Results for 'auditory noise stimulation'

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  1.  13
    Electrical stimulation mapping in the medial prefrontal cortex induced auditory hallucinations of episodic memory: A case report.Qiting Long, Wenjie Li, Wei Zhang, Biao Han, Qi Chen, Lu Shen & Xingzhou Liu - 2022 - Frontiers in Human Neuroscience 16.
    It has been well documented that the auditory system in the superior temporal cortex is responsible for processing basic auditory sound features, such as sound frequency and intensity, while the prefrontal cortex is involved in higher-order auditory functions, such as language processing and auditory episodic memory. The temporal auditory cortex has vast forward anatomical projections to the prefrontal auditory cortex, connecting with the lateral, medial, and orbital parts of the prefrontal cortex. The connections between (...)
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  2.  6
    Effect of certain noises upon detection of visual signals.William H. Watkins - 1964 - Journal of Experimental Psychology 67 (1):72.
  3.  10
    Manipulating the strength of a stereotype: Interference effects in an auditory information-processing task.J. Richard Simon, John L. Craft & A. M. Small - 1970 - Journal of Experimental Psychology 86 (1):63.
  4.  9
    Effects of Emotional Stimulations on the Online Operation of a P300-Based Brain–Computer Interface.Minju Kim, Jongsu Kim, Dojin Heo, Yunjoo Choi, Taejun Lee & Sung-Phil Kim - 2021 - Frontiers in Human Neuroscience 15.
    Using P300-based brain–computer interfaces in daily life should take into account the user’s emotional state because various emotional conditions are likely to influence event-related potentials and consequently the performance of P300-based BCIs. This study aimed at investigating whether external emotional stimuli affect the performance of a P300-based BCI, particularly built for controlling home appliances. We presented a set of emotional auditory stimuli to subjects, which had been selected for each subject based on individual valence scores evaluated a priori, while (...)
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  5. Functional Imaging Reveals Numerous Fields in the Monkey Auditory Cortex.Mark Augath - unknown
    Anatomical studies propose that the primate auditory cortex contains more fields than have actually been functionally confirmed or described. Spatially resolved functional magnetic resonance imaging (fMRI) with carefully designed acoustical stimulation could be ideally suited to extend our understanding of the processing within these fields. However, after numerous experiments in humans, many auditory fields remain poorly characterized. Imaging the macaque monkey is of particular interest as these species have a richer set of anatomical and neurophysiological data to (...)
     
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  6.  11
    Transcranial Random Noise Stimulation Does Not Improve Behavioral and Neurophysiological Measures in Patients with Subacute Vegetative-Unresponsive Wakefulness State.Mauro Mancuso, Laura Abbruzzese, Stefania Canova, Giulia Landi, Simone Rossi & Emiliano Santarnecchi - 2017 - Frontiers in Human Neuroscience 11.
  7. Integration of Touch and Sound in Auditory Cortex.Mark Augath - unknown
    To form a coherent percept of the environment, our brain combines information from different senses. Such multisensory integration occurs in higher association cortices; but supposedly, it also occurs in early sensory areas. Confirming the latter hypothesis, we unequivocally demonstrate supra-additive integration of touch and sound stimulation at the second stage of the auditory cortex. Using high-resolution fMRI of the macaque monkey, we quantified the integration of auditory broad-band noise and tactile stimulation of hand and foot (...)
     
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  8.  10
    Editorial: The Influence of Loud Music on Physical and Mental Health.Mark Reybrouck, Piotr Podlipniak & David Welch - 2019 - Frontiers in Psychology 10.
    Music and noise can be considered as a collection of vibrational events which may impinge upon the body and the mind. As such they can induce beneficial or harmful bodily and psychological reactions. Much contemporary music production and consumption, however, produces sensory saturation and/or overload with sounds being manipulated in terms of spectrum and dynamic range. Such manipulation is not harmful by definition, but the manipulations may increase the potential for harm. Much research has been devoted to the risk (...)
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  9. Comparing transcranial direct current stimulation and transcranial random noise stimulation over left dorsolateral prefrontal cortex and left inferior frontal gyrus: Effects on divergent and convergent thinking.Javier Peña, Agurne Sampedro, Yolanda Balboa-Bandeira, Naroa Ibarretxe-Bilbao, Leire Zubiaurre-Elorza, M. Acebo García-Guerrero & Natalia Ojeda - 2022 - Frontiers in Human Neuroscience 16:997445.
    The essential role of creativity has been highlighted in several human knowledge areas. Regarding the neural underpinnings of creativity, there is evidence about the role of left dorsolateral prefrontal cortex (DLPFC) and left inferior frontal gyrus (IFG) on divergent thinking (DT) and convergent thinking (CT). Transcranial stimulation studies suggest that the left DLPFC is associated with both DT and CT, whereas left IFG is more related to DT. However, none of the previous studies have targeted both hubs simultaneously and (...)
