Publications

Displaying 201 - 300 of 428
  • Klein, W. (2012). Alle zwei Wochen verschwindet eine Sprache. In G. Stock (Ed.), Die Akademie am Gendarmenmarkt 2012/13, Jahresmagazin 2012/13 (pp. 8-13). Berlin: Berlin-Brandenburgische Akademie der Wissenschaften.
  • Klein, W. (2001). Das Ende vor Augen: Deutsch als Wissenschaftssprache. In F. Debus, F. Kollmann, & U. Pörken (Eds.), Deutsch als Wissenschaftssprache im 20. Jahrhundert (pp. 289-293). Mainz: Akademie der Wissenschaften und der Literatur.
  • Klein, W. (2001). Deiktische Orientierung. In M. Haspelmath, E. König, W. Oesterreicher, & W. Raible (Eds.), Sprachtypologie und sprachliche Universalien: Vol. 1/1 (pp. 575-590). Berlin: de Gruyter.
  • Klein, W. (1998). Ein Blick zurück auf die Varietätengrammatik. In U. Ammon, K. Mattheier, & P. Nelde (Eds.), Sociolinguistica: Internationales Jahrbuch für europäische Soziolinguistik (pp. 22-38). Tübingen: Niemeyer.
  • Klein, W. (2001). Elementary forms of linguistic organisation. In S. Ward, & J. Trabant (Eds.), The origins of language (pp. 81-102). Berlin: Mouton de Gruyter.
  • Klein, W. (2001). Die Linguistik ist anders geworden. In S. Anschütz, S. Kanngießer, & G. Rickheit (Eds.), A Festschrift for Manfred Briegel: Spektren der Linguistik (pp. 51-72). Wiesbaden: Deutscher Universitätsverlag.
  • Klein, W. (2012). Die Sprache der Denker. In J. Voss, & M. Stolleis (Eds.), Fachsprachen und Normalsprache (pp. 49-60). Göttingen: Wallstein.
  • Klein, W. (1998). Assertion and finiteness. In N. Dittmar, & Z. Penner (Eds.), Issues in the theory of language acquisition: Essays in honor of Jürgen Weissenborn (pp. 225-245). Bern: Peter Lang.
  • Klein, W. (2004). Das Digitale Wörterbuch der deutschen Sprache des 20. Jahrhunderts (DWDS). In J. Scharnhorst (Ed.), Sprachkultur und Lexikographie (pp. 281-311). Berlin: Peter Lang.
  • Klein, W. (1979). Die Geschichte eines Tores. In R. Baum, F. J. Hausmann, & I. Monreal-Wickert (Eds.), Sprache in Unterricht und Forschung: Schwerpunkt Romanistik (pp. 175-194). Tübingen: Narr.
  • Klein, W. (1994). Für eine rein zeitliche Deutung von Tempus und Aspekt. In R. Baum (Ed.), Lingua et Traditio: Festschrift für Hans Helmut Christmann zum 65. Geburtstag (pp. 409-422). Tübingen: Narr.
  • Klein, W. (1994). Keine Känguruhs zur Linken: Über die Variabilität von Raumvorstellungen und ihren Ausdruck in der Sprache. In H.-J. Kornadt, J. Grabowski, & R. Mangold-Allwinn (Eds.), Sprache und Kognition (pp. 163-182). Heidelberg, Berlin, Oxford: Spektrum.
  • Klein, W. (1994). Learning how to express temporality in a second language. In A. G. Ramat, & M. Vedovelli (Eds.), Società di linguistica Italiana, SLI 34: Italiano - lingua seconda/lingua straniera: Atti del XXVI Congresso (pp. 227-248). Roma: Bulzoni.
  • Klein, W. (2012). Grußworte. In C. Markschies, & E. Osterkamp (Eds.), Vademekum der Inspirationsmittel (pp. 63-65). Göttingen: Wallstein.
  • Klein, W. (2001). Lexicology and lexicography. In N. Smelser, & P. Baltes (Eds.), International encyclopedia of the social & behavioral sciences: Vol. 13 (pp. 8764-8768). Amsterdam: Elsevier Science.
  • Klein, W., & Dittmar, N. (Eds.). (1994). Interkulturelle Kommunikation [Special Issue]. Zeitschrift für Literaturwissenschaft und Linguistik, (93).
  • Klein, W. (Ed.). (1998). Kaleidoskop [Special Issue]. Zeitschrift für Literaturwissenschaft und Linguistik, (112).
  • Klein, W. (Ed.). (1979). Sprache und Kontext [Special Issue]. Zeitschrift für Literaturwissenschaft und Linguistik, (33).
  • Klein, W. (2001). Second language acquisition. In N. Smelser, & P. Baltes (Eds.), International encyclopedia of the social & behavioral sciences: Vol. 20 (pp. 13768-13771). Amsterdam: Elsevier science.
  • Klein, W., & Vater, H. (1998). The perfect in English and German. In L. Kulikov, & H. Vater (Eds.), Typology of verbal categories: Papers presented to Vladimir Nedjalkov on the occasion of his 70th birthday (pp. 215-235). Tübingen: Niemeyer.
  • Klein, W. (2012). The information structure of French. In M. Krifka, & R. Musan (Eds.), The expression of information structure (pp. 95-126). Berlin: de Gruyter.
  • Klein, W. (2001). Time and again. In C. Féry, & W. Sternefeld (Eds.), Audiatur vox sapientiae: A festschrift for Arnim von Stechow (pp. 267-286). Berlin: Akademie Verlag.
  • Klein, W. (2001). Typen und Konzepte des Spracherwerbs. In L. Götze, G. Helbig, G. Henrici, & H. Krumm (Eds.), Deutsch als Fremdsprache (pp. 604-616). Berlin: de Gruyter.
  • Kopecka, A. (2012). Semantic granularity of placement and removal expressions in Polish. In A. Kopecka, & B. Narasimhan (Eds.), Events of putting and taking: A crosslinguistic perspective (pp. 327-348). Amsterdam: Benjamins.

