Les personnes non autistes modulent leur rythme de parole lorsqu'elles parlent à des individus autistes

Titre original en anglais : Non-autistic persons modulate their speech rhythm while talking to autistic individuals

Daikoku, T., Kumagaya, S., Ayaya, S., & Nagai, Y. (2023). Non-autistic persons modulate their speech rhythm while talking to autistic individuals. PLOS ONE, 18(9), e0285591. https://doi.org/10.1371/journal.pone.0285591

Date de publication: 28/09/2023 Ajout dans AutiHub: 06/07/2026 Type: Article 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

La manière dont les personnes non autistes modulent leur rythme de parole lorsqu'elles parlent à des individus autistes (AUT) reste incertaine. Nous avons étudié deux types de caractéristiques phonologiques : (1) la puissance fréquentielle de chaque rythme prosodique, syllabique et phonétique et (2) l'interaction dynamique entre ces rythmes, à l'aide de la parole entre des individus AUT et neurotypiques (NT). Huit adultes diagnostiqués AUT (tous des hommes ; tranche d'âge, 24-44 ans) et huit adultes NT non autistes appariés en âge (trois femmes, cinq hommes ; tranche d'âge, 23-45 ans) ont participé à cette étude. Six répondants NT et huit répondants AUT ont été invités par l'un des deux questionneurs NT (tous deux hommes) à partager leurs expériences récentes sur 12 sujets. Nous avons inclus 87 échantillons de parole adressée aux AUT (d'un questionneur NT à un répondant AUT), 72 de parole adressée aux NT (d'un questionneur NT à un répondant NT), 74 de parole AUT (d'un répondant AUT à un questionneur NT) et 55 de parole NT (d'un répondant NT à un questionneur NT). Nous avons constaté des similitudes entre la parole AUT et la parole adressée aux AUT, ainsi qu'entre la parole NT et la parole adressée aux NT. La prosodie et les interactions entre les rythmes prosodiques, syllabiques et phonétiques étaient significativement plus faibles dans la parole adressée aux AUT et la parole AUT que dans la parole adressée aux NT et la parole NT, respectivement. La parole AUT a montré un traitement dynamique plus faible des bandes phonologiques supérieures vers les bandes inférieures (par exemple, de la prosodie vers la syllabe) que la parole NT. En outre, nous avons constaté que plus la puissance fréquentielle de la prosodie était faible chez les répondants NT et AUT, plus la puissance fréquentielle de la prosodie était faible chez les questionneurs NT. Cela suggère que les individus NT imitent spontanément les rythmes de parole de l'interlocuteur NT et AUT. Bien que l'échantillon de parole des questionneurs ne provienne que de deux individus NT, nos résultats pourraient suggérer la possibilité que les caractéristiques phonologiques d'un locuteur influencent celles de l'interlocuteur.

How non-autistic persons modulate their speech rhythm while talking to autistic (AUT) individuals remains unclear. We investigated two types of phonological characteristics: (1) the frequency power of each prosodic, syllabic, and phonetic rhythm and (2) the dynamic interaction among these rhythms using speech between AUT and neurotypical (NT) individuals. Eight adults diagnosed with AUT (all men; age range, 24-44 years) and eight age-matched non-autistic NT adults (three women, five men; age range, 23-45 years) participated in this study. Six NT and eight AUT respondents were asked by one of the two NT questioners (both men) to share their recent experiences on 12 topics. We included 87 samples of AUT-directed speech (from an NT questioner to an AUT respondent), 72 of NT-directed speech (from an NT questioner to an NT respondent), 74 of AUT speech (from an AUT respondent to an NT questioner), and 55 of NT speech (from an NT respondent to an NT questioner). We found similarities between AUT speech and AUT-directed speech, and between NT speech and NT-directed speech. Prosody and interactions between prosodic, syllabic, and phonetic rhythms were significantly weaker in AUT-directed and AUT speech than in NT-directed and NT speech, respectively. AUT speech showed weaker dynamic processing from higher to lower phonological bands (e.g. from prosody to syllable) than NT speech. Further, we found that the weaker the frequency power of prosody in NT and AUT respondents, the weaker the frequency power of prosody in NT questioners. This suggests that NT individuals spontaneously imitate speech rhythms of the NT and AUT interlocutor. Although the speech sample of questioners came from just two NT individuals, our findings may suggest the possibility that the phonological characteristics of a speaker influence those of the interlocutor.

