Une étude transdiagnostique de la tolérance diminuée aux sons et de ses corrélats chez des adultes autistes et non autistes II : électrophysiologie

Titre original en anglais : A Transdiagnostic Study of Decreased Sound Tolerance and its Correlates in Autistic and Non-autistic Adults II: Electrophysiology

Williams, Z. J., Bush, C. T., Cascio, C. J., & Woynaroski, T. G. (2025). A Transdiagnostic Study of Decreased Sound Tolerance and its Correlates in Autistic and Non-autistic Adults II: Electrophysiology [Preprint]. Center for Open Science. https://doi.org/10.31234/osf.io/64tva_v1

Date de publication: 30/04/2025 Ajout dans AutiHub: 07/07/2026 Type: Prépublication Langue de l’article: Anglais

Cette publication est intégrée dans AutiHub via :

Auteurs

Auteur·ices des publications
4
Auteur·ices de la publication identifié·es comme autistes
1 / 4 (25,0 %)

Résumé

Il s'agit du chapitre 6 de la thèse intitulée « Investigating the Nature of Decreased Sound Tolerance in Autistic and Non-autistic Adults » de Zack Williams. Ceci est un résumé provisoire.

This is chapter 6 of the dissertation "Investigating the Nature of Decreased Sound Tolerance in Autistic and Non-autistic Adults" by Zack Williams. This is a placeholder abstract.

Bibliographie citée par cette référence

Les références citées sont importées depuis des sources externes de métadonnées lorsqu’elles sont disponibles. La liste peut être partielle.

Vue d’ensemble de l’inclusion dans la bibliographie

Ces indicateurs décrivent la bibliographie citée importée pour cette publication. Les métriques de références citées utilisent le total des références citées comme dénominateur. Les métriques d’auteurices cité·es indiquent si elles utilisent toutes les occurrences d’auteurices cité·es ou seulement les occurrences rattachées à des auteurices déjà intégré·es à la base de données AutiHub. Ils utilisent les rattachements mis en cache entre les auteurices cité·es et les auteurices intégré·es à la base de données AutiHub. Dernier calcul : 16/08/2026 11:31.

Références citées
124
Nombre total de références citées intégrées pour cette publication.
Références citées avec un·e auteur·ice identifié·e comme autiste
5 / 124 (4,0 %)
Occurrences d’auteur·ices cité·es identifié·es comme autistes
5 / 480 (1,0 %)
Parmi les occurrences rattachées à des auteurices intégré·es à la base de données AutiHub : 5 / 23 (21,7 %). Auteurices cité·es distinct·es identifié·es comme autistes : 1 / 438 (0,2 %).
Occurrences citées rattachées à la base AutiHub
23 / 480 (4,8 %)
Auteurices cité·es distinct·es rattaché·es : 17 / 438 (3,9 %)
Occurrences rattachées, non identifiées comme autistes
18 / 23 (78,3 %)
Parmi les seules occurrences rattachées. Sur l’ensemble des occurrences d’auteurices cité·es : 18 / 480 (3,8 %). Auteurices cité·es distinct·es rattaché·es, non identifié·es comme autistes : 16 / 17 (94,1 %).
4 entrées de bibliographie citée n’ont pas pu être entièrement enrichies à partir des métadonnées DOI.
Crossref: introuvable (2) · DataCite: introuvable (2)
  1. Eugen Diesch , Maren Struve , Andre Rupp , Steffen Ritter , Manfred Hülse , Herta Flor (2004). Enhancement of steady‐state auditory evoked magnetic fields in tinnitus . European Journal of Neuroscience, 19(4), 1093-1104. Wiley.
    OpenAlex
  2. Nima Bigdely-Shamlo , Tim Mullen , Christian Kothe , Kyung-Min Su , Kay A. Robbins (2015). The PREP pipeline: standardized preprocessing for large-scale EEG analysis . Frontiers in Neuroinformatics, 9, 16-16. Frontiers Media SA.
    OpenAlex
  3. Peter U. Diehl , Roland Schaette (2015). Abnormal Auditory Gain in Hyperacusis: Investigation with a Computational Model . Frontiers in Neurology, 6, 157. Frontiers Media SA.
    OpenAlex
  4. Kathleen Joos , Annick Gilles , Paul Van de Heyning , Dirk De Ridder , Sven Vanneste (2014). From sensation to percept: The neural signature of auditory event-related potentials . Neuroscience & Biobehavioral Reviews, 42, 148-156. Elsevier BV.
    OpenAlex
  5. Wiebke Heeren , Volker Hohmann , Jens E. Appell , Jesko L. Verhey (2013). Relation between loudness in categorical units and loudness in phons and sones . The Journal of the Acoustical Society of America, 133(4), EL314-EL319. Acoustical Society of America (ASA).
    OpenAlex
  6. Thomas Brand , Volker Hohmann (2002). An adaptive procedure for categorical loudness scaling . The Journal of the Acoustical Society of America, 112(4), 1597-1604. Acoustical Society of America (ASA).