    Abstract

    This chapter explores the expression of placement (or Goal-oriented) and removal (or Source-oriented) events by speakers of Polish (a West Slavic language). Its aim is to investigate the hypothesis known as ‘Source/Goal asymmetry’ according to which languages tend to favor the expression of Goals (e.g., into, onto) and to encode them more systematically and in a more fine-grained way than Sources (e.g., from, out of). The study provides both evidence and counter-evidence for Source/Goal asymmetry. On the one hand, it shows that Polish speakers use a greater variety of verbs to convey Manner and/or mode of manipulation in the expression of placement, encoding such events in a more fine-grained manner than removal events. The expression of placement is also characterized by a greater variety of verb prefixes conveying Path and prepositional phrases (including prepositions and case markers) conveying Ground. On the other hand, the study reveals that Polish speakers attend to Sources as often as to Goals, revealing no evidence for an attentional bias toward the endpoints of events.
  • Kouwenhoven, H., & Van Mulken, M. (2012). The perception of self in L1 and L2 for Dutch-English compound bilinguals. In N. De Jong, K. Juffermans, M. Keijzer, & L. Rasier (Eds.), Papers of the Anéla 2012 Applied Linguistics Conference (pp. 326-335). Delft: Eburon.
  • Kuijpers, C. T., Coolen, R., Houston, D., & Cutler, A. (1998). Using the head-turning technique to explore cross-linguistic performance differences. In C. Rovee-Collier, L. Lipsitt, & H. Hayne (Eds.), Advances in infancy research: Vol. 12 (pp. 205-220). Stamford: Ablex.
  • Lausberg, H., & Kita, S. (2001). Hemispheric specialization in nonverbal gesticulation investigated in patients with callosal disconnection. In C. Cavé, I. Guaïtella, & S. Santi (Eds.), Oralité et gestualité: Interactions et comportements multimodaux dans la communication. Actes du colloque ORAGE 2001 (pp. 266-270). Paris, France: Éditions L'Harmattan.
  • Lenkiewicz, P., Auer, E., Schreer, O., Masneri, S., Schneider, D., & Tschöpe, S. (2012). AVATecH ― automated annotation through audio and video analysis. In N. Calzolari (Ed.), Proceedings of LREC 2012: 8th International Conference on Language Resources and Evaluation (pp. 209-214). European Language Resources Association.

    Abstract

    In different fields of the humanities annotations of multimodal resources are a necessary component of the research workflow. Examples include linguistics, psychology, anthropology, etc. However, creation of those annotations is a very laborious task, which can take 50 to 100 times the length of the annotated media, or more. This can be significantly improved by applying innovative audio and video processing algorithms, which analyze the recordings and provide automated annotations. This is the aim of the AVATecH project, which is a collaboration of the Max Planck Institute for Psycholinguistics (MPI) and the Fraunhofer institutes HHI and IAIS. In this paper we present a set of results of automated annotation together with an evaluation of their quality.
  • Lenkiewicz, A., Lis, M., & Lenkiewicz, P. (2012). Linguistic concepts described with Media Query Language for automated annotation. In J. C. Meiser (Ed.), Digital Humanities 2012 Conference Abstracts. University of Hamburg, Germany; July 16–22, 2012 (pp. 477-479).

    Abstract

    Introduction Human spoken communication is multimodal, i.e. it encompasses both speech and gesture. Acoustic properties of voice, body movements, facial expression, etc. are an inherent and meaningful part of spoken interaction; they can provide attitudinal, grammatical and semantic information. In the recent years interest in audio-visual corpora has been rising rapidly as they enable investigation of different communicative modalities and provide more holistic view on communication (Kipp et al. 2009). Moreover, for some languages such corpora are the only available resource, as is the case for endangered languages for which no written resources exist.
  • Lenkiewicz, P., Van Uytvanck, D., Wittenburg, P., & Drude, S. (2012). Towards automated annotation of audio and video recordings by application of advanced web-services. In Proceedings of INTERSPEECH 2012: 13th Annual Conference of the International Speech Communication Association (pp. 1880-1883).

    Abstract

    In this paper we describe audio and video processing algorithms that are developed in the scope of AVATecH project. The purpose of these algorithms is to shorten the time taken by manual annotation of audio and video recordings by extracting features from media files and creating semi-automated annotations. We show that the use of such supporting algorithms can shorten the annotation time to 30-50% of the time necessary to perform a fully manual annotation of the same kind.
  • Levelt, W. J. M. (2001). The architecture of normal spoken language use. In G. Gupta (Ed.), Cognitive science: Issues and perspectives (pp. 457-473). New Delhi: Icon Publications.
  • Levelt, W. J. M. (1994). Psycholinguistics. In A. M. Colman (Ed.), Companion Encyclopedia of Psychology: Vol. 1 (pp. 319-337). London: Routledge.