Bibliographie citée par cette référence

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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
73
Nombre total de références citées intégrées pour cette publication.
Références citées avec un·e auteur·ice identifié·e comme autiste
1 / 73 (1,4 %)
Occurrences d’auteur·ices cité·es identifié·es comme autistes
1 / 182 (0,5 %)
Parmi les occurrences rattachées à des auteurices intégré·es à la base de données AutiHub : 1 / 14 (7,1 %). Auteurices cité·es distinct·es identifié·es comme autistes : 1 / 159 (0,6 %).
Occurrences citées rattachées à la base AutiHub
14 / 182 (7,7 %)
Auteurices cité·es distinct·es rattaché·es : 14 / 159 (8,8 %)
Occurrences rattachées, non identifiées comme autistes
13 / 14 (92,9 %)
Parmi les seules occurrences rattachées. Sur l’ensemble des occurrences d’auteurices cité·es : 13 / 182 (7,1 %). Auteurices cité·es distinct·es rattaché·es, non identifié·es comme autistes : 13 / 14 (92,9 %).
  1. Martha Davis (1982). Interaction Rhythms: Periodicity in Communicative Behavior .
    Type: Livre OpenAlex: https://openalex.org/W580990616
    OpenAlex
  2. John M. Levis (2018). Rhythm and Intelligibility . Dans Intelligibility [Oral Communication], and the Teaching of Pronunciation (pp. 127-149). Cambridge University Press.
    Type: Chapitre de livre DOI: 10.1017/9781108241564.009 OpenAlex: https://openalex.org/W3141240771
    Crossref OpenAlex OpenCitations
  3. Akio Wakabayashi , Yoshikuni Tojo , Simon Baron-Cohen , Sally Wheelwright (2004). The Autism-Spectrum Quotient (AQ) Japanese versions: Evidence from high-functioning clinical group and normal adults . The Japanese journal of psychology, 75(1), 78-84. The Japanese Psychological Association.
    Crossref OpenAlex OpenCitations
  4. Elisabeth Selkirk (1984). Phonology and Syntax: The Relation between Sound and Structure .
    Type: Livre OpenAlex: https://openalex.org/W1504955803
    Crossref OpenAlex
  5. Jacques Mehler , Peter Jusczyk , Ghislaine Lambertz , Nilofar Halsted , Josiane Bertoncini , Claudine Amiel-Tison (1988). A precursor of language acquisition in young infants . Cognition, 29(2), 143-178. Elsevier BV.
    Crossref OpenAlex
  6. Victoria Leong , Usha Goswami (2015). Acoustic-Emergent Phonology in the Amplitude Envelope of Child-Directed Speech . PLOS ONE, 10(12), e0144411. Public Library of Science (PLoS).
    Crossref OpenAlex OpenCitations
  7. Hyojin Park , Robin A.A. Ince , Philippe G. Schyns , Gregor Thut , Joachim Gross (2015). Frontal Top-Down Signals Increase Coupling of Auditory Low-Frequency Oscillations to Continuous Speech in Human Listeners . Current Biology, 25(12), 1649-1653. Elsevier BV.
    Crossref OpenAlex OpenCitations
  8. Aniruddh D. Patel (2008). A neurobiological strategy for exploring links between emotion recognition in music and speech . Behavioral and Brain Sciences, 31(5), 589-590. Cambridge University Press (CUP).
    Crossref OpenAlex OpenCitations
  9. Julia Hirschberg (2002). Communication and prosody: Functional aspects of prosody . Speech Communication, 36(1-2), 31-43. Elsevier BV.
    Crossref OpenAlex OpenCitations
  10. Daniel C. Richardson , Rick Dale , Kevin Shockley (2008). Synchrony and swing in conversation: coordination, temporal dynamics, and communication . Dans Embodied Communication in Humans and Machines. (pp. 75-94). Oxford University Press.
    Crossref OpenAlex OpenCitations
  11. Julia Trippe , Melissa Baese-Berk (2019). A prosodic profile of American Aviation English . English for Specific Purposes, 53, 30-46. Elsevier BV.
    Crossref OpenAlex OpenCitations
  12. Kurt Hammerschmidt , Uwe Jürgens (2007). Acoustical Correlates of Affective Prosody . Journal of Voice, 21(5), 531-540. Elsevier BV.
    Crossref OpenAlex OpenCitations
  13. Bruce Hayes (1995). Metrical Stress Theory: Principles and Case Studies .