    OpenAlex
  7. Elsaeid M. Thabet , Hesham S. Zaghloul (2013). Auditory profile and high resolution CT scan in autism spectrum disorders children with auditory hypersensitivity . European Archives of Oto-Rhino-Laryngology, 270(8), 2353-2358. Springer Science and Business Media LLC.
    OpenAlex
  8. Guillaume Thierry , Mark V. Roberts (2007). Event-related potential study of attention capture by affective sounds . NeuroReport, 18(3), 245-248. Ovid Technologies (Wolters Kluwer Health).
    OpenAlex
  9. Pawel J Jastreboff , Margaret M Jastreboff (2003). Tinnitus Retraining Therapy for patients with tinnitus and decreased sound tolerance . Otolaryngologic Clinics of North America, 36(2), 321-336. Elsevier BV.
    OpenAlex
  10. Christian Wienbruch , Isabella Paul , Nathan Weisz , Thomas Elbert , Larry E. Roberts (2006). Frequency organization of the 40-Hz auditory steady-state response in normal hearing and in tinnitus . NeuroImage, 33(1), 180-194. Elsevier BV.
    OpenAlex
  11. Arjan Schröder , Rosanne van Diepen , Ali Mazaheri , Diamantis Petropoulos-Petalas , Vicente Soto de Amesti , Nienke Vulink et al. (2014). Diminished N1 Auditory Evoked Potentials to Oddball Stimuli in Misophonia Patients . Frontiers in Behavioral Neuroscience, 8, 123-123. Frontiers Media SA.
    OpenAlex
  12. Tony W. Wilson , Donald C. Rojas , Martin L. Reite , Peter D. Teale , Sally J. Rogers (2007). Children and Adolescents with Autism Exhibit Reduced MEG Steady-State Gamma Responses . Biological Psychiatry, 62(3), 192-197. Elsevier BV.
    OpenAlex
  13. Yuelu Liu , Haiqing Huang , Menton McGinnis-Deweese , Andreas Keil , Mingzhou Ding (2012). Neural Substrate of the Late Positive Potential in Emotional Processing . The Journal of Neuroscience, 32(42), 14563-14572. Society for Neuroscience.
    OpenAlex
  14. Daniel M. Rasetshwane , Andrea C. Trevino , Jessa N. Gombert , Lauren Liebig-Trehearn , Judy G. Kopun , Walt Jesteadt et al. (2015). Categorical loudness scaling and equal-loudness contours in listeners with normal hearing and hearing loss . The Journal of the Acoustical Society of America, 137(4), 1899-1913. Acoustical Society of America (ASA).
    OpenAlex
  15. T. C. O. Fonseca , M. A. R. Ferreira , H. S. Migon (2008). Objective Bayesian analysis for the Student-t regression model . Biometrika, 95(2), 325-333. Oxford University Press (OUP).
    OpenAlex
  16. F. Perrin , J. Pernier , O. Bertrand , J.F. Echallier (1989). Spherical splines for scalp potential and current density mapping . Electroencephalography and Clinical Neurophysiology, 72(2), 184-187. Elsevier BV.
    OpenAlex
  17. Alan E. Hendrickson , Paul Owen White (1964). PROMAX: A QUICK METHOD FOR ROTATION TO OBLIQUE SIMPLE STRUCTURE . British Journal of Statistical Psychology, 17(1), 65-70. Wiley.
    OpenAlex
  18. Benjamin D. Auerbach , Paulo V. Rodrigues , Richard J. Salvi (2014). Central Gain Control in Tinnitus and Hyperacusis . Frontiers in Neurology, 5(6), 206. Frontiers Media SA.
    OpenAlex
  19. Lauri Parkkonen , Nobuya Fujiki , Jyrki P. Mäkelä (2009). Sources of auditory brainstem responses revisited: Contribution by magnetoencephalography . Human Brain Mapping, 30(6), 1772-1782. Wiley.
    OpenAlex
  20. Olivier Boucher , Christine Turgeon , Sara Champoux , Lucie Ménard , Isabelle Rouleau , Maryse Lassonde et al. (2015). Hyperacusis following unilateral damage to the insular cortex: A three-case report . Brain Research, 1606, 102-112. Elsevier BV.
    OpenAlex
  21. Curtis J. Billings , Kelly L. Tremblay , Pamela E. Souza , Malcolm A. Binns (2007). Effects of Hearing Aid Amplification and Stimulus Intensity on Cortical Auditory Evoked Potentials . Audiology and Neurotology, 12(4), 234-246. S. Karger AG.
    OpenAlex
  22. Yula C. Serpanos , Honor OʼMalley , Judith S. Gravel (1997). The Relationship between Loudness Intensity Functions and the Click-ABR Wave V Latency . Ear and Hearing, 18(5), 409-419. Ovid Technologies (Wolters Kluwer Health).