    Abstract

    Linguistic skills are primarily tuned to the proper conduct of conversation. The innate ability to converse has provided species with a capacity to share moods, attitudes, and information of almost any kind, to assemble knowledge and skills, to plan coordinated action, to educate its offspring, in short, to create and transmit culture. In conversation the interlocutors are involved in negotiating meaning. Speaking is most complex cognitive-motor skill. It involves the conception of an intention, the selection of information whose expression will make that intention recognizable, the selection of appropriate words, the construction of a syntactic framework, the retrieval of the words’ sound forms, and the computation of an articulatory plan for each word and for the utterance as a whole. The question where communicative intentions come from is a psychodynamic question rather than a psycholinguistic one. Speaking is a form of social action, and it is in the context of action that intentions, goals, and subgoals develop.
  • 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., & Plomp, R. (1962). Musical consonance and critical bandwidth. In Proceedings of the 4th International Congress Acoustics (pp. 55-55).
  • 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., & Kempen, G. (1979). Language. In J. A. Michon, E. G. J. Eijkman, & L. F. W. De Klerk (Eds.), Handbook of psychonomics (Vol. 2) (pp. 347-407). Amsterdam: North Holland.
  • Levelt, W. J. M. (1994). On the skill of speaking: How do we access words? In Proceedings ICSLP 94 (pp. 2253-2258). Yokohama: The Acoustical Society of Japan.
  • Levelt, W. J. M. (1994). Onder woorden brengen: Beschouwingen over het spreekproces. In Haarlemse voordrachten: voordrachten gehouden in de Hollandsche Maatschappij der Wetenschappen te Haarlem. Haarlem: Hollandsche maatschappij der wetenschappen.
  • Levelt, W. J. M. (2001). Relations between speech production and speech perception: Some behavioral and neurological observations. In E. Dupoux (Ed.), Language, brain and cognitive development: Essays in honour of Jacques Mehler (pp. 241-256). Cambridge, MA: MIT Press.
  • Levelt, W. J. M., & Plomp, K. (1968). The appreciation of musical intervals. In J. M. M. Aler (Ed.), Proceedings of the fifth International Congress of Aesthetics, Amsterdam 1964 (pp. 901-904). The Hague: Mouton.
  • Levelt, W. J. M. (1979). The origins of language and language awareness. In M. Von Cranach, K. Foppa, W. Lepenies, & D. Ploog (Eds.), Human ethology (pp. 739-745). Cambridge: Cambridge University Press.
  • Levelt, W. J. M. (1994). The skill of speaking. In P. Bertelson, P. Eelen, & G. d'Ydewalle (Eds.), International perspectives on psychological science: Vol. 1. Leading themes (pp. 89-103). Hove: Erlbaum.
  • Levelt, W. J. M. (1994). What can a theory of normal speaking contribute to AAC? In ISAAC '94 Conference Book and Proceedings. Hoensbroek: IRV.
  • Levinson, S. C. (2001). Motion Verb Stimulus (Moverb) version 2. In S. C. Levinson, & N. J. Enfield (Eds.), Manual for the field season 2001 (pp. 9-13). Nijmegen: Max Planck Institute for Psycholinguistics. doi:10.17617/2.3513706.

    Abstract

    How do languages express ideas of movement, and how do they package different components of this domain, such as manner and path of motion? This task uses one large set of stimuli to gain knowledge of certain key aspects of motion verb meanings in the target language, and expands the investigation beyond simple verbs (e.g., go) to include the semantics of motion predications complete with adjuncts (e.g., go across something). Consultants are asked to view and briefly describe 96 animations of a few seconds each. The task is designed to get linguistic elicitations of motion predications under contrastive comparison with other animations in the same set. Unlike earlier tasks, the stimuli focus on inanimate moving items or “figures” (in this case, a ball).
  • Levinson, S. C. (2001). Covariation between spatial language and cognition. In M. Bowerman, & S. C. Levinson (Eds.), Language acquisition and conceptual development (pp. 566-588). Cambridge: Cambridge University Press.
  • Levinson, S. C. (1994). Deixis. In R. E. Asher (Ed.), Encyclopedia of language and linguistics (pp. 853-857). Oxford: Pergamon Press.
  • Levinson, S. C. (1998). Deixis. In J. L. Mey (Ed.), Concise encyclopedia of pragmatics (pp. 200-204). Amsterdam: Elsevier.
  • Levinson, S. C., Kita, S., & Ozyurek, A. (2001). Demonstratives in context: Comparative handicrafts. In S. C. Levinson, & N. J. Enfield (Eds.), Manual for the field season 2001 (pp. 52-54). Nijmegen: Max Planck Institute for Psycholinguistics. doi:10.17617/2.874663.

    Abstract

    Demonstratives (e.g., words such as this and that in English) pivot on relationships between the item being talked about, and features of the speech act situation (e.g., where the speaker and addressee are standing or looking). However, they are only rarely investigated multi-modally, in natural language contexts. This task is designed to build a video corpus of cross-linguistically comparable discourse data for the study of “deixis in action”, while simultaneously supporting the investigation of joint attention as a factor in speaker selection of demonstratives. In the task, two or more speakers are asked to discuss and evaluate a group of similar items (e.g., examples of local handicrafts, tools, produce) that are placed within a relatively defined space (e.g., on a table). The task can additionally provide material for comparison of pointing gesture practices.
  • Levinson, S. C., Bohnemeyer, J., & Enfield, N. J. (2001). “Time and space” questionnaire for “space in thinking” subproject. In S. C. Levinson, & N. J. Enfield (Eds.), Manual for the field season 2001 (pp. 14-20). Nijmegen: Max Planck Institute for Psycholinguistics.

    Abstract

    This entry contains: 1. An invitation to think about to what extent the grammar of space and time share lexical and morphosyntactic resources − the suggestions here are only prompts, since it would take a long questionnaire to fully explore this; 2. A suggestion about how to collect gestural data that might show us to what extent the spatial and temporal domains, have a psychological continuity. This is really the goal − but you need to do the linguistic work first or in addition. The goal of this task is to explore the extent to which time is conceptualised on a spatial basis.
  • Levinson, S. C. (2004). Deixis. In L. Horn (Ed.), The handbook of pragmatics (pp. 97-121). Oxford: Blackwell.
  • Levinson, S. C. (2001). Maxim. In S. Duranti (Ed.), Key terms in language and culture (pp. 139-142). Oxford: Blackwell.
  • Levinson, S. C. (1998). Minimization and conversational inference. In A. Kasher (Ed.), Pragmatics: Vol. 4 Presupposition, implicature and indirect speech acts (pp. 545-612). London: Routledge.
  • Levinson, S. C., Enfield, N. J., & Senft, G. (2001). Kinship domain for 'space in thinking' subproject. In S. C. Levinson, & N. J. Enfield (Eds.), Manual for the field season 2001 (pp. 85-88). Nijmegen: Max Planck Institute for Psycholinguistics. doi:10.17617/2.874655.
  • Levinson, S. C., & Wittenburg, P. (2001). Language as cultural heritage - Promoting research and public awareness on the Internet. In J. Renn (Ed.), ECHO - An Infrastructure to Bring European Cultural Heritage Online (pp. 104-111). Berlin: Max Planck Institute for the History of Science.

