Publications

Displaying 101 - 200 of 332
  • Le Guen, O. (2009). The ethnography of emotions: A field worker's guide. In A. Majid (Ed.), Field manual volume 12 (pp. 31-34). Nijmegen: Max Planck Institute for Psycholinguistics. doi:10.17617/2.446076.

    Abstract

    The goal of this task is to investigate cross-cultural emotion categories in language and thought. This entry is designed to provide researchers with some guidelines to describe the emotional repertoire of a community from an emic perspective. The first objective is to offer ethnographic tools and a questionnaire in order to understand the semantics of emotional terms and the local conception of emotions. The second objective is to identify the local display rules of emotions in communicative interactions.
  • Gullberg, M., & Burenhult, N. (2012). Probing the linguistic encoding of placement and removal events in Swedish. In A. Kopecka, & B. Narasimhan (Eds.), Events of putting and taking: A crosslinguistic perspective (pp. 167-182). Amsterdam: Benjamins.

    Abstract

    This paper explores the linguistic encoding of placement and removal events in Swedish. Drawing on elicited spoken data, it provides a unified approach to caused motion descriptions. The results show uniform syntactic behaviour of placement and removal descriptions and a consistent asymmetry between placement and removal in the semantic specificity of verbs. The results also reveal three further semantic patterns, pertaining to the nature of the relationship between Figure and Ground, that appear to account for how these event types are characterised, viz. whether the Ground is represented by a body part of the Agent; whether the Figure is contained within the Ground; or whether it is supported by the Ground.
  • Gullberg, M., Indefrey, P., & Muysken, P. (2009). Research techniques for the study of code-switching. In B. E. Bullock, & J. A. Toribio (Eds.), The Cambridge handbook on linguistic code-switching (pp. 21-39). Cambridge: Cambridge University Press.

    Abstract

    The aim of this chapter is to provide researchers with a tool kit of semi-experimental and experimental techniques for studying code-switching. It presents an overview of the current off-line and on-line research techniques, ranging from analyses of published bilingual texts of spontaneous conversations, to tightly controlled experiments. A multi-task approach used for studying code-switched sentence production in Papiamento-Dutch bilinguals is also exemplified.
  • Gullberg, M. (2009). Why gestures are relevant to the bilingual mental lexicon. In A. Pavlenko (Ed.), The bilingual mental lexicon: Interdisciplinary approaches (pp. 161-184). Clevedon: Multilingual Matters.

    Abstract

    Gestures, the symbolic movements speakers perform while they speak, are systematically related to speech and language in non-trivial ways. This chapter presents an overview of what gestures can and cannot tell us about the monolingual and the bilingual mental lexicon. Gesture analysis opens for a broader view of the mental lexicon, targeting the interface between conceptual, semantic and syntactic aspects of event construal, and offers new possibilities for examining how languages co-exist and interact in bilinguals beyond the level of surface forms. The first section of this chapter gives a brief introduction to gesture studies and outlines the current views on the relationship between gesture, speech, and language. The second section targets the key questions for the study of the monolingual and bilingual lexicon, and illustrates the methods employed for addressing these questions. It further exemplifies systematic cross-linguistic patterns in gestural behaviour in monolingual and bilingual contexts. The final section discusses some implications of an expanded view of the multilingual lexicon that includes gesture, and outlines directions for future inquiry.

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  • Habscheid, S., & Klein, W. (Eds.). (2012). Dinge und Maschinen in der Kommunikation [Special Issue]. Zeitschrift für Literaturwissenschaft und Linguistik, 42(168).

