Results for ' Speech Production Measurement'

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  1.  9
    Graph structure analysis of speech production among second language learners of Spanish and Chinese.Mona Roxana Botezatu, Janaina Weissheimer, Marina Ribeiro, Taomei Guo, Ingrid Finger & Natalia Bezerra Mota - 2022 - Frontiers in Psychology 13.
    Language experience shapes the gradual maturation of speech production in both native and second languages. Structural aspects like the connectedness of spontaneous narratives reveal this maturation progress in L1 acquisition and, as it does not rely on semantics, it could also reveal structural pattern changes during L2 acquisition. The current study tested whether L2 lexical retrieval associated with vocabulary knowledge could impact the global connectedness of narratives during the initial stages of L2 acquisition. Specifically, the study evaluated the (...)
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  2.  10
    Examining the Relationship Between Speech Perception, Production Distinctness, and Production Variability.Hung-Shao Cheng, Caroline A. Niziolek, Adam Buchwald & Tara McAllister - 2021 - Frontiers in Human Neuroscience 15.
    Several studies have demonstrated that individuals’ ability to perceive a speech sound contrast is related to the production of that contrast in their native language. The theoretical account for this relationship is that speech perception and production have a shared multimodal representation in relevant sensory spaces. This gives rise to a prediction that individuals with more narrowly defined targets will produce greater separation between contrasting sounds, as well as lower variability in the production of each (...)
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  3.  69
    The spatial and temporal signatures of word production components.P. Indefrey & W. J. M. Levelt - 2003 - Cognition 92 (1-2):101-144.
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  4.  32
    Productivity of Noun Slots in Verb Frames.Anna L. Theakston, Paul Ibbotson, Daniel Freudenthal, Elena V. M. Lieven & Michael Tomasello - 2015 - Cognitive Science 39 (6):1369-1395.
    Productivity is a central concept in the study of language and language acquisition. As a test case for exploring the notion of productivity, we focus on the noun slots of verb frames, such as __want__, __see__, and __get__. We develop a novel combination of measures designed to assess both the flexibility and creativity of use in these slots. We do so using a rigorously controlled sample of child speech and child directed speech from three English-speaking children between the (...)
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  5.  42
    Accommodating Variation: Dialects, Idiolects, and Speech Processing.Tanya Kraljic, Susan E. Brennan & Arthur G. Samuel - 2008 - Cognition 107 (1):54.
  6.  51
    Understanding the Phonetic Characteristics of Speech Under Uncertainty—Implications of the Representation of Linguistic Knowledge in Learning and Processing.Fabian Tomaschek & Michael Ramscar - 2022 - Frontiers in Psychology 13.
    The uncertainty associated with paradigmatic families has been shown to correlate with their phonetic characteristics in speech, suggesting that representations of complex sublexical relations between words are part of speaker knowledge. To better understand this, recent studies have used two-layer neural network models to examine the way paradigmatic uncertainty emerges in learning. However, to date this work has largely ignored the way choices about the representation of inflectional and grammatical functions in models strongly influence what they subsequently learn. To (...)
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  7.  36
    Empirical approaches for investigating the origins of structure in speech.Hannah Little, Heikki Rasilo, Sabine van der Ham & Kerem Eryılmaz - 2017 - Interaction Studies 18 (3):330-351.
    In language evolution research, the use of computational and experimental methods to investigate the emergence of structure in language is exploding. In this review, we look exclusively at work exploring the emergence of structure in speech, on both a categorical level, and a combinatorial level. We show that computational and experimental methods for investigating population-level processes can be effectively used to explore and measure the effects of learning, communication and transmission on the emergence of structure in speech. We (...)
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  8.  11
    A Cross-Linguistic Study of Individual Differences in Speech Planning.Benjamin Swets, Susanne Fuchs, Jelena Krivokapić & Caterina Petrone - 2021 - Frontiers in Psychology 12.
    Although previous research has shown that there exist individual and cross-linguistic differences in planning strategies during language production, little is known about how such individual differences might vary depending on which language a speaker is planning. The present series of studies examines individual differences in planning strategies exhibited by speakers of American English, French, and German. Participants were asked to describe images on a computer monitor while their eye movements were monitored. In addition, we measured participants' working memory capacity (...)
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  9. Speech production.Dani Byrd & Elliot Saltzman - 2002 - In M. Arbib (ed.), The Handbook of Brain Theory and Neural Networks. MIT Press. pp. 1072--1076.