    Abstract

    The ECHO proposal aims to bring to life the cultural heritage of Europe, through internet technology that encourages collaboration across the Humanities disciplines which interpret it – at the same time making all this scholarship accessible to the citizens of Europe. An essential part of the cultural heritage of Europe is the diverse set of languages used on the continent, in their historical, literary and spoken forms. Amongst these are the ‘hidden languages’ used by minorities but of wide interest to the general public. We take the 18 Sign Languages of the EEC – the natural languages of the deaf - as an example. Little comparative information about these is available, despite their special scientific importance, the widespread public interest and the policy implications. We propose a research project on these languages based on placing fully annotated digitized moving images of each of these languages on the internet. This requires significant development of multi-media technology which would allow distributed annotation of a central corpus, together with the development of special search techniques. The technology would have widespread application to all cultural performances recorded as sound plus moving images. Such a project captures in microcosm the essence of the ECHO proposal: cultural heritage is nothing without the humanities research which contextualizes and gives it comparative assessment; by marrying information technology to humanities research, we can bring these materials to a wider public while simultaneously boosting Europe as a research area.
  • Levinson, S. C., Kita, S., & Enfield, N. J. (2001). Locally-anchored narrative. In S. C. Levinson, & N. J. Enfield (Eds.), Manual for the field season 2001 (pp. 147). Nijmegen: Max Planck Institute for Psycholinguistics. doi:10.17617/2.874660.

    Abstract

    As for 'Locally-anchored spatial gestures task, version 2', a major goal of this task is to elicit locally-anchored spatial gestures across different cultures. “Locally-anchored spatial gestures” are gestures that are roughly oriented to the actual geographical direction of referents. Rather than set up an interview situation, this task involves recording informal, animated narrative delivered to a native-speaker interlocutor. Locally-anchored gestures produced in such narrative are roughly comparable to those collected in the interview task. The data collected can also be used to investigate a wide range of other topics.
  • Levinson, S. C. (2012). Interrogative intimations: On a possible social economics of interrogatives. In J. P. De Ruiter (Ed.), Questions: Formal, functional and interactional perspectives (pp. 11-32). New York: Cambridge University Press.
  • Levinson, S. C., & Brown, P. (2012). Put and Take in Yélî Dnye, the Papuan language of Rossel Island. In A. Kopecka, & B. Narasimhan (Eds.), Events of putting and taking: A crosslinguistic perspective (pp. 273-296). Amsterdam: Benjamins.

    Abstract

    This paper describes the linguistic treatment of placement events in the Rossel Island (Papua New Guinea) language Yélî Dnye. Yélî Dnye is unusual in treating PUT and TAKE events symmetrically with a remarkable consistency. In what follows, we first provide a brief background for the language, then describe the six core PUT/TAKE verbs that were drawn upon by Yélî Dnye speakers to describe the great majority of the PUT/TAKE stimuli clips, along with some of their grammatical properties. In Section 5 we describe alternative verbs usable in particular circumstances and give an indication of the basis for variability in responses across speakers. Section 6 presents some reasons why the Yélî verb pattern for expressing PUT and TAKE events is of broad interest.
  • Levinson, S. C., & Haviland, J. B. (Eds.). (1994). Space in Mayan languages [Special Issue]. Linguistics, 32(4/5).
  • Levinson, S. C. (2001). Space: Linguistic expression. In N. Smelser, & P. Baltes (Eds.), International Encyclopedia of Social and Behavioral Sciences: Vol. 22 (pp. 14749-14752). Oxford: Pergamon.
  • Levinson, S. C. (2001). Place and space in the sculpture of Anthony Gormley - An anthropological perspective. In S. D. McElroy (Ed.), Some of the facts (pp. 68-109). St Ives: Tate Gallery.
  • Levinson, S. C. (2001). Pragmatics. In N. Smelser, & P. Baltes (Eds.), International Encyclopedia of Social and Behavioral Sciences: Vol. 17 (pp. 11948-11954). Oxford: Pergamon.
  • Levinson, S. C. (1979). Pragmatics and social deixis: Reclaiming the notion of conventional implicature. In C. Chiarello (Ed.), Proceedings of the Fifth Annual Meeting of the Berkeley Linguistics Society (pp. 206-223).
  • Levinson, S. C. (2012). Preface. In A. Kopecka, & B. Narasimhan (Eds.), Events of putting and taking: A crosslinguistic perspective (pp. xi-xv). Amsterdam: Benjamins.
  • Levinson, S. C., & Enfield, N. J. (2001). Preface and priorities. In S. C. Levinson, & N. J. Enfield (Eds.), Manual for the field season 2001 (pp. 3). Nijmegen: Max Planck Institute for Psycholinguistics.
  • Levinson, S. C., & Senft, G. (1994). Wie lösen Sprecher von Sprachen mit absoluten und relativen Systemen des räumlichen Verweisens nicht-sprachliche räumliche Aufgaben? In Jahrbuch der Max-Planck-Gesellschaft 1994 (pp. 295-299). München: Generalverwaltung der Max-Planck-Gesellschaft München.
  • 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., Van Staden, M., & Enfield, N. J. (2004). The human body in cognition, brain, and typology. In K. Hovie (Ed.), Forum Handbook, 4th International Forum on Language, Brain, and Cognition - Cognition, Brain, and Typology: Toward a Synthesis (pp. 31-35). Sendai: Tohoku University.