    Abstract

    “The most profound technologies are those that disappear. They weave themselves into the fabric of everyday life until they are indistinguishable from it.” (Weiser 1991, S. 94). – Die Behauptung stammt aus einem vielzitierten Text von Mark Weiser, ehemals Chief Technology Officer am berühmten Xerox Palo Alto Research Center (PARC), wo nicht nur einige bedeutende computertechnische Innovationen ihren Ursprung hatten, sondern auch grundlegende anthropologische Einsichten zum Umgang mit technischen Artefakten gewonnen wurden.1 In einem populärwissenschaftlichen Artikel mit dem Titel „The Computer for the 21st Century” entwarf Weiser 1991 die Vision einer Zukunft, in der wir nicht mehr mit einem einzelnen PC an unserem Arbeitsplatz umgehen – vielmehr seien wir in jedem Raum umgeben von hunderten elektronischer Vorrichtungen, die untrennbar in Alltagsgegenstände eingebettet und daher in unserer materiellen Umwelt gleichsam „verschwunden“ sind. Dabei ging es Weiser nicht allein um das ubiquitäre Phänomen, das in der Medientheorie als „Transparenz der Medien“ bekannt ist2 oder in allgemeineren Theorien der Alltagserfahrung als eine selbstverständliche Verwobenheit des Menschen mit den Dingen, die uns in ihrem Sinn vertraut und praktisch „zuhanden“ sind.3 Darüber hinaus zielte Weisers Vision darauf, unsere bereits existierende Umwelt durch computerlesbare Daten zu erweitern und in die Operationen eines solchen allgegenwärtigen Netzwerks alltägliche Praktiken gleichsam lückenlos zu integrieren: In der Welt, die Weiser entwirft, öffnen sich Türen für denjenigen, der ein bestimmtes elektronisches Abzeichen trägt, begrüßen Räume Personen, die sie betreten, mit Namen, passen sich Computerterminals an die Präferenzen individueller Nutzer an usw. (Weiser 1991, S. 99).
  • Hagoort, P. (2009). The fractionation of spoken language understanding by measuring electrical and magnetic brain signals. In B. C. J. Moore, L. K. Tyler, & W. Marslen-Wilson (Eds.), The perception of speech: From sound to meaning (pp. 223-248). New York: Oxford University Press.
  • Hagoort, P., & Indefrey, P. (1997). De neurale architectuur van het menselijk taalvermogen. In H. Peters (Ed.), Handboek stem-, spraak-, en taalpathologie (pp. 1-36). Houten: Bohn Stafleu Van Loghum.
  • Hagoort, P. (2012). From ants to music and language [Preface]. In A. D. Patel, Music, language, and the brain [Chinese translation] (pp. 9-10). Shanghai: East China Normal University Press Ltd.
  • Hagoort, P. (2009). Reflections on the neurobiology of syntax. In D. Bickerton, & E. Szathmáry (Eds.), Biological foundations and origin of syntax (pp. 279-296). Cambridge, MA: MIT Press.

    Abstract

    This contribution focuses on the neural infrastructure for parsing and syntactic encoding. From an anatomical point of view, it is argued that Broca's area is an ill-conceived notion. Functionally, Broca's area and adjacent cortex (together Broca's complex) are relevant for language, but not exclusively for this domain of cognition. Its role can be characterized as providing the necessary infrastructure for unification (syntactic and semantic). A general proposal, but with required level of computational detail, is discussed to account for the distribution of labor between different components of the language network in the brain.Arguments are provided for the immediacy principle, which denies a privileged status for syntax in sentence processing. The temporal profile of event-related brain potential (ERP) is suggested to require predictive processing. Finally, since, next to speed, diversity is a hallmark of human languages, the language readiness of the brain might not depend on a universal, dedicated neural machinery for syntax, but rather on a shaping of the neural infrastructure of more general cognitive systems (e.g., memory, unification) in a direction that made it optimally suited for the purpose of communication through language.
  • Hagoort, P., & Van Turennout, M. (1997). The electrophysiology of speaking: Possibilities of event-related potential research for speech production. In W. Hulstijn, H. Peters, & P. Van Lieshout (Eds.), Speech motor production and fluency disorders: Brain research in speech production (pp. 351-361). Amsterdam: Elsevier.
  • Hagoort, P., Baggio, G., & Willems, R. M. (2009). Semantic unification. In M. S. Gazzaniga (Ed.), The cognitive neurosciences, 4th ed. (pp. 819-836). Cambridge, MA: MIT Press.