  10. Speech production.Carol A. Fowler - 2009 - In Gareth Gaskell (ed.), Oxford Handbook of Psycholinguistics. Oxford University Press.
  11. Speech production.Gabriella Vigliocco & David P. Vinson - 2003 - In L. Nadel (ed.), Encyclopedia of Cognitive Science. Nature Publishing Group.
  12.  10
    Productive measures: Culture and measurement in the context of everyday neoliberalism.David Beer - 2015 - Big Data and Society 2 (1).
    This article reflects on how data circulations and data analysis have become a central and routine part of contemporary life; it does this through the lens of a particular cultural form: the game of football. More specifically, the article focuses upon the role of data in the production and playing of football, with the suggestion that forms of measurement and pattern recognition are now central to the performance of footballers and the recruitment and organization of squads. The article (...)
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  13. Dorsal and ventral streams: a framework for understanding aspects of the functional anatomy of language.Gregory Hickok & David Poeppel - 2003 - Cognition 92 (1-2):67-99.
  14.  38
    Network Structure Influences Speech Production.Kit Ying Chan & Michael S. Vitevitch - 2010 - Cognitive Science 34 (4):685-697.
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  15.  46
    Accessing words in speech production: Stages, processes and representations.Willem J. M. Levelt - 1992 - Cognition 42 (1-3):1-22.
  16. A theory of lexical access in speech production.Willem J. M. Levelt, Ardi Roelofs & Antje S. Meyer - 1999 - Behavioral and Brain Sciences 22 (1):1-38.
    Preparing words in speech production is normally a fast and accurate process. We generate them two or three per second in fluent conversation; and overtly naming a clear picture of an object can easily be initiated within 600 msec after picture onset. The underlying process, however, is exceedingly complex. The theory reviewed in this target article analyzes this process as staged and feedforward. After a first stage of conceptual preparation, word generation proceeds through lexical selection, morphological and phonological (...)
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  17. Word effects in speech production: Retrieval of syntactic information and of morphological form.J. Jescheniak & W. Levelt - 1994 - Journal of Experimental Psychology 20:1-20.
     
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  18.  18
    A Review on Grammatical Gender Agreement in Speech Production.Man Wang & Niels O. Schiller - 2019 - Frontiers in Psychology 9.
    Grammatical gender agreement has been well addressed in language comprehension but less so in language production. The present article discusses the arguments derived from the most prominent language production models on the representation and processing of the grammatical gender of nouns in language production and then reviews recent empirical studies that provide some answers to these arguments.
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  19.  7
    Phonotactic probability influences speech production.Matthew Goldrick & Meredith Larson - 2008 - Cognition 107 (3):1155-1164.
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  20.  8
    Accessing words in speech production: Stages, processes and representations.Willem J. M. Levelt - 1992 - Cognition 42 (1-3):1-22.
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  21.  33
    Teleology and agency in speech production.Robert M. Gordon - 1986 - Behavioral and Brain Sciences 9 (3):525-525.
  22. Errors in speech production: Explaining mismatch and accommodation.Andrea Gormley & T. Stewart - 2009 - In N. A. Taatgen & H. van Rijn (eds.), Proceedings of the 31st Annual Conference of the Cognitive Science Society. pp. 2692--7.
     
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  23.  14
    Accessing words in speech production: Stages, processes and representations.Willem J. M. Levelt - 1992 - Cognition 42 (1-3):1-22.
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  24.  27
    Setting Up the Speech Production Network: How Oscillations Contribute to Lateralized Information Routing.Johannes Gehrig, Michael Wibral, Christiane Arnold & Christian A. Kell - 2012 - Frontiers in Psychology 3.
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  25. Automaticity, unconsciousness and speech production.M. Overgaard - forthcoming - Science and Consciousness Review.
  26.  19
    Syntactic processes in speech production: the retrieval of grammatical gender.Jos J. A. van Berkum - 1997 - Cognition 64 (2):115-152.
  27.  12
    Intentional Training With Speech Production Supports Children’s Learning the Meanings of Foreign Words: A Comparison of Four Learning Tasks.Katja Junttila & Sari Ylinen - 2020 - Frontiers in Psychology 11.
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  28.  33
    Detection of errors during speech production: a review of speech monitoring models. [REVIEW]Albert Postma - 2000 - Cognition 77 (2):97-132.