    OpenAlex
  23. Robert C. MacCallum , Mary Roznowski , Lawrence B. Necowitz (1992). Model modifications in covariance structure analysis: The problem of capitalization on chance. Psychological Bulletin, 111(3), 490-504. American Psychological Association (APA).
    OpenAlex
  24. Nancy K Squires , Kenneth C Squires , Steven A Hillyard (1975). Two varieties of long-latency positive waves evoked by unpredictable auditory stimuli in man . Electroencephalography and Clinical Neurophysiology, 38(4), 387-401. Elsevier BV.
    OpenAlex
  25. E. Diesch , M. Andermann , H. Flor , A. Rupp (2010). Interaction among the components of multiple auditory steady-state responses: enhancement in tinnitus patients, inhibition in controls . Neuroscience, 167(2), 540-553. Elsevier BV.
    OpenAlex
  26. John L. Horn (1965). A Rationale and Test for the Number of Factors in Factor Analysis . Psychometrika, 30(2), 179-185. Cambridge University Press (CUP).
    OpenAlex
  27. Arnaud Lanoue , Vincent Burlat , Ulrich Schurr , Ursula S.R. Röse (2010). Induced root-secreted phenolic compounds as a belowground plant defense . Plant Signaling & Behavior, 5(8), 1037-1038. Informa UK Limited.
    OpenAlex
  28. Joseph Dien (2012). Applying Principal Components Analysis to Event-Related Potentials: A Tutorial . Developmental Neuropsychology, 37(6), 497-517. Informa UK Limited.
    OpenAlex
  29. Jianwen Wendy Gu , Barbara S. Herrmann , Robert A. Levine , Jennifer R. Melcher (2012). Brainstem Auditory Evoked Potentials Suggest a Role for the Ventral Cochlear Nucleus in Tinnitus . Journal of the Association for Research in Otolaryngology, 13(6), 819-833. Springer Science and Business Media LLC.
    OpenAlex
  30. Jianwen Wendy Gu , Christopher F. Halpin , Eui-Cheol Nam , Robert A. Levine , Jennifer R. Melcher (2010). Tinnitus, Diminished Sound-Level Tolerance, and Elevated Auditory Activity in Humans With Clinically Normal Hearing Sensitivity . Journal of Neurophysiology, 104(6), 3361-3370. American Physiological Society.
    OpenAlex
  31. Anthony J. Bell , Terrence J. Sejnowski (1995). An Information-Maximization Approach to Blind Separation and Blind Deconvolution . Neural Computation, 7(6), 1129-1159. MIT Press.
    OpenAlex
  32. JOHN B SAUNDERS , OLAF G. AASLAND , THOMAS F. BABOR , JUAN R. DE LA FUENTE , MARCUS GRANT (1993). Development of the Alcohol Use Disorders Identification Test (AUDIT): WHO Collaborative Project on Early Detection of Persons with Harmful Alcohol Consumption‐II . Addiction, 88(6), 791-804. Wiley.
    OpenAlex
  33. Andrew Gelman , John Carlin (2014). Beyond Power Calculations . Perspectives on Psychological Science, 9(6), 641-651. SAGE Publications.
    OpenAlex
  34. Joseph Dien , Kevin M. Spencer , Emanuel Donchin (2004). Parsing the late positive complex: Mental chronometry and the ERP components that inhabit the neighborhood of the P300 . Psychophysiology, 41(5), 665-678. Wiley.
    OpenAlex
  35. P. Duhamel , M. Vetterli (1990). Fast fourier transforms: A tutorial review and a state of the art . Signal Processing, 19(4), 259-299. Elsevier BV.
    OpenAlex
  36. Javier Lopez-Calderon , Steven J. Luck (2014). ERPLAB: an open-source toolbox for the analysis of event-related potentials . Frontiers in Human Neuroscience, 8, 213-213. Frontiers Media SA.
    OpenAlex
  37. Arnaud Delorme , Scott Makeig (2004). EEGLAB: an open source toolbox for analysis of single-trial EEG dynamics including independent component analysis . Journal of Neuroscience Methods, 134(1), 9-21. Elsevier BV.
    OpenAlex
  38. Risto Näätänen , Terence Picton (1987). The N1 Wave of the Human Electric and Magnetic Response to Sound: A Review and an Analysis of the Component Structure . Psychophysiology, 24(4), 375-425. Wiley.
    OpenAlex
  39. Denny Borsboom (2006). The Attack of the Psychometricians . Psychometrika, 71(3), 425-440. Cambridge University Press (CUP).
    OpenAlex
  40. K. M. Dunn (2004). Patterns of Consent in Epidemiologic Research: Evidence from Over 25,000 Responders . American Journal of Epidemiology, 159(11), 1087-1094. Oxford University Press (OUP).
    OpenAlex
  41. Eric-Jan Wagenmakers , Ruud Wetzels , Denny Borsboom , Han L. J. van der Maas (2011). Why psychologists must change the way they analyze their data: The case of psi: Comment on Bem (2011). Journal of Personality and Social Psychology, 100(3), 426-432. American Psychological Association (APA).