    Abstract

    Language and communication are about the exchange of meaning. A key feature of understanding and producing language is the construction of complex meaning from more elementary semantic building blocks. The functional characteristics of this semantic unification process are revealed by studies using event related brain potentials. These studies have found that word meaning is assembled into compound meaning in not more than 500 ms. World knowledge, information about the speaker, co-occurring visual input and discourse all have an immediate impact on semantic unification, and trigger similar electrophysiological responses as sentence-internal semantic information. Neuroimaging studies show that a network of brain areas, including the left inferior frontal gyrus, the left superior/middle temporal cortex, the left inferior parietal cortex and, to a lesser extent their right hemisphere homologues are recruited to perform semantic unification.
  • Hagoort, P. (2009). Taalontwikkeling: Meer dan woorden alleen. In M. Evenblij (Ed.), Brein in beeld: Beeldvorming bij heersenonderzoek (pp. 53-57). Den Haag: Stichting Bio-Wetenschappen en Maatschappij.
  • Hagoort, P., & Wassenaar, M. (1997). Taalstoornissen: Van theorie tot therapie. In B. Deelman, P. Eling, E. De Haan, A. Jennekens, & A. Van Zomeren (Eds.), Klinische Neuropsychologie (pp. 232-248). Meppel: Boom.
  • Hagoort, P. (1997). Zonder fosfor geen gedachten: Gagarin, geest en brein. In Brain & Mind (pp. 6-14). Utrecht: Reünistenvereniging Veritas.
  • Hallé, P., & Cristia, A. (2012). Global and detailed speech representations in early language acquisition. In S. Fuchs, M. Weirich, D. Pape, & P. Perrier (Eds.), Speech planning and dynamics (pp. 11-38). Frankfurt am Main: Peter Lang.

    Abstract

    We review data and hypotheses dealing with the mental representations for perceived and produced speech that infants build and use over the course of learning a language. In the early stages of speech perception and vocal production, before the emergence of a receptive or a productive lexicon, the dominant picture emerging from the literature suggests rather non-analytic representations based on units of the size of the syllable: Young children seem to parse speech into syllable-sized units in spite of their ability to detect sound equivalence based on shared phonetic features. Once a productive lexicon has emerged, word form representations are initially rather underspecified phonetically but gradually become more specified with lexical growth, up to the phoneme level. The situation is different for the receptive lexicon, in which phonetic specification for consonants and vowels seem to follow different developmental paths. Consonants in stressed syllables are somewhat well specified already at the first signs of a receptive lexicon, and become even better specified with lexical growth. Vowels seem to follow a different developmental path, with increasing flexibility throughout lexical development. Thus, children come to exhibit a consonant vowel asymmetry in lexical representations, which is clear in adult representations.
  • Hammarström, H. (2012). A full-scale test of the language farming dispersal hypothesis. In S. Wichmann, & A. P. Grant (Eds.), Quantitative approaches to linguistic diversity: Commemorating the centenary of the birth of Morris Swadesh (pp. 7-22). Amsterdam: Benjamins.

    Abstract

    Originally published in Diachronica 27:2 (2010) One attempt at explaining why some language families are large (while others are small) is the hypothesis that the families that are now large became large because their ancestral speakers had a technological advantage, most often agriculture. Variants of this idea are referred to as the Language Farming Dispersal Hypothesis. Previously, detailed language family studies have uncovered various supporting examples and counterexamples to this idea. In the present paper I weigh the evidence from ALL attested language families. For each family, I use the number of member languages as a measure of cardinal size, member language coordinates to measure geospatial size and ethnographic evidence to assess subsistence status. This data shows that, although agricultural families tend to be larger in cardinal size, their size is hardly due to the simple presence of farming. If farming were responsible for language family expansions, we would expect a greater east-west geospatial spread of large families than is actually observed. The data, however, is compatible with weaker versions of the farming dispersal hypothesis as well with models where large families acquire farming because of their size, rather than the other way around.
  • Hammarström, H. (2018). Language isolates in the New Guinea region. In L. Campbell (Ed.), Language Isolates (pp. 287-322). London: Routledge.
  • Hammarström, H., & van den Heuvel, W. (Eds.). (2012). On the history, contact & classification of Papuan languages [Special Issue]. Language & Linguistics in Melanesia, 2012. Retrieved from http://www.langlxmelanesia.com/specialissues.htm.
  • Hammarström, H., & Nordhoff, S. (2012). The languages of Melanesia: Quantifying the level of coverage. In N. Evans, & M. Klamer (Eds.), Melanesian languages on the edge of Asia: Challenges for the 21st Century (pp. 13-33). Honolulu: University of Hawai'i Press. Retrieved from http://hdl.handle.net/10125/4559.
  • Hanulikova, A. (2009). The role of syllabification in the lexical segmentation of German and Slovak. In S. Fuchs, H. Loevenbruck, D. Pape, & P. Perrier (Eds.), Some aspects of speech and the brain (pp. 331-361). Frankfurt am Main: Peter Lang.

