Publications

Displaying 1 - 39 of 39
  • Yu, X. (2021). Foreign language learning in study-abroad and at-home contexts. PhD Thesis, Raboud University Nijmegen, Nijmegen.
  • Altvater-Mackensen, N. (2010). Do manners matter? Asymmetries in the acquisition of manner of articulation features. PhD Thesis, Radboud University of Nijmegen, Nijmegen.
  • Armeni, K. (2021). On model-based neurobiology of language comprehension: Neural oscillations, processing memory, and prediction. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Bardhan, N. P. (2010). Adults’ self-directed learning of an artificial lexicon: The dynamics of neighborhood reorganization. PhD Thesis, University of Rochester, Rochester, New York.

    Abstract

    Artificial lexicons have previously been used to examine the time course of the learning and recognition of spoken words, the role of segment type in word learning, and the integration of context during spoken word recognition. However, in all of these studies the experimenter determined the frequency and order of the words to be learned. In three experiments, we asked whether adult learners choose to listen to novel words in a particular order based on their acoustic similarity. We use a new paradigm for learning an artificial lexicon in which the learner, rather than the experimenter, determines the order and frequency of exposure to items. We analyze both the proportions of selections and the temporal clustering of subjects' sampling of lexical neighborhoods during training as well as their performance during repeated testing phases (accuracy and reaction time) to determine the time course of learning these neighborhoods. In the first experiment, subjects sampled the high and low density neighborhoods randomly in early learning, and then over-sampled the high density neighborhood until test performance on both neighborhoods reached asymptote. A second experiment involved items similar to the first, but also neighborhoods that are not fully revealed at the start of the experiment. Subjects adjusted their training patterns to focus their selections on neighborhoods of increasing density was revealed; evidence of learning in the test phase was slower to emerge than in the first experiment, impaired by the presence of additional sets of items of varying density. Crucially, in both the first and second experiments there was no effect of dense vs. sparse neighborhood in the accuracy results, which is accounted for by subjects’ over-sampling of items from the dense neighborhood. The third experiment was identical in design to the second except for a second day of further training and testing on the same items. Testing at the beginning of the second day showed impaired, not improved, accuracy, except for the consistently dense items. Further training, however, improved accuracy for some items to above Day 1 levels. Overall, these results provide a new window on the time-course of learning an artificial lexicon and the role that learners’ implicit preferences, stemming from their self-selected experience with the entire lexicon, play in learning highly confusable words.
  • Bauer, B. L. M. (1992). Du latin au français: Le passage d'une langue SOV à une langue SVO. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Bentum, M. (2021). Listening with great expectations: A study of predictive natural speech processing. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Brouwer, S. (2010). Processing strongly reduced forms in casual speech. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Defina, R. (2010). Aspect and modality in Avatime. Master Thesis, Leiden University.
  • Felker, E. R. (2021). Learning second language speech perception in natural settings. PhD Thesis, Radboud University, Nijmegen.
  • Flecken, M. (2010). Event conceptualization in language production of early bilinguals. PhD Thesis, Heidelberg University and Radboud University Nijmegen. LOT dissertation series; 256.
  • Floyd, S. (2010). Discourse forms and social categorization in Cha'palaa. PhD Thesis, University of Texas, Austin, TX.