    Abstract

    The human body is unique: it is both an object of perception and the source of human experience. Its universality makes it a perfect resource for asking questions about how cognition, brain and typology relate to one another. For example, we can ask how speakers of different languages segment and categorize the human body. A dominant view is that body parts are “given” by visual perceptual discontinuities, and that words are merely labels for these visually determined parts (e.g., Andersen, 1978; Brown, 1976; Lakoff, 1987). However, there are problems with this view. First it ignores other perceptual information, such as somatosensory and motoric representations. By looking at the neural representations of sesnsory representations, we can test how much of the categorization of the human body can be done through perception alone. Second, we can look at language typology to see how much universality and variation there is in body-part categories. A comparison of a range of typologically, genetically and areally diverse languages shows that the perceptual view has only limited applicability (Majid, Enfield & van Staden, in press). For example, using a “coloring-in” task, where speakers of seven different languages were given a line drawing of a human body and asked to color in various body parts, Majid & van Staden (in prep) show that languages vary substantially in body part segmentation. For example, Jahai (Mon-Khmer) makes a lexical distinction between upper arm, lower arm, and hand, but Lavukaleve (Papuan Isolate) has just one word to refer to arm, hand, and leg. This shows that body part categorization is not a straightforward mapping of words to visually determined perceptual parts.
  • Majid, A. (2012). A guide to stimulus-based elicitation for semantic categories. In N. Thieberger (Ed.), The Oxford handbook of linguistic fieldwork (pp. 54-71). New York: Oxford University Press.
  • Majid, A., Van Staden, M., Boster, J. S., & Bowerman, M. (2004). Event categorization: A cross-linguistic perspective. In K. Forbus, D. Gentner, & T. Tegier (Eds.), Proceedings of the 26th Annual Meeting of the Cognitive Science Society (pp. 885-890). Mahwah, NJ: Erlbaum.

    Abstract

    Many studies in cognitive science address how people categorize objects, but there has been comparatively little research on event categorization. This study investigated the categorization of events involving material destruction, such as “cutting” and “breaking”. Speakers of 28 typologically, genetically, and areally diverse languages described events shown in a set of video-clips. There was considerable cross-linguistic agreement in the dimensions along which the events were distinguished, but there was variation in the number of categories and the placement of their boundaries.
  • Majid, A. (2012). Taste in twenty cultures [Abstract]. Abstracts from the XXIth Congress of European Chemoreception Research Organization, ECRO-2011. Publ. in Chemical Senses, 37(3), A10.

    Abstract

    Scholars disagree about the extent to which language can tell us
    about conceptualisation of the world. Some believe that language
    is a direct window onto concepts: Having a word ‘‘bird’’, ‘‘table’’ or
    ‘‘sour’’ presupposes the corresponding underlying concept, BIRD,
    TABLE, SOUR. Others disagree. Words are thought to be uninformative,
    or worse, misleading about our underlying conceptual representations;
    after all, our mental worlds are full of ideas that we
    struggle to express in language. How could this be so, argue sceptics,
    if language were a direct window on our inner life? In this presentation,
    I consider what language can tell us about the
    conceptualisation of taste. By considering linguistic data from
    twenty unrelated cultures – varying in subsistence mode (huntergatherer
    to industrial), ecological zone (rainforest jungle to desert),
    dwelling type (rural and urban), and so forth – I argue any single language is, indeed, impoverished about what it can reveal about
    taste. But recurrent lexicalisation patterns across languages can
    provide valuable insights about human taste experience. Moreover,
    language patterning is part of the data that a good theory of taste
    perception has to be answerable for. Taste researchers, therefore,
    cannot ignore the crosslinguistic facts.
  • Majid, A., Boroditsky, L., & Gaby, A. (Eds.). (2012). Time in terms of space [Research topic] [Special Issue]. Frontiers in cultural psychology. Retrieved from http://www.frontiersin.org/cultural_psychology/researchtopics/Time_in_terms_of_space/755.

    Abstract

    This Research Topic explores the question: what is the relationship between representations of time and space in cultures around the world? This question touches on the broader issue of how humans come to represent and reason about abstract entities – things we cannot see or touch. Time is a particularly opportune domain to investigate this topic. Across cultures, people use spatial representations for time, for example in graphs, time-lines, clocks, sundials, hourglasses, and calendars. In language, time is also heavily related to space, with spatial terms often used to describe the order and duration of events. In English, for example, we might move a meeting forward, push a deadline back, attend a long concert or go on a short break. People also make consistent spatial gestures when talking about time, and appear to spontaneously invoke spatial representations when processing temporal language. A large body of evidence suggests a close correspondence between temporal and spatial language and thought. However, the ways that people spatialize time can differ dramatically across languages and cultures. This research topic identifies and explores some of the sources of this variation, including patterns in spatial thinking, patterns in metaphor, gesture and other cultural systems. This Research Topic explores how speakers of different languages talk about time and space and how they think about these domains, outside of language. The Research Topic invites papers exploring the following issues: 1. Do the linguistic representations of space and time share the same lexical and morphosyntactic resources? 2. To what extent does the conceptualization of time follow the conceptualization of space?
  • Marti, M., Alhama, R. G., & Recasens, M. (2012). Los avances tecnológicos y la ciencia del lenguaje. In T. Jiménez Juliá, B. López Meirama, V. Vázquez Rozas, & A. Veiga (Eds.), Cum corde et in nova grammatica. Estudios ofrecidos a Guillermo Rojo (pp. 543-553). Santiago de Compostela: Universidade de Santiago de Compostela.