    Abstract

    Two experiments were carried out to examine the syllable affiliation of intervocalic consonant clusters and their effects on speech segmentation in two different languages. In a syllable reversal task, Slovak and German speakers divided bisyllabic non-words that were presented aurally into two parts, starting with the second syllable. Following the maximal onset principle, intervocalic consonants should be maximally assigned to the onset of the following syllable in conformity with language-specific restrictions, e.g., /du.gru/, /zu.kro:/ (dot indicates a syllable boundary). According to German phonology, syllables require branching rhymes (hence, /zuk.ro:/). In Slovak, both /du.gru/ and /dug.ru/ are possible syllabifications. Experiment 1 showed that German speakers more often closed the first syllable (/zuk.ro:/), following the requirement for a branching rhyme. In Experiment 2, Slovak speakers showed no clear preference; the first syllable was either closed (/dug.ru/) or open (/du.gru/). Correlation analyses on previously conducted word-spotting studies (Hanulíková, in press, 2008) suggest that speech segmentation is unaffected by these syllabification preferences.
  • Hoey, E., & Kendrick, K. H. (2018). Conversation analysis. In A. M. B. De Groot, & P. Hagoort (Eds.), Research methods in psycholinguistics and the neurobiology of language: A practical guide (pp. 151-173). Hoboken: Wiley.

    Abstract

    Conversation Analysis (CA) is an inductive, micro-analytic, and predominantly qualitative
    method for studying human social interactions. This chapter describes and illustrates the basic
    methods of CA. We first situate the method by describing its sociological foundations, key areas
    of analysis, and particular approach in using naturally occurring data. The bulk of the chapter is
    devoted to practical explanations of the typical conversation analytic process for collecting data
    and producing an analysis. We analyze a candidate interactional practice – the assessmentimplicative
    interrogative – using real data extracts as a demonstration of the method, explicitly
    laying out the relevant questions and considerations for every stage of an analysis. The chapter
    concludes with some discussion of quantitative approaches to conversational interaction, and
    links between CA and psycholinguistic concerns
  • Huettig, F., Kolinsky, R., & Lachmann, T. (Eds.). (2018). The effects of literacy on cognition and brain functioning [Special Issue]. Language, Cognition and Neuroscience, 33(3).
  • Hurford, J. R., & Dediu, D. (2009). Diversity in language, genes and the language faculty. In R. Botha, & C. Knight (Eds.), The cradle of language (pp. 167-188). Oxford: Oxford University Press.
  • Ibarretxe-Antuñano, I. (2012). Placement and removal events in Basque and Spanish. In A. Kopecka, & B. Narasimhan (Eds.), Events of putting and taking: A crosslinguistic perspective (pp. 123-144). Amsterdam: Benjamins.

    Abstract

    This paper examines how placement and removal events are lexicalised and conceptualised in Basque and Peninsular Spanish. After a brief description of the main linguistic devices employed for the coding of these types of events, the paper discusses how speakers of the two languages choose to talk about these events. Finally, the paper focuses on two aspects that seem to be crucial in the description of these events (1) the role of force dynamics: both languages distinguish between different degrees of force, causality, and intentionality, and (2) the influence of the verb-framed lexicalisation pattern. Data come from six Basque and ten Peninsular Spanish native speakers.
  • Indefrey, P. (2012). Hemodynamic studies of syntactic processing. In M. Faust (Ed.), Handbook of the neuropsychology of language. Volume 1: Language processing in the brain: Basic science (pp. 209-228). Malden, MA: Wiley-Blackwell.
  • Indefrey, P. (1997). PET research in language production. In W. Hulstijn, H. F. M. Peters, & P. H. H. M. Van Lieshout (Eds.), Speech production: motor control, brain research and fluency disorders (pp. 269-278). Amsterdam: Elsevier.

    Abstract

    The aim of this paper is to discuss an inherent difficulty of PET (and fMRI) research in language production. On the one hand, language production presupposes some degree of freedom for the subject, on the other hand, interpretability of results presupposes restrictions of this freedom. This difficulty is reflected in the existing PET literature in some neglect of the general principle to design experiments in such a way that the results do not allow for alternative interpretations. It is argued that by narrowing down the scope of experiments a gain in interpretability can be achieved.
  • Indefrey, P., & Davidson, D. J. (2009). Second language acquisition. In L. R. Squire (Ed.), Encyclopedia of neuroscience (pp. 517-523). London: Academic Press.