    Type: Article DOI: 10.1037/a0022790 OpenAlex: https://openalex.org/W2169244873
    OpenAlex
  42. J. Christopher Edgar , Charles L. Fisk 4th , Song Liu , Juhi Pandey , John D. Herrington , Robert T. Schultz et al. (2016). Translating Adult Electrophysiology Findings to Younger Patient Populations: Difficulty Measuring 40-Hz Auditory Steady-State Responses in Typically Developing Children and Children with Autism Spectrum Disorder . Developmental Neuroscience, 38(1), 1-14. S. Karger AG.
    OpenAlex
  43. Geneviève Laumen , Alexander T. Ferber , Georg M. Klump , Daniel J. Tollin (2016). The Physiological Basis and Clinical Use of the Binaural Interaction Component of the Auditory Brainstem Response . Ear & Hearing, 37(5), e276-e290. Ovid Technologies (Wolters Kluwer Health).
    OpenAlex
  44. Alan D. Legatt (2015). Electrophysiologic auditory tests . Handbook of Clinical Neurology, 129, 289-311. Elsevier.
    OpenAlex
  45. D L Woods (1995). The component structure of the N1 wave of the human auditory evoked potential. Electroencephalogr Clin Neurophysiol Suppl, 44, 102.
    Type: Article OpenAlex: https://openalex.org/W2425514159
    OpenAlex
  46. Tingkai Cui , Peizhong Peter Wang , Shengxin Liu , Xin Zhang (2017). P300 amplitude and latency in autism spectrum disorder: a meta-analysis . European Child & Adolescent Psychiatry, 26(2), 177-190. Springer Science and Business Media LLC.
    OpenAlex
  47. Johan Paulin , Linus Andersson , Steven Nordin (2016). Characteristics of hyperacusis in the general population . Noise and Health, 18(83), 178. Medknow.
    OpenAlex
  48. Maaike Van Eeckhoutte , Jan Wouters , Tom Francart (2016). Auditory steady-state responses as neural correlates of loudness growth . Hearing Research, 342, 58-68. Elsevier BV.
    OpenAlex
  49. R Core Team (2026). R: A Language and Environment for Statistical Computing . R Foundation for Statistical Computing.
    OpenAlex
  50. Sukhbinder Kumar , Olana Tansley-Hancock , William Sedley , Joel S. Winston , Martina F. Callaghan , Micah Allen et al. (2017). The Brain Basis for Misophonia . Current Biology, 27(4), 527-533. Elsevier BV.
    OpenAlex
  51. Peggy Korczak , LaGuinn Sherlock , Monica Hawley , Susan Gold , Craig Formby (2017). Auditory Brainstem and Middle Latency Responses Measured Pre- and Posttreatment for Hyperacusic Hearing-Impaired Persons Successfully Treated to Improve Sound Tolerance and to Expand the Dynamic Range for Loudness: Case Evidence . Seminars in Hearing, 38(01), 071-093. Georg Thieme Verlag KG.
    OpenAlex
  52. Rachel Loomes , Laura Hull , Will Mandy (2017). What Is the Male-to-Female Ratio in Autism Spectrum Disorder? A Systematic Review and Meta-Analysis . Journal of the American Academy of Child & Adolescent Psychiatry, 56(6), 466-474. Elsevier BV.
    OpenAlex
  53. Uzma S. Wilson , Kate M. Sadler , Kenneth E. Hancock , John J. Guinan , Jeffery T. Lichtenhan (2017). Efferent inhibition strength is a physiological correlate of hyperacusis in children with autism spectrum disorder . Journal of Neurophysiology, 118(2), 1164-1172. American Physiological Society.
    OpenAlex
  54. Darin R. Brown , James F. Cavanagh (2017). The sound and the fury: Late positive potential is sensitive to sound affect . Psychophysiology, 54(12), 1812-1825. Wiley.
    OpenAlex
  55. Paul-Christian Bürkner (2017). brms: An R Package for Bayesian Multilevel Models Using Stan . Journal of Statistical Software, 80(1), 1. Foundation for Open Access Statistic.
    OpenAlex
  56. Oren Miron , Andrew L. Beam , Isaac S. Kohane (2018). Auditory brainstem response in infants and children with autism spectrum disorder: A meta‐analysis of wave V . Autism Research, 11(2), 355-363. Wiley.
    Type: Article DOI: 10.1002/aur.1886 OpenAlex: https://openalex.org/W2766624486
    OpenAlex
  57. Maaike Van Eeckhoutte , Jan Wouters , Tom Francart (2018). Electrically-evoked auditory steady-state responses as neural correlates of loudness growth in cochlear implant users . Hearing Research, 358, 22-29. Elsevier BV.
    OpenAlex
  58. Brian A. Nosek , Charles R. Ebersole , Alexander C. DeHaven , David T. Mellor (2018). The preregistration revolution . Proceedings of the National Academy of Sciences, 115(11), 2600-2606. National Academy of Sciences.