    Abstract

    This dissertation is an ethnographic study of race and other forms of social categorization as approached through the discourse of the indigenous Chachi people of northwestern lowland Ecuador and their Afro-descendant neighbors. It combines the ethnographic methods of social anthropology with the methods of descriptive linguistics, letting social questions about racial formation guide linguistic inquiry. It provides new information about the largely unstudied indigenous South American language Cha’palaa, and connects that information about linguistic form to problems of the study of race and ethnicity in Latin America. Individual descriptive chapters address how the Cha’palaa number system is based on collectivity rather than plurality according to an animacy hierarchy that codes only human and human-like social collectivities, how a nominal set of ethnonyms linked to Chachi oral history become the recipients of collective marking as human collectivities, how those collectivities are co-referentially linked to speech participants through the deployment of the pronominal system, and how the multi-modal resource of gesture adds to these rich resources supplied by the spoken language for the expression of social realities like race. The final chapters address Chachi and Afrodescendant discourses in dialogue with each other and examine naturally occurring speech data to show how the linguistic forms described in previous chapters are used in social interaction. The central argument advances a position that takes the socially constructed status of race seriously and considers that for such constructions to exist as more abstract macro-categories they must be constituted by instances of social interaction, where elements of the social order are observable at the micro-level. In this way localized articulations of social categories become vehicles for the broader circulation of discourses structured by a history of racialized social inequality, revealing the extreme depth of racialization in human social conditioning. This dissertation represents a contribution to the field of linguistic anthropology as well as to descriptive linguistics of South American languages and to critical approaches to race and ethnicity in Latin America.
  • Frances, C. (2021). Semantic richness, semantic context, and language learning. PhD Thesis, Universidad del País Vasco-Euskal Herriko Unibertsitatea, Donostia.

