Results for '*Auditory Stimulation'

1000+ found
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  1.  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 groups (...)
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  2.  9
    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.
  3.  11
    Effect of auditory stimulation on critical flicker fusion frequency.Howard L. Miller - 1969 - Journal of Experimental Psychology 81 (2):365.
  4.  27
    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.
  5.  33
    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.
  6.  8
    Continuous, Lateralized Auditory Stimulation Biases Visual Spatial Processing.Ulrich Pomper, Rebecca Schmid & Ulrich Ansorge - 2020 - Frontiers in Psychology 11.
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  7.  13
    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.
  8.  12
    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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  9.  12
    An investigation of the effect of auditory stimulation on visual sensitivity.W. D. Serrat & T. Karwoski - 1936 - Journal of Experimental Psychology 19 (5):604.
  10.  19
    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.
  11.  13
    Conditioning of eye movements with auditory stimulation.John N. Marr, Dewey J. Bayer & Peter L. Borchelt - 1969 - Journal of Experimental Psychology 81 (2):370.
  12.  7
    Reinforcing properties of the onset of auditory stimulation.Gerald W. Barnes & George B. Kish - 1961 - Journal of Experimental Psychology 62 (2):164.
  13.  16
    Transfer of learned discrimination from peripheral to central auditory stimulation in cats.Francis B. Colavita - 1973 - Bulletin of the Psychonomic Society 2 (2):109-110.
  14.  12
    Reflex modulation in humans by monaural and binaural auditory stimulation.James R. Ison & Linda Pinckney - 1980 - Bulletin of the Psychonomic Society 15 (5):285-287.
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  15.  20
    Termination of tonic immobility in chickens by auditory stimulation.Daniel C. Hatton & Richard W. Thompson - 1975 - Bulletin of the Psychonomic Society 5 (1):61-62.
  16.  47
    Space distribution of EEG responses to hanoi-moving visual and auditory stimulation with Fourier Independent Component Analysis.Shijun Li, Yi Wang, Guangyu Bin, Xiaoshan Huang, Dan Zhang, Gang Liu, Yanwei Lv, Xiaorong Gao, Shangkai Gao & Lin Ma - 2015 - Frontiers in Human Neuroscience 9.
  17.  11
    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 the auditory cortex and the prefrontal (...)
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  18.  32
    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.
  19.  8
    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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  20.  19
    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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  21.  30
    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.
  22.  11
    Beyond P300: an auditory ERP paradigm with sequential stimulation.Hoehne Johannes & Tangermann Michael - 2015 - Frontiers in Human Neuroscience 9.
  23.  21
    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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  24.  25
    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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  25.  34
    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.
  26.  24
    Effect of brightness of simultaneous visual stimulation on absolute auditory sensitivity.Richard F. Thompson, James F. Voss & W. J. Brogden - 1958 - Journal of Experimental Psychology 55 (1):45.
  27.  83
    Performance of an Ambulatory Dry-EEG Device for Auditory Closed-Loop Stimulation of Sleep Slow Oscillations in the Home Environment.Eden Debellemaniere, Stanislas Chambon, Clemence Pinaud, Valentin Thorey, David Dehaene, Damien Léger, Mounir Chennaoui, Pierrick J. Arnal & Mathieu N. Galtier - 2018 - Frontiers in Human Neuroscience 12.
  28.  22
    An event-related potential and psychophysical investigation of cross-modal integration of auditory and tactile stimulation at rapid stimulus rates.Hedgcoe Michelle, Timora Justin & Budd Timothy - 2014 - Frontiers in Human Neuroscience 8.
  29.  8
    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.
  30.  17
    A Psychophysical and Steady-State EEG Study of Cross-Modal Integration with Temporal and Spatial Manipulation of Auditory and Tactile Stimulation.Budd Timothy, Gillard Elle & Timora Justin - 2014 - Frontiers in Human Neuroscience 8.
  31.  20
    The effect of auditory distractors on saccades toward visual targets.H. Colonius & P. Arndt - 1999 - Behavioral and Brain Sciences 22 (4):677-678.