    OpenAlex
  59. Naomi F. Bramhall , Dawn Konrad-Martin , Garnett P. McMillan (2018). Tinnitus and Auditory Perception After a History of Noise Exposure: Relationship to Auditory Brainstem Response Measures . Ear & Hearing, 39(5), 881-894. Ovid Technologies (Wolters Kluwer Health).
    OpenAlex
  60. Nóra Bunford , Autumn Kujawa , Kate D. Fitzgerald , Christopher S. Monk , K. Luan Phan (2018). Convergence of BOLD and ERP measures of neural reactivity to emotional faces in children and adolescents with and without anxiety disorders . Biological Psychology, 134, 9-19. Elsevier BV.
    OpenAlex
  61. Nicole M. Talge , Brooke M. Tudor , Paul R. Kileny (2018). Click‐evoked auditory brainstem responses and autism spectrum disorder: A meta‐analytic review . Autism Research, 11(6), 916-927. Wiley.
    Type: Article DOI: 10.1002/aur.1946 OpenAlex: https://openalex.org/W2795353823
    OpenAlex
  62. John K. Kruschke (2018). Rejecting or Accepting Parameter Values in Bayesian Estimation . Advances in Methods and Practices in Psychological Science, 1(2), 270-280. SAGE Publications.
    OpenAlex
  63. Martin Pienkowski (2019). Rationale and Efficacy of Sound Therapies for Tinnitus and Hyperacusis . Neuroscience, 407, 120-134. Elsevier BV.
    OpenAlex
  64. Benjamin D. Auerbach , Kelly Radziwon , Richard Salvi (2019). Testing the Central Gain Model: Loudness Growth Correlates with Central Auditory Gain Enhancement in a Rodent Model of Hyperacusis . Neuroscience, 407, 93-107. Elsevier BV.
    OpenAlex
  65. Luke A. Shaheen , M. Charles Liberman (2018). Cochlear Synaptopathy Changes Sound-Evoked Activity Without Changing Spontaneous Discharge in the Mouse Inferior Colliculus . Frontiers in Systems Neuroscience, 12, 59-59. Frontiers Media SA.
    OpenAlex
  66. Luca Pion-Tonachini , Ken Kreutz-Delgado , Scott Makeig (2019). ICLabel: An automated electroencephalographic independent component classifier, dataset, and website . NeuroImage, 198, 181-197. Elsevier BV.
    OpenAlex
  67. Andreas Pedroni , Amirreza Bahreini , Nicolas Langer (2019). Automagic: Standardized preprocessing of big EEG data . NeuroImage, 200, 460-473. Elsevier BV.
    OpenAlex
  68. Boris Kotchoubey , Yuri G. Pavlov (2019). A Signature of Passivity? An Explorative Study of the N3 Event- Related Potential Component in Passive Oddball Tasks . Frontiers in Neuroscience, 13, 365-365. Frontiers Media SA.
    OpenAlex
  69. Brian A. Nosek , Emorie D. Beck , Lorne Campbell , Jessica K. Flake , Tom E. Hardwicke , David T. Mellor et al. (2019). Preregistration Is Hard, And Worthwhile . Trends in Cognitive Sciences, 23(10), 815-818. Elsevier BV.
    OpenAlex
  70. Adam Sheppard , Christina Stocking , Massimo Ralli , Richard Salvi (2020). A review of auditory gain, low-level noise and sound therapy for tinnitus and hyperacusis . International Journal of Audiology, 59(1), 5-15. Informa UK Limited.
    OpenAlex
  71. Brandon Frank , Meaghan Roszyk , Landon Hurley , Loreta Drejaj , Dean McKay (2020). Inattention in misophonia: Difficulties achieving and maintaining alertness . Journal of Clinical and Experimental Neuropsychology, 42(1), 66-75. Informa UK Limited.
    OpenAlex
  72. Florian Scharf , Steffen Nestler (2019). A Comparison of Simple Structure Rotation Criteria in Temporal Exploratory Factor Analysis for Event-Related Potential Data . Methodology, 15(Supplement 1), 43-60. Hogrefe Publishing Group.
    OpenAlex
  73. Alain de Cheveigné (2020). ZapLine: A simple and effective method to remove power line artifacts . NeuroImage, 207, 116356. Elsevier BV.
    OpenAlex
  74. Daniel M.R. Silva , Rui Rothe-Neves , Danilo B. Melges (2020). Long-latency event-related responses to vowels: N1-P2 decomposition by two-step principal component analysis . International Journal of Psychophysiology, 148, 93-102. Elsevier BV.
    OpenAlex
  75. D HomanMatthew , GelmanAndrew (2014). The No-U-turn sampler . Journal of Machine Learning Research, 15(47), 1593.
    Type: Article DOI: 10.5555/2627435.2638586 OpenAlex: https://openalex.org/W2997206660 Crossref: introuvable DataCite: introuvable
    OpenAlex
  76. Paul‐Christian Bürkner , Emmanuel Charpentier (2020). Modelling monotonic effects of ordinal predictors in Bayesian regression models . British Journal of Mathematical and Statistical Psychology, 73(3), 420-451. Wiley.