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  10.  4
    Temporal Cortex Activation to Audiovisual Speech in Normal-Hearing and Cochlear Implant Users Measured with Functional Near-Infrared Spectroscopy.Luuk P. H. van de Rijt, A. John van Opstal, Emmanuel A. M. Mylanus, Louise V. Straatman, Hai Yin Hu, Ad F. M. Snik & Marc M. van Wanrooij - 2016 - Frontiers in Human Neuroscience 10:173204.
    Background Speech understanding may rely not only on auditory, but also on visual information. Non-invasive functional neuroimaging techniques can expose the neural processes underlying the integration of multisensory processes required for speech understanding in humans. Nevertheless, noise (from fMRI) limits the usefulness in auditory experiments, and electromagnetic artefacts caused by electronic implants worn by subjects can severely distort the scans (EEG, fMRI). Therefore, we assessed audio-visual activation of temporal cortex with a silent, optical neuroimaging technique: functional near-infrared (...)
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  11.  14
    Modification of Eye–Head Coordination With High Frequency Random Noise Stimulation.Yusuke Maeda, Makoto Suzuki, Naoki Iso, Takuhiro Okabe, Kilchoon Cho & Yin-Jung Wang - 2020 - Frontiers in Human Neuroscience 14.
    The vestibulo-ocular reflex plays an important role in controlling the gaze at a visual target. Although patients with vestibular hypofunction aim to improve their VOR function, some retain dysfunction for a long time. Previous studies have explored the effects of direct current stimulation on vestibular function; however, the effects of random noise stimulation on eye–head coordination have not previously been tested. Therefore, we aimed to clarify the effects of high frequency noisy vestibular stimulation on eye–head coordination (...)
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  12.  81
    Multimodal mental imagery.Bence Nanay - 2018 - Cortex 105:125-136.
    When I am looking at my coffee machine that makes funny noises, this is an instance of multisensory perception – I perceive this event by means of both vision and audition. But very often we only receive sensory stimulation from a multisensory event by means of one sense modality, for example, when I hear the noisy coffee machine in the next room, that is, without seeing it. The aim of this paper is to bring together empirical findings about multimodal (...)
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  13.  8
    Electrical skin resistance before, during and after a period of noise stimulation.R. C. Davis - 1932 - Journal of Experimental Psychology 15 (1):108.
  14.  10
    Differences in Speech Recognition Between Children with Attention Deficits and Typically Developed Children Disappear When Exposed to 65 dB of Auditory Noise.Göran B. W. Söderlund & Elisabeth Nilsson Jobs - 2016 - Frontiers in Psychology 7.
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  15.  3
    Improving visual functions in adult amblyopia with combined perceptual training and transcranial random noise stimulation : a pilot study.Gianluca Campana, Rebecca Camilleri, Andrea Pavan, Antonella Veronese & Giuseppe Lo Giudice - 2014 - Frontiers in Psychology 5.
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  16.  10
    Alteration of the dynamic modulation of auditory beta-band oscillations by voice power during speech-in-noise.Vander Ghinst Marc, Bourguignon Mathieu, Wens Vincent, Marty Brice, Op De Beeck Marc, Van Bogaert Patrick, Goldman Serge & De Tiège Xavier - 2014 - Frontiers in Human Neuroscience 8.
  17.  11
    Modulation of Item and Source Memory by Auditory Beat Stimulation: A Pilot Study With Intracranial EEG.Marlene Derner, Leila Chaieb, Rainer Surges, Bernhard P. Staresina & Juergen Fell - 2018 - Frontiers in Human Neuroscience 12.
  18.  9
    Auditory Stimulation Training With Technically Manipulated Musical Material in Preschool Children With Specific Language Impairments: An Explorative Study.Ingo Roden, Kaija Früchtenicht, Gunter Kreutz, Friedrich Linderkamp & Dietmar Grube - 2019 - Frontiers in Psychology 10.
    Auditory stimulation training (AST) has been proposed as a potential treatment for chil-dren with specific language impairments (SLI). The current study was designed to test this as-sumption by using an AST with technically modulated musical material (ASTM) in a random-ized control group design. A total of 101 preschool children (62 male, 39 females; mean age = 4.52 years, SD = 0.62) with deficits in speech comprehension and poor working memory ca-pacity were randomly allocated into one of two treatment (...)
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  19.  3
    Improving Older People’s Emotion Perception Using High-Freqeuncy Random Noise Stimulation.Yang Tao & Banissy Michael - 2014 - Frontiers in Human Neuroscience 8.
  20. Awful noises: evaluativism and the affective phenomenology of unpleasant auditory experience.Tom Roberts - 2020 - Philosophical Studies 178 (7):2133-2150.