    Abstract

    This article reviews neurocognitive evidence on second language (L2) processing at speech sound, word, and sentence levels. Hemodynamic (functional magnetic resonance imaging and positron emission tomography) data suggest that L2s are implemented in the same brain structures as the native language but with quantitative differences in the strength of activation that are modulated by age of L2 acquisition and L2 proficiency. Electrophysiological data show a more complex pattern of first and L2 similarities and differences, providing some, although not conclusive, evidence for qualitative differences between L1 and L2 syntactic processing.
  • Indefrey, P. (2018). The relationship between syntactic production and comprehension. In S.-A. Rueschemeyer, & M. G. Gaskell (Eds.), The Oxford Handbook of Psycholinguistics (2nd ed., pp. 486-505). Oxford: Oxford University Press.

    Abstract

    This chapter deals with the question of whether there is one syntactic system that is shared by language production and comprehension or whether there are two separate systems. It first discusses arguments in favor of one or the other option and then presents the current evidence on the brain structures involved in sentence processing. The results of meta-analyses of numerous neuroimaging studies suggest that there is one system consisting of functionally distinct cortical regions: the dorsal part of Broca’s area subserving compositional syntactic processing; the ventral part of Broca’s area subserving compositional semantic processing; and the left posterior temporal cortex (Wernicke’s area) subserving the retrieval of lexical syntactic and semantic information. Sentence production, the comprehension of simple and complex sentences, and the parsing of sentences containing grammatical violations differ with respect to the recruitment of these functional components.
  • Indefrey, P., & Levelt, W. J. M. (2000). The neural correlates of language production. In M. S. Gazzaniga (Ed.), The new cognitive neurosciences; 2nd ed. (pp. 845-865). Cambridge, MA: MIT Press.

    Abstract

    This chapter reviews the findings of 58 word production experiments using different tasks and neuroimaging techniques. The reported cerebral activation sites are coded in a common anatomic reference system. Based on a functional model of language production, the different word production tasks are analyzed in terms of their processing components. This approach allows a distinction between the core process of word production and preceding task-specific processes (lead-in processes) such as visual or auditory stimulus recognition. The core process of word production is subserved by a left-lateralized perisylvian/thalamic language production network. Within this network there seems to be functional specialization for the processing stages of word production. In addition, this chapter includes a discussion of the available evidence on syntactic production, self-monitoring, and the time course of word production.
  • Ingvar, M., & Petersson, K. M. (2000). Functional maps and brain networks. In A. W. Toga (Ed.), Brain mapping: The systems (pp. 111-140). San Diego: Academic Press.
  • Irizarri van Suchtelen, P. (2012). Dative constructions in the Spanish of heritage speakers in the Netherlands. In Z. Wąsik, & P. P. Chruszczewski (Eds.), Languages in contact 2011 (pp. 103-118). Wrocław: Philological School of Higher Education in Wrocław Publishing.

    Abstract

    Spanish can use dative as well as non-dative strategies to encode Possessors, Human Sources, Interestees (datives of interest) and Experiencers. In Dutch this optionality is virtually absent, restricting dative encoding mainly to the Recipient of a ditransitive. The present study examines whether this may lead to instability of the non-prototypical dative constructions in the Spanish of Dutch-Spanish bilinguals. Elicited data of 12 Chilean heritage informants from the Netherlands were analyzed. Whereas the evidence on the stability of dative Experiencers was not conclusive, the results indicate that the use of prototypical datives, dative External Possessors, dative Human Sources and datives of interest is fairly stable in bilinguals, except for those with limited childhood exposure to Spanish. It is argued that the consistent preference for non-dative strategies of this group was primarily attributable to instability of the dative clitic, which affected all constructions, even the encoding of prototypical indirect objects
  • Ishibashi, M. (2012). The expression of ‘putting’ and ‘taking’ events in Japanese: The asymmetry of Source and Goal revisited. In A. Kopecka, & B. Narasimhan (Eds.), Events of putting and taking: A crosslinguistic perspective (pp. 253-272). Amsterdam: Benjamins.

