Results for 'Mismatch Negativity'

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  1.  2
    Visual Mismatch Negativity: A Mini-Review of Non-pathological Studies With Special Populations and Stimuli.István Czigler & Petia Kojouharova - 2022 - Frontiers in Human Neuroscience 15.
    In this mini-review, we summarized the results of 12 visual mismatch negativity studies that attempted to use this component as a tool for investigating differences between non-clinical samples of participants as well as the possibility of automatic discrimination in the case of specific categories of visual stimuli. These studies investigated the effects of gender, the effects of long-term differences between the groups of participants, and the effects of short-term states, as well as the vMMN effect elicited by artworks (...)
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  2.  96
    Visual Mismatch Negativity Reflects Enhanced Response to the Deviant: Evidence From Event-Related Potentials and Electroencephalogram Time-Frequency Analysis.Xianqing Zeng, Luyan Ji, Yanxiu Liu, Yue Zhang & Shimin Fu - 2022 - Frontiers in Human Neuroscience 16.
    Automatic detection of information changes in the visual environment is crucial for individual survival. Researchers use the oddball paradigm to study the brain’s response to frequently presented stimuli and occasionally presented stimuli. The component that can be observed in the difference wave is called visual mismatch negativity, which is obtained by subtracting event-related potentials evoked by the deviant from ERPs evoked by the standard. There are three hypotheses to explain the vMMN. The sensory fatigue hypothesis considers that weakened (...)
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  3.  22
    Mismatch negativity and neural adaptation: Two sides of the same coin. Response: Commentary: Visual mismatch negativity: a predictive coding view.Gábor Stefanics, Jan Kremláček & István Czigler - 2016 - Frontiers in Human Neuroscience 10.
  4.  77
    Auditory Mismatch Negativity Response in Institutionalized Children.Irina Ovchinnikova, Marina A. Zhukova, Anna Luchina, Maxim V. Petrov, Marina J. Vasilyeva & Elena L. Grigorenko - 2019 - Frontiers in Human Neuroscience 13.
  5.  26
    The mismatch negativity: a component of the auditory event-related brain potential.Angela D. Friederici - 2005 - Trends in Cognitive Sciences 9 (10):481-488.
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  6.  9
    Mismatch Negativity Is Not Always Modulated by Lexicality.Stephen Politzer-Ahles & Suyeon Im - 2020 - Frontiers in Human Neuroscience 14.
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  7.  18
    Mismatch Negativity in Autism Spectrum Disorder.Schall Ulrich, Weismueller Benjamin, Thienel Renate, Youlden Anne-Marie & Fulham Ross - 2015 - Frontiers in Human Neuroscience 9.
  8.  6
    Late mismatch negativity of lexical tone at age 8 predicts Chinese children’s reading ability at age 10.Han Wu & Yixiao Zhang - 2022 - Frontiers in Psychology 13.
    BackgroundDeficits in phonological processing are commonly reported in dyslexia but longitudinal evidence that poor speech perception compromises reading is scant. This 2-year longitudinal ERP study investigates changes in pre-attentive auditory processing that underlies categorical perception of mandarin lexical tones during the years children learn to read fluently. The main purpose of the present study was to explore the development of lexical tone categorical perception to see if it can predict children’s reading ability.MethodsBoth behavioral and electrophysiological measures were taken in this (...)
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  9.  4
    Automatic change detection: Mismatch negativity and the now-classic Rensink, O’Reagan, and Clark (1997) stimuli.Domonkos File, Bela Petro, Zsófia Anna Gaál, Nóra Csikós & István Czigler - 2022 - Frontiers in Psychology 13.
    Change blindness experiments had demonstrated that detection of significant changes in natural images is extremely difficult when brief blank fields are placed between alternating displays of an original and a modified scene. On the other hand, research on the visual mismatch negativity component of the event-related potentials identified sensitivity to events different from the regularity of stimulus sequences, even if the deviant and standard events are non-attended. The present study sought to investigate the apparent controversy between the experience (...)
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  10.  20
    The visual mismatch negativity elicited with visual speech stimuli.Benjamin T. Files, Edward T. Auer & Lynne E. Bernstein - 2013 - Frontiers in Human Neuroscience 7.