    The Findlay-Walker model does not consider saccades generated by auditory targets or nontargets (distractors), or by bimodal stimulation. Empirical results suggest that the effects of auditory stimulation cannot easily be incorporated into the model, neither in the WHEN nor in the WHERE system. A two-stage model by Colonius and Arndt gives a quantitative account of the facilitative effects of auditory distractors on saccadic latencies toward visual targets.
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  32.  9
    Studies in short-duration auditory fatigue: II. Recovery time.Anita I. Rawnsley & J. Donald Harris - 1952 - Journal of Experimental Psychology 43 (2):138.
  33.  16
    Sensory and active storage of compound visual and auditory stimuli.Neal E. Kroll, Stanley R. Parkinson & Theodore E. Parks - 1972 - Journal of Experimental Psychology 95 (1):32.
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  34.  43
    Electroencephalogram of Happy Emotional Cognition Based on Complex System of Music and Image Visual and Auditory.Lin Gan, Mu Zhang, Jiajia Jiang & Fajie Duan - 2020 - Complexity 2020:1-14.
    People are ingesting various information from different sense organs all the time to complete different cognitive tasks. The brain integrates and regulates this information. The two significant sensory channels for receiving external information are sight and hearing that have received extensive attention. This paper mainly studies the effect of music and visual-auditory stimulation on electroencephalogram of happy emotion recognition based on a complex system. In the experiment, the presentation was used to prepare the experimental stimulation program, and the (...)
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  35.  24
    A double stimulation test of ideomotor theory with implications for selective attention.Anthony G. Greenwald - 1970 - Journal of Experimental Psychology 84 (3):392.
  36.  12
    Reduced Environmental Stimulation in Anorexia Nervosa: An Early-Phase Clinical Trial.Sahib S. Khalsa, Scott E. Moseman, Hung-Wen Yeh, Valerie Upshaw, Beth Persac, Eric Breese, Rachel C. Lapidus, Sheridan Chappelle, Martin P. Paulus & Justin S. Feinstein - 2020 - Frontiers in Psychology 11.
    Reduced Environmental Stimulation Therapy (REST) alters the balance of sensory input to the nervous system by systematically attenuating sensory signals from visual, auditory, thermal, tactile, vestibular, and proprioceptive channels. Previous research from our group has shown that REST via floatation acutely reduces anxiety and blood pressure while simultaneously heightening interoceptive awareness in clinically anxious populations. Anorexia nervosa (AN) is an eating disorder characterized by elevated anxiety, distorted body representation, and abnormal interoception, raising the question of whether REST might positively (...)
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  37.  26
    Intensity of the conditioned stimulus and strength of conditioning: II. The conditioned galvanic skin response to an auditory stimulus.David A. Grant & Dorothy E. Schneider - 1949 - Journal of Experimental Psychology 39 (1):35.
  38.  11
    Pulse rate response of adolescents to auditory stimuli.N. W. Shock & M. J. Schlatter - 1942 - Journal of Experimental Psychology 30 (5):414.
  39.  42
    Cortico – (thalamo) – cortical interactions, gamma resonance, and auditory hallucinations in schizophrenia.Ralph E. Hoffman, Daniel H. Mathalon, Judith M. Ford & John H. Krystal - 2004 - Behavioral and Brain Sciences 27 (6):797-798.
    Transcranial magnetic stimulation, EEG, and behavioral studies by our group implicate spurious activation of speech perception neurocircuitry in the genesis of auditory hallucinations in schizophrenia. The neurobiological basis of these abnormalities remains uncertain, however. We review our ongoing studies, which suggest that altered cortical coupling underlies speech processing in schizophrenia and is expressed via disrupted gamma resonances and impaired corollary discharge function of self-generated verbal thought.
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  40.  7
    Modulation of Mind Wandering Using Monaural Beat Stimulation in Subjects With High Trait-Level Mind Wandering.Leila Chaieb, Sofie Krakau, Thomas P. Reber & Juergen Fell - 2022 - Frontiers in Psychology 13.