    Abstract

    This study explores the expression of Source and Goal in describing placement and removal events in adult Japanese. Although placement and removal events a priori represent symmetry regarding the orientation of motion, their (c)overt expressions actually exhibit multiple asymmetries at various structural levels. The results show that the expression of the Source is less frequent than the expression of the Goal, but, if expressed, morphosyntactically more complex, suggesting that ‘taking’ events are more complex than ‘putting’ events in their construal. It is stressed that finer linguistic analysis is necessary before explaining linguistic asymmetries in terms of non-linguistic foundations of spatial language.
  • Janssen, R., & Dediu, D. (2018). Genetic biases affecting language: What do computer models and experimental approaches suggest? In T. Poibeau, & A. Villavicencio (Eds.), Language, Cognition and Computational Models (pp. 256-288). Cambridge: Cambridge University Press.

    Abstract

    Computer models of cultural evolution have shown language properties emerging on interacting agents with a brain that lacks dedicated, nativist language modules. Notably, models using Bayesian agents provide a precise specification of (extra-)liguististic factors (e.g., genetic) that shape language through iterated learning (biases on language), and demonstrate that weak biases get expressed more strongly over time (bias amplification). Other models attempt to lessen assumption on agents’ innate predispositions even more, and emphasize self-organization within agents, highlighting glossogenesis (the development of language from a nonlinguistic state). Ultimately however, one also has to recognize that biology and culture are strongly interacting, forming a coevolving system. As such, computer models show that agents might (biologically) evolve to a state predisposed to language adaptability, where (culturally) stable language features might get assimilated into the genome via Baldwinian niche construction. In summary, while many questions about language evolution remain unanswered, it is clear that it is not to be completely understood from a purely biological, cognitivist perspective. Language should be regarded as (partially) emerging on the social interactions between large populations of speakers. In this context, agent models provide a sound approach to investigate the complex dynamics of genetic biasing on language and speech
  • Janzen, G., Herrmann, T., Katz, S., & Schweizer, K. (2000). Oblique Angled Intersections and Barriers: Navigating through a Virtual Maze. In Spatial Cognition II (pp. 277-294). Berlin: Springer.

    Abstract

    The configuration of a spatial layout has a substantial effect on the acquisition and the representation of the environment. In four experiments, we investigated navigation difficulties arising at oblique angled intersections. In the first three studies we investigated specific arrow-fork configurations. In dependence on the branch subjects use to enter the intersection different decision latencies and numbers of errors arise. If subjects see the intersection as a fork, it is more difficult to find the correct way as if it is seen as an arrow. In a fourth study we investigated different heuristics people use while making a detour around a barrier. Detour behaviour varies with the perspective. If subjects learn and navigate through the maze in a field perspective they use a heuristic of preferring right angled paths. If they have a view from above and acquire their knowledge in an observer perspective they use oblique angled paths more often.

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  • Jolink, A. (2009). Finiteness in children with SLI: A functional approach. In C. Dimroth, & P. Jordens (Eds.), Functional categories in learner language (pp. 235-260). Berlin: Mouton de Gruyter.
  • Jordens, P. (2009). The acquisition of functional categories in child L1 and adult L2 acquisition. In C. Dimroth, & P. Jordens (Eds.), Functional categories in learner language (pp. 45-96). Berlin: Mouton de Gruyter.
  • Kempen, G. (1985). Artificiële intelligentie: Bouw, benutting, beheersing. In W. Veldkamp (Ed.), Innovatie in perspectief (pp. 42-47). Vianen: Nixdorf Computer B.V.
  • Kempen, G. (1983). Het artificiële-intelligentieparadigma. Ervaringen met een nieuwe methodologie voor cognitief-psychologisch onderzoek. In J. Raaijmakers, P. Hudson, & A. Wertheim (Eds.), Metatheoretische aspekten van de psychonomie (pp. 85-98). Deventer: Van Loghum Slaterus.
  • Kempen, G. (1983). Natural language facilities in information systems: Asset or liability? In J. Van Apeldoorn (Ed.), Man and information technology: Towards friendlier systems (pp. 81-86). Delft University Press.
  • Kempen, G. (1997). Taalpsychologie week. In Wetenschappelijke Scheurkalender 1998. Beek: Natuur & Techniek.

    Abstract

    [Seven one-page psycholinguistic sketches]
  • Kempen, G., Schotel, H., & Pijls, J. (1985). Taaltechnologie en taalonderwijs. In J. Heene (Ed.), Onderwijs en informatietechnologie. Den Haag: Stichting voor Onderzoek van het Onderwijs (SVO).
  • Kirschenbaum, A., Wittenburg, P., & Heyer, G. (2012). Unsupervised morphological analysis of small corpora: First experiments with Kilivila. In F. Seifart, G. Haig, N. P. Himmelmann, D. Jung, A. Margetts, & P. Trilsbeek (Eds.), Potentials of language documentation: Methods, analyses, and utilization (pp. 32-38). Honolulu: University of Hawai'i Press.