    According to the evaluativist theory of bodily pain, the overall phenomenology of a painful experience is explained by attributing to it two types of representational content—an indicative content that represents bodily damage or disturbance, and an evaluative content that represents that condition as bad for the subject. This paper considers whether evaluativism can offer a suitable explanation of aversive auditory phenomenology—the experience of awful noises—and argues that it can only do so by conceding that auditory evaluative content would (...)
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  21.  5
    Auditory stream segregation of amplitude-modulated narrowband noise in cochlear implant users and individuals with normal hearing.Alexandria F. Matz, Yingjiu Nie & Harley J. Wheeler - 2022 - Frontiers in Psychology 13.
    Voluntary stream segregation was investigated in cochlear implant users and normal-hearing listeners using a segregation-promoting objective approach which evaluated the role of spectral and amplitude-modulation rate separations on stream segregation and its build-up. Sequences of 9 or 3 pairs of A and B narrowband noise bursts were presented which differed in either center frequency of the noise band, the AM-rate, or both. In some sequences, the last B burst was delayed by 35 ms from their otherwise-steady temporal position. (...)
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  22.  1
    Auditory Space, Ethics and Hospitality: ‘Noise’, Alterity and Care at the End of Life.Yasmin Gunaratnam - 2009 - Body and Society 15 (4):1-19.
    This article examines the limits and potential of hospitality through struggles over auditory space in care at the end of life. Drawing upon empirical research and a nurse’s account of noisy mourning in a multicultural hospice ward, I argue that the insurgent force of noise as corporeal generosity can produce impossible dilemmas for care, while also provoking surprising ethical relations and potentialities. Derrida’s ideas about the aporias of the gift and absolute responsibility are used to make sense of (...)
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  23.  1
    Auditory stream segregation using amplitude modulated bandpass noise.Yingjiu Nie & Peggy B. Nelson - 2015 - Frontiers in Psychology 6.
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  24.  3
    Electrical stimulation of the auditory cortex as a treatment for tinnitus.E. Van Der Loo, M. Congedo, P. Van De Heyning & D. De Ridder - forthcoming - Frontiers in Human Neuroscience. Conference Abstract, Tenth International Conference on Cognitive Neuroscience.
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  25.  10
    Ear asymmetry and delayed auditory feedback: Effects of task requirements and competitive stimulation.John L. Bradshaw, Norman C. Nettleton & Gina Geffen - 1972 - Journal of Experimental Psychology 94 (3):269.
  26.  33
    Cross-Modal Perception of Noise-in-Music: Audiences Generate Spiky Shapes in Response to Auditory Roughness in a Novel Electroacoustic Concert Setting.Kongmeng Liew, PerMagnus Lindborg, Ruth Rodrigues & Suzy J. Styles - 2018 - Frontiers in Psychology 9.
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  27.  22
    Cross-modal Association between Auditory and Visuospatial Information in Mandarin Tone Perception in Noise by Native and Non-native Perceivers.Beverly Hannah, Yue Wang, Allard Jongman, Joan A. Sereno, Jiguo Cao & Yunlong Nie - 2017 - Frontiers in Psychology 8.
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  28.  2
    Effect of auditory stimulation on critical flicker fusion frequency.Howard L. Miller - 1969 - Journal of Experimental Psychology 81 (2):365.
  29.  1
    Effect of response to auditory stimulation on the latent time of blocking of the Berger rhythm.F. P. Bakes - 1939 - Journal of Experimental Psychology 24 (4):406.
  30.  6
    Memory performance on the Auditory Inference Span Test is independent of background noise type for young adults with normal hearing at high speech intelligibility.Niklas Rã¶Nnberg, Mary Rudner, Thomas Lunner & Stefan Stenfelt - 2014 - Frontiers in Psychology 5.
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  31.  9
    Effects of simultaneous auditory stimulation on the detection of tactile stimuli.George A. Gescheider, William G. Barton, Michael R. Bruce, Jeffrey H. Goldberg & Michael J. Greenspan - 1969 - Journal of Experimental Psychology 81 (1):120.
  32.  9
    Continuous, Lateralized Auditory Stimulation Biases Visual Spatial Processing.Ulrich Pomper, Rebecca Schmid & Ulrich Ansorge - 2020 - Frontiers in Psychology 11.
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  33.  2
    Beyond P300: an auditory ERP paradigm with sequential stimulation.Hoehne Johannes & Tangermann Michael - 2015 - Frontiers in Human Neuroscience 9.
  34.  12
    Transcranial Alternating Current Stimulation With the Theta-Band Portion of the Temporally-Aligned Speech Envelope Improves Speech-in-Noise Comprehension.Mahmoud Keshavarzi & Tobias Reichenbach - 2020 - Frontiers in Human Neuroscience 14.