  11.  9
    Prediction and Mismatch Negativity Responses Reflect Impairments in Action Semantic Processing in Adults With Autism Spectrum Disorders.Luigi Grisoni, Rachel L. Moseley, Shiva Motlagh, Dimitra Kandia, Neslihan Sener, Friedemann Pulvermüller, Stefan Roepke & Bettina Mohr - 2019 - Frontiers in Human Neuroscience 13.
  12.  47
    Oblique effect in visual mismatch negativity.Endre Takács, István Sulykos, István Czigler, Irén Barkaszi & László Balázs - 2013 - Frontiers in Human Neuroscience 7.
  13.  27
    Is there a mismatch negativity in visual modality?Rainer Cammann - 1990 - Behavioral and Brain Sciences 13 (2):234-235.
  14.  28
    Attentional influence on the mismatch negativity.Marty G. Woldorff & Steven A. Hillyard - 1990 - Behavioral and Brain Sciences 13 (2):258-260.
  15.  25
    Sensory adaptation and mismatch negativity.P. Ullsperger & T. Baldeweg - 1990 - Behavioral and Brain Sciences 13 (2):255-256.
  16.  4
    Corrigendum: The Phonological Mapping (Mismatch) Negativity: History, Inconsistency, and Future Direction.Jennifer Lewendon, Laurie Mortimore & Ciara Egan - 2021 - Frontiers in Psychology 11.
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  17.  8
    The Phonological Mapping (Mismatch) Negativity: History, Inconsistency, and Future Direction.Jennifer Lewendon, Laurie Mortimore & Ciara Egan - 2020 - Frontiers in Psychology 11.
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  18.  26
    Acute glycine administration increases mismatch negativity in chronic schizophrenia.Greenwood Lisa-Marie, Leung Sumie, Michie Patricia, Green Amity, Nathan Pradeep, Fitzgerald Paul, Johnston Patrick, Solowij Nadia, Kulkarni Jayashri & Croft Rodney - 2015 - Frontiers in Human Neuroscience 9.
  19.  8
    Test–Retest Reliability of Mismatch Negativity to Emotional Voices.Chenyi Chen, Chia-Wen Chan & Yawei Cheng - 2018 - Frontiers in Human Neuroscience 12.
  20.  16
    Syntactic processing and Mismatch Negativity.Caslick-Waller Zeb & Provost Steve - 2014 - Frontiers in Human Neuroscience 8.
  21.  23
    Cortical Areas Associated With Mismatch Negativity: A Connectivity Study Using Propofol Anesthesia.Yun Zhang, Fei Yan, Liu Wang, Yubo Wang, Chunshu Wang, Qiang Wang & Liyu Huang - 2018 - Frontiers in Human Neuroscience 12.
  22.  25
    Single-Trial EEG-fMRI Reveals the Generation Process of the Mismatch Negativity.Qiang Li, Guangyuan Liu, Guangjie Yuan, Gaoyuan Wang, Zonghui Wu & Xingcong Zhao - 2019 - Frontiers in Human Neuroscience 13:456119.
    Although research on the mismatch negativity (MMN) has been ongoing for 40 years, the generation process of the MMN remains largely unknown. In this study, we used a single-trial EEG-fMRI coupling method which can analyse neural activity with both high temporal and high spatial resolution and thus assess the generation process of the MMN. We elicited the MMN with an auditory oddball paradigm while recording simultaneous EEG and fMRI. We divided the MMN into five equal-durational phases. Utilizing the (...)
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  23.  8
    The Relationship Between Affective Visual Mismatch Negativity and Interpersonal Difficulties Across Autism and Schizotypal Traits.Talitha C. Ford, Laila E. Hugrass & Bradley N. Jack - 2022 - Frontiers in Human Neuroscience 16.
    Sensory deficits are a feature of autism and schizophrenia, as well as the upper end of their non-clinical spectra. The mismatch negativity, an index of pre-attentive auditory processing, is particularly sensitive in detecting such deficits; however, little is known about the relationship between the visual MMN to facial emotions and autism and schizophrenia spectrum symptom domains. We probed the vMMN to happy, sad, and neutral faces in 61 healthy adults, and evaluated their degree of autism and schizophrenia spectrum (...)
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  24.  8
    Extracting Phonetic Features From Natural Classes: A Mismatch Negativity Study of Mandarin Chinese Retroflex Consonants.Zhanao Fu & Philip J. Monahan - 2021 - Frontiers in Human Neuroscience 15.