    Abstract

    La ciencia moderna nace de la conjunción entre postulados teóricos y el desarrollo de una infraestructura tecnológica que permite observar los hechos de manera adecuada, realizar experimentos y verificar las hipótesis. Desde Galileo, ciencia y tecnología han avanzado conjuntamente. En el mundo occidental, la ciencia ha evolucionado desde pro-puestas puramente especulativas (basadas en postulados apriorísticos) hasta el uso de métodos experimentales y estadísticos para explicar mejor nuestras observaciones. La tecnología se hermana con la ciencia facilitando al investigador una aproximación adecuada a los hechos que pretende explicar. Así, Galileo, para observar los cuerpos celestes, mejoró el utillaje óptico, lo que le permitió un acercamiento más preciso al objeto de estudio y, en consecuencia, unos fundamentos más sólidos para su propuesta teórica. De modo similar, actualmente el desarrollo tecnológico digital ha posibilitado la extracción masiva de datos y el análisis estadístico de éstos para verificar las hipótesis de partida: la lingüística no ha podido dar el paso desde la pura especulación hacia el análisis estadístico de los hechos hasta la aparición de las tecnologías digitales.
  • Matsuo, A. (2004). Young children's understanding of ongoing vs. completion in present and perfective participles. In J. v. Kampen, & S. Baauw (Eds.), Proceedings of GALA 2003 (pp. 305-316). Utrecht: Netherlands Graduate School of Linguistics (LOT).
  • McDonough, L., Choi, S., Bowerman, M., & Mandler, J. M. (1998). The use of preferential looking as a measure of semantic development. In C. Rovee-Collier, L. P. Lipsitt, & H. Hayne (Eds.), Advances in Infancy Research. Volume 12. (pp. 336-354). Stamford, CT: Ablex Publishing.
  • McQueen, J. M., Norris, D., & Cutler, A. (2001). Can lexical knowledge modulate prelexical representations over time? In R. Smits, J. Kingston, T. Neary, & R. Zondervan (Eds.), Proceedings of the workshop on Speech Recognition as Pattern Classification (SPRAAC) (pp. 145-150). Nijmegen: Max Planck Institute for Psycholinguistics.

    Abstract

    The results of a study on perceptual learning are reported. Dutch subjects made lexical decisions on a list of words and nonwords. Embedded in the list were either [f]- or [s]-final words in which the final fricative had been replaced by an ambiguous sound, midway between [f] and [s]. One group of listeners heard ambiguous [f]- final Dutch words like [kara?] (based on karaf, carafe) and unambiguous [s]-final words (e.g., karkas, carcase). A second group heard the reverse (e.g., ambiguous [karka?] and unambiguous karaf). After this training phase, listeners labelled ambiguous fricatives on an [f]- [s] continuum. The subjects who had heard [?] in [f]- final words categorised these fricatives as [f] reliably more often than those who had heard [?] in [s]-final words. These results suggest that speech recognition is dynamic: the system adjusts to the constraints of each particular listening situation. The lexicon can provide this adjustment process with a training signal.
  • McQueen, J. M., & Cutler, A. (1998). Morphology in word recognition. In A. M. Zwicky, & A. Spencer (Eds.), The handbook of morphology (pp. 406-427). Oxford: Blackwell.
  • McQueen, J. M., & Cutler, A. (1998). Spotting (different kinds of) words in (different kinds of) context. In R. Mannell, & J. Robert-Ribes (Eds.), Proceedings of the Fifth International Conference on Spoken Language Processing: Vol. 6 (pp. 2791-2794). Sydney: ICSLP.

    Abstract

    The results of a word-spotting experiment are presented in which Dutch listeners tried to spot different types of bisyllabic Dutch words embedded in different types of nonsense contexts. Embedded verbs were not reliably harder to spot than embedded nouns; this suggests that nouns and verbs are recognised via the same basic processes. Iambic words were no harder to spot than trochaic words, suggesting that trochaic words are not in principle easier to recognise than iambic words. Words were harder to spot in consonantal contexts (i.e., contexts which themselves could not be words) than in longer contexts which contained at least one vowel (i.e., contexts which, though not words, were possible words of Dutch). A control experiment showed that this difference was not due to acoustic differences between the words in each context. The results support the claim that spoken-word recognition is sensitive to the viability of sound sequences as possible words.
  • Meira, S., & Levinson, S. C. (2001). Topological tasks: General introduction. In S. C. Levinson, & N. J. Enfield (Eds.), Manual for the field season 2001 (pp. 29-51). Nijmegen: Max Planck Institute for Psycholinguistics. doi:10.17617/2.874665.
  • Merolla, D., & Ameka, F. K. (2012). Reflections on video fieldwork: The making of Verba Africana IV on the Ewe Hogbetsotso Festival. In D. Merolla, J. Jansen, & K. Nait-Zerrad (Eds.), Multimedia research and documentation of oral genres in Africa - The step forward (pp. 123-132). Münster: Lit.
  • 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.
  • Mitterer, H. (Ed.). (2012). Ecological aspects of speech perception [Research topic] [Special Issue]. Frontiers in Cognition.

    Abstract

    Our knowledge of speech perception is largely based on experiments conducted with carefully recorded clear speech presented under good listening conditions to undistracted listeners - a near-ideal situation, in other words. But the reality poses a set of different challenges. First of all, listeners may need to divide their attention between speech comprehension and another task (e.g., driving). Outside the laboratory, the speech signal is often slurred by less than careful pronunciation and the listener has to deal with background noise. Moreover, in a globalized world, listeners need to understand speech in more than their native language. Relatedly, the speakers we listen to often have a different language background so we have to deal with a foreign or regional accent we are not familiar with. Finally, outside the laboratory, speech perception is not an end in itself, but rather a mean to contribute to a conversation. Listeners do not only need to understand the speech they are hearing, they also need to use this information to plan and time their own responses. For this special topic, we invite papers that address any of these ecological aspects of speech perception.
  • Moore, R. K., & Cutler, A. (2001). Constraints on theories of human vs. machine recognition of speech. In R. Smits, J. Kingston, T. Neary, & R. Zondervan (Eds.), Proceedings of the workshop on Speech Recognition as Pattern Classification (SPRAAC) (pp. 145-150). Nijmegen: Max Planck Institute for Psycholinguistics.