    OpenAlex
  77. Yasuki Ono , Kiwamu Kudoh , Takashi Ikeda , Tetsuya Takahashi , Yuko Yoshimura , Yoshio Minabe et al. (2020). Auditory steady‐state response at 20 Hz and 40 Hz in young typically developing children and children with autism spectrum disorder . Psychiatry and Clinical Neurosciences, 74(6), 354-361. Wiley.
    OpenAlex
  78. Greg Hajcak , Dan Foti (2020). Significance?... Significance! Empirical, methodological, and theoretical connections between the late positive potential and P300 as neural responses to stimulus significance: An integrative review . Psychophysiology, 57(7), e13570-e13570. Wiley.
    OpenAlex
  79. R. A. Seymour , G. Rippon , G. Gooding-Williams , Paul F. Sowman , K. Kessler (2020). Reduced auditory steady state responses in autism spectrum disorder . Molecular Autism, 11(1), 56-56. Springer Science and Business Media LLC.
    OpenAlex
  80. Richard Salvi , Benjamin D. Auerbach , Condon Lau , Yu-Chen Chen , Senthilvelan Manohar , Xiaopeng Liu et al. (2020). Functional Neuroanatomy of Salicylate- and Noise-Induced Tinnitus and Hyperacusis . Dans Current Topics in Behavioral Neurosciences (pp. 133-160). Springer International Publishing.
    Type: Chapitre de livre DOI: 10.1007/7854_2020_156 OpenAlex: https://openalex.org/W3042178953
    OpenAlex
  81. Fan-Gang Zeng (2020). Tinnitus and hyperacusis: central noise, gain and variance . Current Opinion in Physiology, 18, 123-129. Elsevier BV.
    OpenAlex
  82. Bethany Adams , Magdalena Sereda , Amanda Casey , Peter Byrom , David Stockdale , Derek J. Hoare (2021). A Delphi survey to determine a definition and description of hyperacusis by clinician consensus . International Journal of Audiology, 60(8), 607-613. Informa UK Limited.
    OpenAlex
  83. E.A. Koops , P. van Dijk (2021). Hyperacusis in tinnitus patients relates to enlarged subcortical and cortical responses to sound except at the tinnitus frequency . Hearing Research, 401, 108158. Elsevier BV.
    OpenAlex
  84. T. A. Stroganova , K. S. Komarov , O. V. Sysoeva , D. E. Goiaeva , T. S. Obukhova , T. M. Ovsiannikova et al. (2020). Left hemispheric deficit in the sustained neuromagnetic response to periodic click trains in children with ASD . Molecular Autism, 11(1), 100-100. Springer Science and Business Media LLC.
    OpenAlex
  85. Kris Boudt , Jonathan Cornelissen , Christophe Croux (2012). The Gaussian rank correlation estimator: robustness properties . Statistics and Computing, 22(2), 471-483. Springer Science and Business Media LLC.
    OpenAlex
  86. Fatma Refat , Jakob Wertz , Pauline Hinrichs , Uwe Klose , Hesham Samy , Rafeek Mohamed Abdelkader et al. (2021). Co-occurrence of Hyperacusis Accelerates With Tinnitus Burden Over Time and Requires Medical Care . Frontiers in Neurology, 12, 627522-627522. Frontiers Media SA.
    OpenAlex
  87. Sukhbinder Kumar , Pradeep Dheerendra , Mercede Erfanian , Ester Benzaquén , William Sedley , Phillip E. Gander et al. (2021). The Motor Basis for Misophonia . The Journal of Neuroscience, 41(26), 5762-5770. Society for Neuroscience.
    OpenAlex
  88. Benedikt Hofmeier , Jakob Wertz , Fatma Refat , Pauline Hinrichs , Jörg Saemisch , Wibke Singer et al. (2021). Functional biomarkers that distinguish between tinnitus with and without hyperacusis . Clinical and Translational Medicine, 11(5), e378-e378. Wiley.
    Type: Article DOI: 10.1002/ctm2.378 OpenAlex: https://openalex.org/W3164866957
    OpenAlex
  89. Adriana L. Smit , Inge Stegeman , Robert H. Eikelboom , David M. Baguley , Rebecca J. Bennett , Susan Tegg‐Quinn et al. (2021). Prevalence of Hyperacusis and Its Relation to Health: The Busselton Healthy Ageing Study . The Laryngoscope, 131(12), E2887-E2896. Wiley.
    OpenAlex
  90. Luke H. Schneider , Elizabeth J. Pawluk , Irena Milosevic , Philippe Shnaider , Karen Rowa , Martin M. Antony et al. (2022). The Diagnostic Assessment Research Tool in action: A preliminary evaluation of a semistructured diagnostic interview for DSM-5 disorders. Psychological Assessment, 34(1), 21-29. American Psychological Association (APA).