    How speech sounds are represented in the brain is not fully understood. The mismatch negativity has proven to be a powerful tool in this regard. The MMN event-related potential is elicited by a deviant stimulus embedded within a series of repeating standard stimuli. Listeners construct auditory memory representations of these standards despite acoustic variability. In most designs that test speech sounds, however, this variation is typically intra-category: All standards belong to the same phonetic category. In the current paper, (...)
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  25.  20
    Is it a face of a woman or a man? Visual mismatch negativity is sensitive to gender category.Krisztina Kecskés-Kovács, István Sulykos & István Czigler - 2013 - Frontiers in Human Neuroscience 7.
  26.  10
    Visually Perceived Negative Emotion Enhances Mismatch Negativity but Fails to Compensate for Age-Related Impairments.Jiali Chen, Xiaomin Huang, Xianglong Wang, Xuefei Zhang, Sishi Liu, Junqin Ma, Yuanqiu Huang, Anli Tang & Wen Wu - 2022 - Frontiers in Human Neuroscience 16.
    Objective: Automatic detection of auditory stimuli, represented by the mismatch negativity, facilitates rapid processing of salient stimuli in the environment. The amplitude of MMN declines with ageing. However, whether automatic detection of auditory stimuli is affected by visually perceived negative emotions with normal ageing remains unclear. We aimed to evaluate how fearful facial expressions affect the MMN amplitude under ageing.Methods: We used a modified oddball paradigm to analyze the amplitude of N100 and MMN in 22 young adults and (...)
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  27.  4
    The Predictive Role of Low Spatial Frequencies in Automatic Face Processing: A Visual Mismatch Negativity Investigation.Adeline Lacroix, Sylvain Harquel, Martial Mermillod, Laurent Vercueil, David Alleysson, Frédéric Dutheil, Klara Kovarski & Marie Gomot - 2022 - Frontiers in Human Neuroscience 16.
    Visual processing is thought to function in a coarse-to-fine manner. Low spatial frequencies, conveying coarse information, would be processed early to generate predictions. These LSF-based predictions would facilitate the further integration of high spatial frequencies, conveying fine details. The predictive role of LSF might be crucial in automatic face processing, where high performance could be explained by an accurate selection of clues in early processing. In the present study, we used a visual Mismatch Negativity paradigm by presenting an (...)
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  28.  21
    Processing of acoustic and phonological information of lexical tones in Mandarin Chinese revealed by mismatch negativity.Keke Yu, Ruiming Wang, Li Li & Ping Li - 2014 - Frontiers in Human Neuroscience 8.
  29.  26
    Auditory Discrimination Between Function Words in Children and Adults: A Mismatch Negativity Study.Anna Strotseva-Feinschmidt, Katrin Cunitz, Angela D. Friederici & Thomas C. Gunter - 2015 - Frontiers in Psychology 6.
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  30.  15
    Oscillatory characteristics of the visual mismatch negativity: what evoked potentials aren't telling us.George Stothart & Nina Kazanina - 2013 - Frontiers in Human Neuroscience 7.
  31.  15
    Automatic Change Detection of Emotional and Neutral Body Expressions: Evidence From Visual Mismatch Negativity.Xiaobin Ding, Jianyi Liu, Tiejun Kang, Rui Wang & Mariska E. Kret - 2019 - Frontiers in Psychology 10.
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  32.  20
    Levels of attention and task difficulty in the modulation of interval duration mismatch negativity.Alana M. Campbell & Deana B. Davalos - 2015 - Frontiers in Psychology 6.
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  33.  44
    Automatic Change Detection to Facial Expressions in Adolescents: Evidence from Visual Mismatch Negativity Responses.Tongran Liu, Tong Xiao & Jiannong Shi - 2016 - Frontiers in Psychology 7.
  34.  8
    The Role of Surface and Underlying Forms When Processing Tonal Alternations in Mandarin Chinese: A Mismatch Negativity Study.Yu-Fu Chien, Xiao Yang, Robert Fiorentino & Joan A. Sereno - 2020 - Frontiers in Psychology 11.
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  35.  29
    Do first-impression bias effects in mismatch negativity (MMN) diminish with repeated exposure to sound sequences?Frost Jade, Provost Alexander, Winkler István & Todd Juanita - 2015 - Frontiers in Human Neuroscience 9.
