additional evidence. However, proponents of the Associative Learning framework often characterize learning as aggregating information over time through implicit associative mechanisms. A learner acquires the meaning of a word when the association between the word and the referent becomes relatively strong. In this chapter, we consider these two psychological theories in the context of cross-situational word-referent learning. By reviewing recent empirical and cognitive modeling studies, our goal is to deepen our understanding of the underlying word learning mechanisms by examining and comparing the two theoretical learning accounts.
  • Zuidema, W., & Fitz, H. (2019). Key issues and future directions: Models of human language and speech processing. In P. Hagoort (Ed.), Human language: From genes and brain to behavior (pp. 353-358). Cambridge, MA: MIT Press.

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