    OpenAlex
  91. Nicole M. Talge , Melanie Adkins , Paul R. Kileny , Isabella Frownfelter (2022). Click-evoked auditory brainstem responses and autism spectrum disorder: a meta-analytic investigation of disorder specificity . Pediatric Research, 92(1), 40-46. Springer Science and Business Media LLC.
    OpenAlex
  92. Christopher D. Chambers , Loukia Tzavella (2021). The past, present and future of Registered Reports . Nature Human Behaviour, 6(1), 29-42. Springer Science and Business Media LLC.
    OpenAlex
  93. Florian Scharf , Andreas Widmann , Carolina Bonmassar , Nicole Wetzel (2022). A tutorial on the use of temporal principal component analysis in developmental ERP research – Opportunities and challenges . Developmental Cognitive Neuroscience, 54, 101072. Elsevier BV.
    OpenAlex
  94. Mengting Liu , Jinsheng Dai , Mo Zhou , Jinfeng Liu , Xinying Ge , Ningyu Wang et al. (2022). Mini-review: The neural circuits of the non-lemniscal inferior colliculus . Neuroscience Letters, 776, 136567. Elsevier BV.
    OpenAlex
  95. Charlotte Bigras , Bérangère Villatte , Victoria Duda , Sylvie Hébert (2023). The electrophysiological markers of hyperacusis: a scoping review . International Journal of Audiology, 62(6), 489-499. Informa UK Limited.
    OpenAlex
  96. James A. Henry , Sarah M. Theodoroff , Catherine Edmonds , Idalisse Martinez , Paula J. Myers , Tara L. Zaugg et al. (2022). Sound Tolerance Conditions (Hyperacusis, Misophonia, Noise Sensitivity, and Phonophobia): Definitions and Clinical Management . American Journal of Audiology, 31(3), 513-527. American Speech Language Hearing Association.
    OpenAlex
  97. Kelly N. Jahn (2022). Clinical and investigational tools for monitoring noise-induced hyperacusis . The Journal of the Acoustical Society of America, 152(1), 553-566. Acoustical Society of America (ASA).
    OpenAlex
  98. Andrada D. Neacsiu , Victoria Szymkiewicz , Jeffrey T. Galla , Brenden Li , Yashaswini Kulkarni , Cade W. Spector (2022). The neurobiology of misophonia and implications for novel, neuroscience-driven interventions . Frontiers in Neuroscience, 16, 893903-893903. Frontiers Media SA.
    OpenAlex
  99. Murat Erinc , Ufuk Derinsu (2022). Behavioural and Electrophysiological Evaluation of Loudness Growth in Clinically Normal Hearing Tinnitus Patients with and without Hyperacusis . Audiology and Neurotology, 27(6), 469-477. S. Karger AG.
    OpenAlex
  100. Richard Salvi , Guang-Di Chen , Senthilvelan Manohar (2022). Hyperacusis: Loudness intolerance, fear, annoyance and pain . Hearing Research, 426, 108648. Elsevier BV.
    OpenAlex
  101. Vardan Arutiunian , Giorgio Arcara , Irina Buyanova , Elizaveta Davydova , Darya Pereverzeva , Alexander Sorokin et al. (2023). Neuromagnetic 40 Hz Auditory Steady-State Response in the left auditory cortex is related to language comprehension in children with Autism Spectrum Disorder . Progress in Neuro-Psychopharmacology and Biological Psychiatry, 122, 110690. Elsevier BV.
    OpenAlex
  102. Sajana Aryal , Prashanth Prabhu (2023). Understanding misophonia from an audiological perspective: a systematic review . European Archives of Oto-Rhino-Laryngology, 280(4), 1529-1545. Springer Science and Business Media LLC.
    OpenAlex
  103. Sven Bölte , Janina Neufeld , Peter B. Marschik , Zachary J. Williams *Auteur·ice autiste. En savoir plus… , Louise Gallagher , Meng-Chuan Lai (2023). Sex and gender in neurodevelopmental conditions . Nature Reviews Neurology, 19(3), 136-159. Springer Science and Business Media LLC.
    OpenAlex
  104. Seppo P. Ahlfors , Steven Graham , Hari Bharadwaj , Fahimeh Mamashli , Sheraz Khan , Robert M. Joseph et al. (2024). No Differences in Auditory Steady-State Responses in Children with Autism Spectrum Disorder and Typically Developing Children . Journal of Autism and Developmental Disorders, 54(5), 1947-1960. Springer Science and Business Media LLC.
    OpenAlex
  105. Pawel J. Jastreboff , Margaret M. Jastreboff (2023). The neurophysiological approach to misophonia: Theory and treatment . Frontiers in Neuroscience, 17, 895574-895574. Frontiers Media SA.
    OpenAlex
  106. Anne Möllmann , Nina Heinrichs , Lisa Illies , Nadine Potthast , Hanna Kley (2023). The central role of symptom severity and associated characteristics for functional impairment in misophonia . Frontiers in Psychiatry, 14, 1112472-1112472. Frontiers Media SA.