  36.  38
    Does Sequence Foreknowledge or Concurrent Task Affect First-Impression Bias in Mismatch Negativity?Frost Jade, McDonnell Kelly, Provost Alexander & Todd Juanita - 2015 - Frontiers in Human Neuroscience 9.
  37.  25
    Does primacy bias occur in mismatch negativity (MMN) to spatial deviants?Fitzgerald Kaitlin, Provost Alexander & Todd Juanita - 2015 - Frontiers in Human Neuroscience 9.
  38.  14
    Evidence for a divergence between psychophysiological and behavioural measures of expectancy and prediction in a roving mismatch negativity paradigm.Provost Steve & Foster Lachlan - 2014 - Frontiers in Human Neuroscience 8.
  39.  29
    The role of stimulus train length in mismatch negativity (MMN) abnormalities in schizophrenia: A comparison of the 'roving' and 'oddball' MMN paradigms.Leung Sumie, Greenwood Lisa-Marie, Michie Patricia & Croft Rodney - 2015 - Frontiers in Human Neuroscience 9.
  40.  35
    Self-generated sounds enhance the mismatch negativity: Evidence from the equiprobable paradigm.Jack Bradley, Griffiths Oren, Le Pelley Mike & Whitford Thomas - 2015 - Frontiers in Human Neuroscience 9.
  41.  9
    We make predictions about eye of origin of visual input: Visual mismatch negativity from binocular rivalry.O'Shea Robert - 2015 - Frontiers in Human Neuroscience 9.
  42.  10
    A theory of attentional modulations of the supratemporal generation of the auditory mismatch negativity.Tom A. Campbell - 2014 - Frontiers in Human Neuroscience 8.
  43. Cammann's reply to Näätänen's article in Open Peer Commentary: Is there mismatch negativity (MMN) in the visual modality.R. Cammann - 1990 - Behavioral and Brain Sciences 13:201-288.
     
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  44.  6
    Visual Perceptual Load Does Not Affect the Frequency Mismatch Negativity.Stefan Wiens, Erik van Berlekom, Malina Szychowska & Rasmus Eklund - 2019 - Frontiers in Psychology 10.
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  45.  45
    Title: Persistent order-driven biases in auditory relevance-filtering processes - a mismatch negativity (MMN) study.Damaso Karlye, Mullens Daniel, Whitson Lisa, Provost Alexander, Heathcote Andrew, Winkler Istvan & Todd Juanita - 2015 - Frontiers in Human Neuroscience 9.
  46.  23
    Evidence for the role of German final devoicing in pre-attentive speech processing: a mismatch negativity study.Hubert Truckenbrodt, Johanna Steinberg, Thomas K. Jacobsen & Thomas Jacobsen - 2014 - Frontiers in Psychology 5.
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  47.  19
    Can eye of origin serve as a deviant? Visual mismatch negativity from binocular rivalry.Manja van Rhijn, Urte Roeber & Robert P. O'Shea - 2013 - Frontiers in Human Neuroscience 7.
  48.  33
    Mismatch and processing negativities in auditory stimulus processing and selection.Risto Näätänen - 1991 - Behavioral and Brain Sciences 14 (4):764-768.
  49.  60
    Do Auditory Mismatch Responses Differ Between Acoustic Features?HyunJung An, Shing Ho Kei, Ryszard Auksztulewicz & Jan W. H. Schnupp - 2021 - Frontiers in Human Neuroscience 15.
    Mismatch negativity is the electroencephalographic waveform obtained by subtracting event-related potential responses evoked by unexpected deviant stimuli from responses evoked by expected standard stimuli. While the MMN is thought to reflect an unexpected change in an ongoing, predictable stimulus, it is unknown whether MMN responses evoked by changes in different stimulus features have different magnitudes, latencies, and topographies. The present study aimed to investigate whether MMN responses differ depending on whether sudden stimulus change occur in pitch, duration, location (...)
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  50.  23
    Constructional Preemption by Contextual Mismatch: A Corpus-Linguistic Investigation.Anatol Stefanowitsch - 2011 - Cognitive Linguistics 22 (1):107-129.
    The seeming absence of negative evidence in the input that children receive during language acquisition has long been regarded as a serious problem for non-nativist linguistic theories. Among the solutions that have been suggested for this problem, preemption by competing structures is doubtless the most intensively researched and widely accepted. However, while preemption works well in the domain of morphology, it cannot apply categorically in the domain of syntax, as this would preclude the existence of semantically overlapping constructions, such as (...)
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