  35.  1
    Temporary threshold shifts in auditory sensitivity produced by the combined effects of noise and sodium salicylate.Thomas L. Bennett, R. John Morgan, Paulette Murphy & Lucian B. Eddy - 1978 - Bulletin of the Psychonomic Society 12 (2):95-98.
  36.  33
    The Effects of Random Stimulation Rate on Measurements of Auditory Brainstem Response.Xin Wang, Mingxing Zhu, Oluwarotimi Williams Samuel, Xiaochen Wang, Haoshi Zhang, Junjie Yao, Yun Lu, Mingjiang Wang, Subhas Chandra Mukhopadhyay, Wanqing Wu, Shixiong Chen & Guanglin Li - 2020 - Frontiers in Human Neuroscience 14.
  37.  5
    Effects of auditory stimulation on Covert oral behavior during silent reading.F. J. Mcguigan & William I. Rodier - 1968 - Journal of Experimental Psychology 76 (4p1):649.
  38.  14
    Clinical Research: Auditory Stimulation in the Disorders of Consciousness.Jiajie Zhu, Yifan Yan, Wei Zhou, Yajun Lin, Zheying Shen, Xuanting Mou, Yan Ren, Xiaohua Hu & Haibo Di - 2019 - Frontiers in Human Neuroscience 13.
  39.  6
    Modulation of Cross-Language Activation During Bilingual Auditory Word Recognition: Effects of Language Experience but Not Competing Background Noise.Melinda Fricke - 2022 - Frontiers in Psychology 13.
    Previous research has shown that as the level of background noise increases, auditory word recognition performance drops off more rapidly for bilinguals than monolinguals. This disproportionate bilingual deficit has often been attributed to a presumed increase in cross-language activation in noise, although no studies have specifically tested for such an increase. We propose two distinct mechanisms by which background noise could cause an increase in cross-language activation: a phonetically based account and an executive function-based account. We (...)
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  40.  4
    Transcranial direct current stimulation as a treatment for auditory hallucinations.Sanne Koops, Hilde van den Brink & Iris E. C. Sommer - 2015 - Frontiers in Psychology 6.
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  41.  12
    Noise matters: towards an ontology of noise.Greg Hainge - 2013 - New York: Bloomsbury Academic.
    Everyone knows what noise is. Or do they? Can we in fact say that one man's noise is another teenager's music? Is noise in fact only an auditory phenomenon or does it extend far beyond this realm? If our common definitions of noise are necessarily subjective and noise is not just unpleasant sound, then it merits a closer look (or listen). Greg Hainge sets out to define noise in this way, to find within (...)
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  42.  5
    The effect of auditory stimulation on responses to tactile stimuli.George A. Gescheider, Martin J. Kane, Lawrence C. Sager & Lydia J. Ruffolo - 1974 - Bulletin of the Psychonomic Society 3 (3):204-206.
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  43.  3
    An investigation of the effect of auditory stimulation on visual sensitivity.W. D. Serrat & T. Karwoski - 1936 - Journal of Experimental Psychology 19 (5):604.
  44.  10
    The temporal course of the influence of visual stimulation upon the auditory threshold.I. L. Child & G. R. Wendt - 1938 - Journal of Experimental Psychology 23 (2):109.
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  45.  8
    The effect of simultaneous visual stimulation on absolute auditory sensitivity.Lee W. Gregg & W. J. Brogden - 1952 - Journal of Experimental Psychology 43 (3):179.
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  46.  7
    Retention of habituation of the gsr to visual and auditory stimulation.H. D. Kimmel & A. J. Goldstein - 1967 - Journal of Experimental Psychology 73 (3):401.
  47.  3
    Conditioning of eye movements with auditory stimulation.John N. Marr, Dewey J. Bayer & Peter L. Borchelt - 1969 - Journal of Experimental Psychology 81 (2):370.
  48.  9
    Comparison of the effect of auditory versus visual stimulation on information capacity of discrete motor responses.W. W. Breen, M. J. De Haemer & G. K. Poock - 1969 - Journal of Experimental Psychology 82 (2):395.
  49.  5
    Auditory Pattern Representations Under Conditions of Uncertainty—An ERP Study.Maria Bader, Erich Schröger & Sabine Grimm - 2021 - Frontiers in Human Neuroscience 15.
    The auditory system is able to recognize auditory objects and is thought to form predictive models of them even though the acoustic information arriving at our ears is often imperfect, intermixed, or distorted. We investigated implicit regularity extraction for acoustically intact versus disrupted six-tone sound patterns via event-related potentials. In an exact-repetition condition, identical patterns were repeated; in two distorted-repetition conditions, one randomly chosen segment in each sound pattern was replaced either by white noise or by a (...)
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  50.  5
    Effect of signal delay on auditory detection with gated uncorrelated noise.W. A. Wilbanks - 1983 - Bulletin of the Psychonomic Society 21 (1):35-36.
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