    Abstract

    As knowing a foreign language becomes a necessity in the modern world, a large portion of
    the population is faced with the challenge of learning a language in a classroom. This, in turn,
    presents a unique set of difficulties. Acquiring a language with limited and artificial exposure makes
    learning new information and vocabulary particularly difficult. The purpose of this thesis is to help us
    understand how we can compensate—at least partially—for these difficulties by presenting
    information in a way that aids learning. In particular, I focused on variables that affect semantic
    richness—meaning the amount and variability of information associated with a word. Some factors
    that affect semantic richness are intrinsic to the word and others pertain to that word’s relationship
    with other items and information. This latter group depends on the context around the to-be-
    learned items rather than the words themselves. These variables are easier to manipulate than
    intrinsic qualities, making them more accessible tools for teaching and understanding learning. I
    focused on two factors: emotionality of the surrounding semantic context and contextual diversity.
    Publication 1 (Frances, de Bruin, et al., 2020b) focused on content learning in a foreign
    language and whether the emotionality—positive or neutral—of the semantic context surrounding
    key information aided its learning. This built on prior research that showed a reduction in
    emotionality in a foreign language. Participants were taught information embedded in either
    positive or neutral semantic contexts in either their native or foreign language. When they were
    then tested on these embedded facts, participants’ performance decreased in the foreign language.
    But, more importantly, they remembered better the information from the positive than the neutral
    semantic contexts.
    In Publication 2 (Frances, de Bruin, et al., 2020a), I focused on how emotionality affected
    vocabulary learning. I taught participants the names of novel items described either in positive or
    neutral terms in either their native or foreign language. Participants were then asked to recall and
    recognize the object's name—when cued with its image. The effects of language varied with the
    difficulty of the task—appearing in recall but not recognition tasks. Most importantly, learning the
    words in a positive context improved learning, particularly of the association between the image of
    the object and its name.
    In Publication 3 (Frances, Martin, et al., 2020), I explored the effects of contextual
    diversity—namely, the number of texts a word appears in—on native and foreign language word
    learning. Participants read several texts that had novel pseudowords. The total number of
    encounters with the novel words was held constant, but they appeared in 1, 2, 4, or 8 texts in either
    their native or foreign language. Increasing contextual diversity—i.e., the number of texts a word
    appeared in—improved recall and recognition, as well as the ability to match the word with its
    meaning. Using a foreign language only affected performance when participants had to quickly
    identify the meaning of the word.
    Overall, I found that the tested contextual factors related to semantic richness—i.e.,
    emotionality of the semantic context and contextual diversity—can be manipulated to improve
    learning in a foreign language. Using positive emotionality not only improved learning in the foreign
    language, but it did so to the same extent as in the native language. On a theoretical level, this
    suggests that the reduction in emotionality in a foreign language is not ubiquitous and might relate
    to the way in which that language as learned.
    The third article shows an experimental manipulation of contextual diversity and how this
    can affect learning of a lexical item, even if the amount of information known about the item is kept
    constant. As in the case of emotionality, the effects of contextual diversity were also the same
    between languages. Although deducing words from context is dependent on vocabulary size, this
    does not seem to hinder the benefits of contextual diversity in the foreign language.
    Finally, as a whole, the articles contained in this compendium provide evidence that some
    aspects of semantic richness can be manipulated contextually to improve learning and memory. In
    addition, the effects of these factors seem to be independent of language status—meaning, native
    or foreign—when learning new content. This suggests that learning in a foreign and a native
    language is not as different as I initially hypothesized, allowing us to take advantage of native
    language learning tools in the foreign language, as well.
  • Gebre, B. G. (2010). Part of speech tagging for Amharic. Master Thesis, University of Wolverhampton, Wolverhampton.
  • Hagoort, P. (1990). Tracking the time course of language understanding in aphasia. PhD Thesis, Katholieke Universiteit Nijmegen, Nijmegen.
  • Hintz, F. (2010). Speech and speaker recognition in dyslexic individuals. Bachelor Thesis, Max Planck Institute for Human Cognitive and Brain Sciences (Leipzig)/University of Leipzig.
  • Huisman, J. L. A. (2021). Variation in form and meaning across the Japonic language family: With a focus on the Ryukyuan languages. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Kaufeld, G. (2021). Investigating spoken language comprehension as perceptual inference. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Levy, J. (2010). In cerebro unveiling unconscious mechanisms during reading. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Lopopolo, A. (2021). Properties, structures and operations: Studies on language processing in the brain using computational linguistics and naturalistic stimuli. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Manhardt, F. (2021). A tale of two modalities. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Menenti, L. (2010). The right language: Differential hemispheric contributions to language production and comprehension in context. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Mickan, A. (2021). What was that Spanish word again? Investigations into the cognitive mechanisms underlying foreign language attrition. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Pijnacker, J. (2010). Defeasible inference in autism: A behavioral and electrophysiological approach. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Postema, M. (2021). Left-right asymmetry of the human brain: Associations with neurodevelopmental disorders and genetic factors. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Redl, T. (2021). Masculine generic pronouns: Investigating the processing of an unintended gender cue. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Reinisch, E. (2010). Processing the fine temporal structure of spoken words. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • De Ruiter, L. E. (2010). Studies on intonation and information structure in child and adult German. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Schubotz, L. (2021). Effects of aging and cognitive abilities on multimodal language production and comprehension in context. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Snijders Blok, L. (2021). Let the genes speak! De novo variants in developmental disorders with speech and language impairment. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Snijders, T. M. (2010). More than words: Neural and genetic dynamics of syntactic unification. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Tabak, W. (2010). Semantics and (ir)regular inflection in morphological processing. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Todorova, L. (2021). Language bias in visually driven decisions: Computational neurophysiological mechanisms. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Trompenaars, T. (2021). Bringing stories to life: Animacy in narrative and processing. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Tsoukala, C. (2021). Bilingual sentence production and code-switching: Neural network simulations. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Van Dijk, C. N. (2021). Cross-linguistic influence during real-time sentence processing in bilingual children and adults. PhD Thesis, Raboud University Nijmegen, Nijmegen.
  • van der Burght, C. L. (2021). The central contribution of prosody to sentence processing: Evidence from behavioural and neuroimaging studies. PhD Thesis, Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig.
  • Van Paridon, J. (2021). Speaking while listening: Language processing in speech shadowing and translation. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Van Dijk, H. (2010). The state of the brain: How alpha oscillations shape behavior and event-related responses. PhD Thesis, Radboud University Nijmegen, Nijmegen.
  • Verhoef, E. (2021). Why do we change how we speak? Multivariate genetic analyses of language and related traits across development and disorder. PhD Thesis, Radboud University Nijmegen, Nijmegen.

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