  29.  43
    Relationship between Speech Production and Perception in People Who Stutter.Chunming Lu, Yuhang Long, Lifen Zheng, Guang Shi, Li Liu, Guosheng Ding & Peter Howell - 2016 - Frontiers in Human Neuroscience 10.
  30.  8
    Auditory cortical deactivation during speech production and following speech perception: an EEG investigation of the temporal dynamics of the auditory alpha rhythm.David Jenson, Ashley W. Harkrider, David Thornton, Andrew L. Bowers & Tim Saltuklaroglu - 2015 - Frontiers in Human Neuroscience 9.
  31. Index numbers and productivity measurement in multispecies Fisheries: an application to the pacific coast trawl fleet.Dale Squires - 1987 - Laguna 53:56.
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  32.  13
    Identifying the Speech Production Stages in Early and Late Adulthood by Using Electroencephalography.Jakolien den Hollander, Roel Jonkers, Peter Mariën & Roelien Bastiaanse - 2019 - Frontiers in Human Neuroscience 13.
  33.  25
    Literacy transforms speech production.Meredith Saletta - 2015 - Frontiers in Psychology 6.
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  34.  31
    Are precues effective in proactively controlling taboo interference during speech production?Katherine K. White, Lise Abrams, Lisa R. Hsi & Emily C. Watkins - 2018 - Cognition and Emotion 32 (8):1625-1636.
    ABSTRACTThis research investigated whether precues engage proactive control to reduce emotional interference during speech production. A picture-word interference task required participants to name target pictures accompanied by taboo, negative, or neutral distractors. Proactive control was manipulated by presenting precues that signalled the type of distractor that would appear on the next trial. Experiment 1 included one block of trials with precues and one without, whereas Experiment 2 mixed precued and uncued trials. Consistent with previous research, picture naming was (...)
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  35.  89
    The frame/content theory of evolution of speech production.Peter F. MacNeilage - 1998 - Behavioral and Brain Sciences 21 (4):499-511.
    The species-specific organizational property of speech is a continual mouth open-close alternation, the two phases of which are subject to continual articulatory modulation. The cycle constitutes the syllable, and the open and closed phases are segments framescontent displays that are prominent in many nonhuman primates. The new role of Broca's area and its surround in human vocal communication may have derived from its evolutionary history as the main cortical center for the control of ingestive processes. The frame and content (...)
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  36.  31
    A Critique of Top‐down Independent Levels Models of Speech Production: Evidence from Non‐plan‐Internal Speech Errors.Trevor A. Harley - 1984 - Cognitive Science 8 (3):191-219.
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  37.  6
    A Study of Word Complexity Under Conditions of Non-experimental, Natural Overt Speech Production Using ECoG.Olga Glanz, Marina Hader, Andreas Schulze-Bonhage, Peter Auer & Tonio Ball - 2022 - Frontiers in Human Neuroscience 15:711886.
    The linguistic complexity of words has largely been studied on the behavioral level and in experimental settings. Only little is known about the neural processes underlying it in uninstructed, spontaneous conversations. We built up a multimodal neurolinguistic corpus composed of synchronized audio, video, and electrocorticographic (ECoG) recordings from the fronto-temporo-parietal cortex to address this phenomenon based on uninstructed, spontaneous speech production. We performed extensive linguistic annotations of the language material and calculated word complexity using several numeric parameters. We (...)
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  38.  43
    Breaking Down the Bilingual Cost in Speech Production.Jasmin Sadat, Clara D. Martin, James S. Magnuson, François-Xavier Alario & Albert Costa - 2016 - Cognitive Science 40 (8):1911-1940.
    Bilinguals have been shown to perform worse than monolinguals in a variety of verbal tasks. This study investigated this bilingual verbal cost in a large-scale picture-naming study conducted in Spanish. We explored how individual characteristics of the participants and the linguistic properties of the words being spoken influence this performance cost. In particular, we focused on the contributions of lexical frequency and phonological similarity across translations. The naming performance of Spanish-Catalan bilinguals speaking in their dominant and non-dominant language was compared (...)
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  39.  33
    The dark side of incremental learning: A model of cumulative semantic interference during lexical access in speech production.Gary M. Oppenheim, Gary S. Dell & Myrna F. Schwartz - 2010 - Cognition 114 (2):227-252.
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  40. Brain activations during conscious self-monitoring of speech production with delayed auditory feedback: An fMRI study.Yasuki Hashimoto & Kuniyoshi L. Sakai - 2003 - Human Brain Mapping 20 (1):22-28.