    Abstract

    The central issues in the study of speech recognition by human listeners (HSR) and of automatic speech recognition (ASR) are clearly comparable; nevertheless the research communities that concern themselves with ASR and HSR are largely distinct. This paper compares the research objectives of the two fields, and attempts to draw informative lessons from one to the other.
  • Namjoshi, J., Tremblay, A., Broersma, M., Kim, S., & Cho, T. (2012). Influence of recent linguistic exposure on the segmentation of an unfamiliar language [Abstract]. Program abstracts from the 164th Meeting of the Acoustical Society of America published in the Journal of the Acoustical Society of America, 132(3), 1968.

    Abstract

    Studies have shown that listeners segmenting unfamiliar languages transfer native-language (L1) segmentation cues. These studies, however, conflated L1 and recent linguistic exposure. The present study investigates the relative influences of L1 and recent linguistic exposure on the use of prosodic cues for segmenting an artificial language (AL). Participants were L1-French listeners, high-proficiency L2-French L1-English listeners, and L1-English listeners without functional knowledge of French. The prosodic cue assessed was F0 rise, which is word-final in French, but in English tends to be word-initial. 30 participants heard a 20-minute AL speech stream with word-final boundaries marked by F0 rise, and decided in a subsequent listening task which of two words (without word-final F0 rise) had been heard in the speech stream. The analyses revealed a marginally significant effect of L1 (all listeners) and, importantly, a significant effect of recent linguistic exposure (L1-French and L2-French listeners): accuracy increased with decreasing time in the US since the listeners’ last significant (3+ months) stay in a French-speaking environment. Interestingly, no effect of L2 proficiency was found (L2-French listeners).
  • 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
  • Narasimhan, B., Kopecka, A., Bowerman, M., Gullberg, M., & Majid, A. (2012). Putting and taking events: A crosslinguistic perspective. In A. Kopecka, & B. Narasimhan (Eds.), Events of putting and taking: A crosslinguistic perspective (pp. 1-18). Amsterdam: Benjamins.
  • Narasimhan, B. (2012). Putting and Taking in Tamil and Hindi. In A. Kopecka, & B. Narasimhan (Eds.), Events of putting and taking: A crosslinguistic perspective (pp. 201-230). Amsterdam: Benjamins.

    Abstract

    Many languages have general or “light” verbs used by speakers to describe a wide range of situations owing to their relatively schematic meanings, e.g., the English verb do that can be used to describe many different kinds of actions, or the verb put that labels a range of types of placement of objects at locations. Such semantically bleached verbs often become grammaticalized and used to encode an extended (set of) meaning(s), e.g., Tamil veyyii ‘put/place’ is used to encode causative meaning in periphrastic causatives (e.g., okkara veyyii ‘make sit’, nikka veyyii ‘make stand’). But do general verbs in different languages have the same kinds of (schematic) meanings and extensional ranges? Or do they reveal different, perhaps even cross-cutting, ways of structuring the same semantic domain in different languages? These questions require detailed crosslinguistic investigation using comparable methods of eliciting data. The present study is a first step in this direction, and focuses on the use of general verbs to describe events of placement and removal in two South Asian languages, Hindi and Tamil.
  • 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., & Vonk, W. (1998). Discourse comprehension. In A. D. Friederici (Ed.), Language comprehension: a biological perspective (pp. 229-262). Berlin: Springer.

    Abstract

    The human language processor is conceived as a system that consists of several interrelated subsystems. Each subsystem performs a specific task in the complex process of language comprehension and production. A subsystem receives a particular input, performs certain specific operations on this input and yields a particular output. The subsystems can be characterized in terms of the transformations that relate the input representations to the output representations. An important issue in describing the language processing system is to identify the subsystems and to specify the relations between the subsystems. These relations can be conceived in two different ways. In one conception the subsystems are autonomous. They are related to each other only by the input-output channels. The operations in one subsystem are not affected by another system. The subsystems are modular, that is they are independent. In the other conception, the different subsystems influence each other. A subsystem affects the processes in another subsystem. In this conception there is an interaction between the subsystems.
  • Nordhoff, S., & Hammarström, H. (2012). Glottolog/Langdoc: Increasing the visibility of grey literature for low-density languages. In N. Calzolari (Ed.), Proceedings of the 8th International Conference on Language Resources and Evaluation [LREC 2012], May 23-25, 2012 (pp. 3289-3294). [Paris]: ELRA.

    Abstract

    Language resources can be divided into structural resources treating phonology, morphosyntax, semantics etc. and resources treating the social, demographic, ethnic, political context. A third type are meta-resources, like bibliographies, which provide access to the resources of the first two kinds. This poster will present the Glottolog/Langdoc project, a comprehensive bibliography providing web access to 180k bibliographical records to (mainly) low visibility resources from low-density languages. The resources are annotated for macro-area, content language, and document type and are available in XHTML and RDF.
  • Norris, D., McQueen, J. M., & Cutler, A. (1994). Competition and segmentation in spoken word recognition. In Proceedings of the Third International Conference on Spoken Language Processing: Vol. 1 (pp. 401-404). Yokohama: PACIFICO.

    Abstract

    This paper describes recent experimental evidence which shows that models of spoken word recognition must incorporate both inhibition between competing lexical candidates and a sensitivity to metrical cues to lexical segmentation. A new version of the Shortlist [1][2] model incorporating the Metrical Segmentation Strategy [3] provides a detailed simulation of the data.
  • Nouaouri, N. (2012). The semantics of placement and removal predicates in Moroccan Arabic. In A. Kopecka, & B. Narasimhan (Eds.), Events of putting and taking: A crosslinguistic perspective (pp. 99-122). Amsterdam: Benjamins.