    Mind wandering refers to a state when attention shifts from the task at hand or current situation toward thoughts, feelings, and imaginations. This state is often accompanied by a decline in mood, and patients suffering from major depression exhibit more perseverative MW. Hence, although the directionality of the relationship between mood and MW is still under investigation, it may be useful to explore possible avenues to reduce MW. In an earlier pilot study, we investigated MW during auditory beat stimulation (...)
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  41. Functional Imaging Reveals Visual Modulation of Specific Fields in Auditory Cortex.Mark Augath - unknown
    Merging the information from different senses is essential for successful interaction with real-life situations. Indeed, sensory integration can reduce perceptual ambiguity, speed reactions, or change the qualitative sensory experience. It is widely held that integration occurs at later processing stages and mostly in higher association cortices; however, recent studies suggest that sensory convergence can occur in primary sensory cortex. A good model for early convergence proved to be the auditory cortex, which can be modulated by visual and tactile stimulation; (...)
     
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  42.  25
    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.
  43. 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 clarify the (...)
     
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  44.  22
    Increase in frequency of the alpha rhythm by verbal stimulation.Lee Edward Travis & James P. Egan - 1938 - Journal of Experimental Psychology 23 (4):384.
  45. 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 in anaesthetized animals. (...)
     
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  46.  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 they (...)
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  47.  5
    Purkyně’s Opistophone: the hearing ‘Deaf’, auditory attention and organic subjectivity in Prague psychophysical experiments, ca 1850s.Anna Kvicalova - 2022 - Annals of Science 79 (1):60-80.
    ABSTRACT The paper examines the little-known experiments in audition performed by the prominent experimental physiologist Jan Purkyně in Prague in the 1850s. Purkyně’s original research on spatial hearing and auditory attention is studied against the backdrop of the nineteenth century research on binaural audition and the nascent field of psychophysics. The article revolves around an acoustic research instrument of Purkyně’s own making, the opistophone, in which hearing became both an object of investigation and an instrument of scientific inquiry. It argues (...)
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  48.  8
    An experimental investigation of the problem of stimulation deafness.E. H. Kemp - 1936 - Journal of Experimental Psychology 19 (2):159.
  49.  6
    The impact of cerebellar transcranial direct current stimulation (tDCS) on sensorimotor and inter-sensory temporal recalibration.Christina V. Schmitter & Benjamin Straube - 2022 - Frontiers in Human Neuroscience 16.
    The characteristic temporal relationship between actions and their sensory outcomes allows us to distinguish self- from externally generated sensory events. However, the complex sensory environment can cause transient delays between action and outcome calling for flexible recalibration of predicted sensorimotor timing. Since the neural underpinnings of this process are largely unknown this study investigated the involvement of the cerebellum by means of cerebellar transcranial direct current stimulation. While receiving anodal, cathodal, dual-hemisphere or sham ctDCS, in an adaptation phase, participants (...)
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  50.  10
    Time-frequency signatures evoked by single-pulse deep brain stimulation to the subcallosal cingulate.Ezra E. Smith, Ki Sueng Choi, Ashan Veerakumar, Mosadoluwa Obatusin, Bryan Howell, Andrew H. Smith, Vineet Tiruvadi, Andrea L. Crowell, Patricio Riva-Posse, Sankaraleengam Alagapan, Christopher J. Rozell, Helen S. Mayberg & Allison C. Waters - 2022 - Frontiers in Human Neuroscience 16.
    Precision targeting of specific white matter bundles that traverse the subcallosal cingulate has been linked to efficacy of deep brain stimulation for treatment resistant depression. Methods to confirm optimal target engagement in this heterogenous region are now critical to establish an objective treatment protocol. As yet unexamined are the time-frequency features of the SCC evoked potential, including spectral power and phase-clustering. We examined these spectral features—evoked power and phase clustering—in a sample of TRD patients with implanted SCC stimulators. Electroencephalogram (...)
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