    Abstract

    Language documentation involves linguistic analysis of the collected material, which is typically done manually. Automatic methods for language processing usually require large corpora. The method presented in this paper uses techniques from bioinformatics and contextual information to morphologically analyze raw text corpora. This paper presents initial results of the method when applied on a small Kilivila corpus.
  • Kita, S. (1997). Miburi to Kotoba [gesture and speech]. In H. Kobayashi, & M. Sasaki (Eds.), Kodomotachi no gengokakutoku [Child language development] (pp. 68-84). Tokyo, Japan: Taishukan.
  • Klaas, G. (2009). Hints and recommendations concerning field equipment. In A. Majid (Ed.), Field manual volume 12 (pp. VI-VII). Nijmegen: Max Planck Institute for Psycholinguistics.
  • Klein, W. (2012). Auf dem Markt der Wissenschaften oder: Weniger wäre mehr. In K. Sonntag (Ed.), Heidelberger Profile. Herausragende Persönlichkeiten berichten über ihre Begegnung mit Heidelberg. (pp. 61-84). Heidelberg: Universitätsverlag Winter.
  • Klein, W. (2012). A way to look at second language acquisition. In M. Watorek, S. Benazzo, & M. Hickmann (Eds.), Comparative perspectives on language acquisition: A tribute to Clive Perdue (pp. 23-36). Bristol: Multilingual Matters.
  • 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. (2009). Concepts of time. In W. Klein, & P. Li (Eds.), The expression of time (pp. 5-38). Berlin: Mouton de Gruyter.
  • Klein, W. (1983). Deixis and spatial orientation in route directions. In H. Pick, & L. Acredolo (Eds.), Spatial orientation theory: Research, and application (pp. 283-311). New York: Plenum.
  • Klein, W. (1983). Der Ausdruck der Temporalität im ungesteuerten Spracherwerb. In G. Rauh (Ed.), Essays on Deixis (pp. 149-168). Tübingen: Narr.
  • Klein, W. (2000). Der Mythos vom Sprachverfall. In Berlin-Brandenburgische Akademie der Wissenschaften (Ed.), Jahrbuch 1999: Berlin-Brandenburgische Akademie der Wissenschaften (pp. 139-158). Berlin: Akademie Verlag.
  • Klein, W. (1973). Eine Analyse der Kerne in Schillers "Räuber". In S. Marcus (Ed.), Mathematische Poetik (pp. 326-333). Frankfurt am Main: Athenäum.
  • Klein, W. (1985). Ellipse, Fokusgliederung und thematischer Stand. In R. Meyer-Hermann, & H. Rieser (Eds.), Ellipsen und fragmentarische Ausdrücke (pp. 1-24). Tübingen: Niemeyer.
  • Klein, W. (2012). Die Sprache der Denker. In J. Voss, & M. Stolleis (Eds.), Fachsprachen und Normalsprache (pp. 49-60). Göttingen: Wallstein.
  • Klein, W. (1985). Argumentationsanalyse: Ein Begriffsrahmen und ein Beispiel. In W. Kopperschmidt, & H. Schanze (Eds.), Argumente - Argumentationen (pp. 208-260). München: Fink.
  • Klein, W. (1973). Dialekt und Einheitssprache im Fremdsprachenunterricht. In Beiträge zu den Sommerkursen des Goethe-Instituts München (pp. 53-60).
  • Klein, W. (2009). Finiteness, universal grammar, and the language faculty. In J. Guo, E. Lieven, N. Budwig, S. Ervin-Tripp, K. Nakamura, & S. Ozcaliskan (Eds.), Crosslinguistic approaches to the psychology of language: Research in the tradition of Dan Isaac Slobin (pp. 333-344). New York: Psychology Press.
  • Klein, W. (2009). How time is encoded. In W. Klein, & P. Li (Eds.), The expression of time (pp. 39-82). Berlin: Mouton de Gruyter.
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    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.
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    Abstract

    Selected papers from the 18th International Conference on Historical Linguistics, Montreal, 6-11 August 2007
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