    Abstract

    This article explores the expression of placement and removal events in Moroccan Arabic, particularly the semantic features of ‘putting’ and ‘taking’ verbs, classified in accordance with their combination with Goal and/or Source NPs. Moroccan Arabic verbs encode a variety of components of placement and removal events, including containment, attachment, features of the figure, and trajectory. Furthermore, accidental events are distinguished from deliberate events either by the inherent semantics of predicates or denoted syntactically. The postures of the Figures, in spite of some predicates distinguishing them, are typically not specified as they are in other languages, such as Dutch. Although Ground locations are frequently mentioned in both source-oriented and goal-oriented clauses, they are used more often in goal-oriented clauses.
  • 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’Connor, L. (2012). Take it up, down, and away: Encoding placement and removal in Lowland Chontal. In A. Kopecka, & B. Narasimhan (Eds.), Events of putting and taking: A crosslinguistic perspective (pp. 297-326). Amsterdam: Benjamins.

    Abstract

    This paper offers a structural and semantic analysis of expressions of caused motion in Lowland Chontal of Oaxaca, an indigenous language of southern Mexico. The data were collected using a video stimulus designed to elicit a wide range of caused motion event descriptions. The most frequent event types in the corpus depict caused motion to and from relations of support and containment, fundamental notions in the de­scription of spatial relations between two entities and critical semantic components of the linguistic encoding of caused motion in this language. Formal features of verbal construction type and argument realization are examined by sorting event descriptions into semantic types of placement and removal, to and from support and to and from containment. Together with typological factors that shape the distribution of spatial semantics and referent expression, separate treatments of support and containment relations serve to clarify notable asymmetries in patterns of predicate type and argument realization.
  • Otake, T., & Cutler, A. (2001). Recognition of (almost) spoken words: Evidence from word play in Japanese. In P. Dalsgaard (Ed.), Proceedings of EUROSPEECH 2001 (pp. 465-468).

    Abstract

    Current models of spoken-word recognition assume automatic activation of multiple candidate words fully or partially compatible with the speech input. We propose that listeners make use of this concurrent activation in word play such as punning. Distortion in punning should ideally involve no more than a minimal contrastive deviation between two words, namely a phoneme. Moreover, we propose that this metric of similarity does not presuppose phonemic awareness on the part of the punster. We support these claims with an analysis of modern and traditional puns in Japanese (in which phonemic awareness in language users is not encouraged by alphabetic orthography). For both data sets, the results support the predictions. Punning draws on basic processes of spokenword recognition, common across languages.
  • Ozyurek, A. (1998). An analysis of the basic meaning of Turkish demonstratives in face-to-face conversational interaction. In S. Santi, I. Guaitella, C. Cave, & G. Konopczynski (Eds.), Oralite et gestualite: Communication multimodale, interaction: actes du colloque ORAGE 98 (pp. 609-614). Paris: L'Harmattan.
  • Ozyurek, A. (2012). Gesture. In R. Pfau, M. Steinbach, & B. Woll (Eds.), Sign language: An international handbook (pp. 626-646). Berlin: Mouton.

    Abstract

    Gestures are meaningful movements of the body, the hands, and the face during communication,
    which accompany the production of both spoken and signed utterances. Recent
    research has shown that gestures are an integral part of language and that they contribute
    semantic, syntactic, and pragmatic information to the linguistic utterance. Furthermore,
    they reveal internal representations of the language user during communication in ways
    that might not be encoded in the verbal part of the utterance. Firstly, this chapter summarizes
    research on the role of gesture in spoken languages. Subsequently, it gives an overview
    of how gestural components might manifest themselves in sign languages, that is,
    in a situation in which both gesture and sign are expressed by the same articulators.
    Current studies are discussed that address the question of whether gestural components are the same or different in the two language modalities from a semiotic as well as from a cognitive and processing viewpoint. Understanding the role of gesture in both sign and
    spoken language contributes to our knowledge of the human language faculty as a multimodal communication system.
  • Ozyurek, A. (1994). How children talk about a conversation. In K. Beals, J. Denton, R. Knippen, L. Melnar, H. Suzuki, & E. Zeinfeld (Eds.), Papers from the Thirtieth Regional Meeting of the Chicago Linguistic Society: Main Session (pp. 309-319). Chicago, Ill: Chicago Linguistic Society.
  • Ozyurek, A. (1994). How children talk about conversations: Development of roles and voices. In E. V. Clark (Ed.), Proceedings of the Twenty-Sixth Annual Child Language Research Forum (pp. 197-206). Stanford: CSLI Publications.
  • Ozyurek, A. (2001). What do speech-gesture mismatches reveal about language specific processing? A comparison of Turkish and English. In C. Cavé, I. Guaitella, & S. Santi (Eds.), Oralité et gestualité: Interactions et comportements multimodaux dans la communication: Actes du Colloque ORAGE 2001 (pp. 567-581). Paris: L'Harmattan.
  • Peeters, D., Vanlangendonck, F., & Willems, R. M. (2012). Bestaat er een talenknobbel? Over taal in ons brein. In M. Boogaard, & M. Jansen (Eds.), Alles wat je altijd al had willen weten over taal: De taalcanon (pp. 41-43). Amsterdam: Meulenhoff.

    Abstract

    Wanneer iemand goed is in het spreken van meerdere talen, wordt wel gezegd dat zo iemand een talenknobbel heeft. Iedereen weet dat dat niet letterlijk bedoeld is: iemand met een talenknobbel herkennen we niet aan een grote bult op zijn hoofd. Toch dacht men vroeger wel degelijk dat mensen een letterlijke talenknobbel konden ontwikkelen. Een goed ontwikkeld taalvermogen zou gepaard gaan met het groeien van het hersengebied dat hiervoor verantwoordelijk was. Dit deel van het brein zou zelfs zo groot kunnen worden dat het van binnenuit tegen de schedel drukte, met name rond de ogen. Nu weten we wel beter. Maar waar in het brein bevindt de taal zich dan wel precies?

Share this page