  41. The WEAVER model of word-form encoding in speech production.Ardi Roelofs - 1997 - Cognition 64 (3):249-284.
  42.  16
    Functional Heterogeneity within the Default Network during Semantic Processing and Speech Production.Mohamed L. Seghier & Cathy J. Price - 2012 - Frontiers in Psychology 3.
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  43.  37
    The dark side of incremental learning: A model of cumulative semantic interference during lexical access in speech production.Myrna F. Schwartz Gary M. Oppenheim, Gary S. Dell - 2010 - Cognition 114 (2):227.
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  44.  46
    Reflex theory in a linguistic context: Sergej M. Dobrogaev on the social nature of speech production.Katya Chown - 2008 - Studies in East European Thought 60 (4):307-319.
    The development of reflex theory in its Pavlovian interpretation had significant resonance in a wide range of academic research areas. Its impact on the so-called humanities was, perhaps, no less than the effect it had in medical science. The idea of the conditioned reflex suggesting a physiological explanation of behaviour patterns received a particularly warm welcome in philosophy and psychology as it provided a scientifically-based tool for a conceptual u-turn towards objectivism. This article looks into the ways these ideas contributed (...)
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  45.  17
    The time course of lexical access in speech production: A study of picture naming.Willem J. Levelt, Herbert Schriefers, Dirk Vorberg & Antje S. Meyer - 1991 - Psychological Review 98 (1):122-142.
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  46.  30
    Event-Related Brain Potential Investigation of Preparation for Speech Production in Late Bilinguals.Yan Jing Wu & Guillaume Thierry - 2011 - Frontier in Psychology 2.
  47.  7
    Inter-Trial Formant Variability in Speech Production Is Actively Controlled but Does Not Affect Subsequent Adaptation to a Predictable Formant Perturbation.Hantao Wang & Ludo Max - 2022 - Frontiers in Human Neuroscience 16.
    Despite ample evidence that speech production is associated with extensive trial-to-trial variability, it remains unclear whether this variability represents merely unwanted system noise or an actively regulated mechanism that is fundamental for maintaining and adapting accurate speech movements. Recent work on upper limb movements suggest that inter-trial variability may be not only actively regulated based on sensory feedback, but also provide a type of workspace exploration that facilitates sensorimotor learning. We therefore investigated whether experimentally reducing or magnifying (...)
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  48.  13
    Timing Evidence for Symbolic Phonological Representations and Phonology-Extrinsic Timing in Speech Production.Alice Turk & Stefanie Shattuck-Hufnagel - 2020 - Frontiers in Psychology 10.
    The proposed model consists of 1) a Phonological Planning Component to plan the symbolic and relational goals for an utterance, 2) a Phonetic Planning Component to plan the quantitative details of the acoustic goals and how they will be achieved articulatorily, and 3) a Motor-Sensory Implementation Component to ensure that the goals are achieved on time. The temporal characteristics specified in the Phonetic Planning Component include durations between acoustic landmarks, as well as parameters of Lee’s TauG-Guidance equation, which determine how (...)
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  49.  12
    Modeling the Influence of Language Input Statistics on Children's Speech Production.Ingeborg Roete, Stefan L. Frank, Paula Fikkert & Marisa Casillas - 2020 - Cognitive Science 44 (12):e12924.
    We trained a computational model (the Chunk-Based Learner; CBL) on a longitudinal corpus of child–caregiver interactions in English to test whether one proposed statistical learning mechanism—backward transitional probability—is able to predict children's speech productions with stable accuracy throughout the first few years of development. We predicted that the model less accurately reconstructs children's speech productions as they grow older because children gradually begin to generate speech using abstracted forms rather than specific “chunks” from their speech environment. (...)
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  50.  9
    The Role of Motor Inhibition During Covert Speech Production.Ladislas Nalborczyk, Ursula Debarnot, Marieke Longcamp, Aymeric Guillot & F.-Xavier Alario - 2022 - Frontiers in Human Neuroscience 16.
    Covert speech is accompanied by a subjective multisensory experience with auditory and kinaesthetic components. An influential hypothesis states that these sensory percepts result from a simulation of the corresponding motor action that relies on the same internal models recruited for the control of overt speech. This simulationist view raises the question of how it is possible to imagine speech without executing it. In this perspective, we discuss the possible role played by motor inhibition during covert speech (...)
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