    OpenAlex
  107. Ria Vormbrock , Maximilian Bruchmann , Maren-Isabel Wolf , Thomas Straube , Sebastian Schindler (2024). Effects of emotion on auditory ERPs are independent of manipulated target relevance. Emotion, 24(1), 39-51. American Psychological Association (APA).
    OpenAlex
  108. Sajana Aryal , Prashanth Prabhu (2023). Auditory brainstem functioning in individuals with misophonia . Journal of Otology, 18(3), 139-145. Tsinghua University Press.
    OpenAlex
  109. Nora Andermane , Mathilde Bauer , Julia Simner , Jamie Ward (2023). A symptom network model of misophonia: From heightened sensory sensitivity to clinical comorbidity . Journal of Clinical Psychology, 79(10), 2364-2387. Wiley.
    OpenAlex
  110. Eric C. Fields (2023). The P300, the LPP, context updating, and memory: What is the functional significance of the emotion-related late positive potential? International Journal of Psychophysiology, 192, 43-52. Elsevier BV.
    OpenAlex
  111. Nicolas Sommet , David L. Weissman , Nicolas Cheutin , Andrew J. Elliot (2023). How Many Participants Do I Need to Test an Interaction? Conducting an Appropriate Power Analysis and Achieving Sufficient Power to Detect an Interaction . Advances in Methods and Practices in Psychological Science, 6(3). SAGE Publications.
    OpenAlex
  112. Caroline R. Brennan , Ragnar R. Lindberg , Gibbeum Kim , Ariana A. Castro , Rafay A. Khan , Howard Berenbaum et al. (2024). Misophonia and Hearing Comorbidities in a Collegiate Population . Ear & Hearing, 45(2), 390-399. Ovid Technologies (Wolters Kluwer Health).
    OpenAlex
  113. Nina Meret Zumbrunn , David McGovern , Lorraine Boran (2023). Investigating Sound-Specific Attention Control in Mild to Moderate Misophonia Using a Modified Attention Network Test . Center for Open Science.
    Type: Prépublication DOI: 10.31234/osf.io/swpbd OpenAlex: https://openalex.org/W4387574421
    OpenAlex
  114. Joel Berger , Phillip Evan Gander , Sukhbinder Kumar (2023). A social cognition perspective on misophonia . Center for Open Science.
    Type: Prépublication DOI: 10.31234/osf.io/mb7dz OpenAlex: https://openalex.org/W4387778604
    OpenAlex
  115. Sajana Aryal , Prashanth Prabhu (2024). Auditory cortical functioning in individuals with misophonia: an electrophysiological investigation . European Archives of Oto-Rhino-Laryngology, 281(5), 2259-2273. Springer Science and Business Media LLC.
    OpenAlex
  116. Ekaterina A Yukhnovich , Kai Alter , William Sedley (2024). Distinct profiles of tinnitus and hyperacusis in intensity deviant responses and auditory evoked potentials . bioRxiv (Cold Spring Harbor Laboratory). openRxiv.
    Type: Prépublication DOI: 10.1101/2024.01.02.573726 OpenAlex: https://openalex.org/W4390649706
    OpenAlex
  117. Canavese F (2019). Congenital Torticollis (Torticollis Not Related to Trauma) Chapter 28 . edoc (University of Basel).
    Type: Prépublication DOI: 10.1007/978-3 OpenAlex: https://openalex.org/W4391285994 Crossref: introuvable DataCite: introuvable
    OpenAlex
  118. Peter E. Clayson (2024). Beyond single paradigms, pipelines, and outcomes: Embracing multiverse analyses in psychophysiology . International Journal of Psychophysiology, 197, 112311. Elsevier BV.
    OpenAlex
  119. Zahra Ghasemahmad , Saeid Mahmoudian , Daniel Gavazzi , Shohreh Jalaei , Saeid Farahani (2024). Enhanced 40 and 80 Hz Auditory Steady State Responses in Idiopathic Tinnitus . medRxiv. openRxiv.
    Type: Prépublication DOI: 10.1101/2024.03.02.24303654 OpenAlex: https://openalex.org/W4392467590
    OpenAlex
  120. Laura J. Dixon , Mary J. Schadegg , Heather L. Clark , Carey J. Sevier , Sara M. Witcraft (2024). Prevalence, phenomenology, and impact of misophonia in a nationally representative sample of U.S. adults. Journal of Psychopathology and Clinical Science, 133(5), 403-412. American Psychological Association (APA).
    OpenAlex
  121. Zachary J. Williams *Auteur·ice autiste. En savoir plus… (2024). ZPack.Bayes: R functions to perform general-purpose Bayesian estimation and hypothesis testing using brms . OSF Preprints (OSF Preprints). OSF.
    Type: Prépublication DOI: 10.17605/osf.io/9kx58 OpenAlex: https://openalex.org/W6925177184
    OpenAlex