    Type: Livre OpenAlex: https://openalex.org/W1608707468
    Crossref OpenAlex
  14. Taffeta M. Elliott , Frédéric E. Theunissen (2009). The Modulation Transfer Function for Speech Intelligibility . PLoS Computational Biology, 5(3), e1000302. Public Library of Science (PLoS).
    Crossref OpenAlex OpenCitations
  15. Judith E. Pegg , Janet F. Werker , Peter J. McLeod (1992). Preference for infant-directed over adult-directed speech: Evidence from 7-week-old infants . Infant Behavior and Development, 15(3), 325-345. Elsevier BV.
    Crossref OpenAlex OpenCitations
  16. Robin R. Vallacher , Andrzej Nowak (1994). Dynamical Systems in Social Psychology .
    Type: Livre OpenAlex: https://openalex.org/W1654204586
    OpenAlex
  17. L Kanner (1968). Autistic disturbances of affective contact. Acta Paedopsychiatr, 35(4), 100.
    Type: Article OpenAlex: https://openalex.org/W2192638454
    Crossref OpenAlex
  18. G Gergely , J S Watson (1996). The social biofeedback theory of parental affect-mirroring: the development of emotional self-awareness and self-control in infancy. Int J Psychoanal, 77, 1181.
    Type: Article OpenAlex: https://openalex.org/W1672372155
    Crossref OpenAlex
  19. Catherine Lord , Mayada Elsabbagh , Gillian Baird , Jeremy Veenstra‐VanderWeele (2018). Autism spectrum disorder . The Lancet, 392(10146), 508-520. Elsevier BV.
    Crossref OpenAlex OpenCitations
  20. Michael Natale (1975). Convergence of mean vocal intensity in dyadic communication as a function of social desirability. Journal of Personality and Social Psychology, 32(5), 790-804. American Psychological Association (APA).
    Crossref OpenAlex OpenCitations
  21. J. R. Brasic , A. Mankodi (1999). Asperger's Syndrome: A Guide for Parents and Professionals . Neurology, 52(5), 1112-1112. Ovid Technologies (Wolters Kluwer Health).
    OpenAlex
  22. LE Boyd (2016). In. In., 4872.
    Type: Autre
    Crossref
  23. Adam Kendon (1970). Movement coordination in social interaction: Some examples described . Acta Psychologica, 32(2), 101-125. Elsevier BV.
    Crossref OpenAlex OpenCitations
  24. MS Garnett (1998). Asperger’s Syndrome. A Guide for Parents and Professionals . Asperger’s Syndrome. A Guide for Parents and Professionals.
    Type: Autre
    Crossref
  25. W. S. CONDON , W. D. OGSTON (1966). SOUND FILM ANALYSIS OF NORMAL AND PATHOLOGICAL BEHAVIOR PATTERNS . The Journal of Nervous and Mental Disease, 143(4), 338-347. Ovid Technologies (Wolters Kluwer Health).
    Crossref OpenAlex OpenCitations
  26. Rhea Paul , Lawrence D. Shriberg , Jane McSweeny , Domenic Cicchetti , Ami Klin , Fred Volkmar (2005). Brief Report: Relations between Prosodic Performance and Communication and Socialization Ratings in High Functioning Speakers with Autism Spectrum Disorders . Journal of Autism and Developmental Disorders, 35(6), 861-869. Springer Science and Business Media LLC.
    Crossref OpenAlex OpenCitations
  27. Ehud Ahissar , Srikantan Nagarajan , Merav Ahissar , Athanassios Protopapas , Henry Mahncke , Michael M. Merzenich (2001). Speech comprehension is correlated with temporal response patterns recorded from auditory cortex . Proceedings of the National Academy of Sciences, 98(23), 13367-13372. National Academy of Sciences.
    Crossref OpenAlex OpenCitations
  28. Peter Lakatos , Ankoor S. Shah , Kevin H. Knuth , Istvan Ulbert , George Karmos , Charles E. Schroeder (2005). An Oscillatory Hierarchy Controlling Neuronal Excitability and Stimulus Processing in the Auditory Cortex . Journal of Neurophysiology, 94(3), 1904-1911. American Physiological Society.
    Crossref OpenAlex OpenCitations
  29. Victoria Leong , Marina Kalashnikova , Denis Burnham , Usha Goswami (2017). The Temporal Modulation Structure of Infant-Directed Speech . Open Mind, 1(2), 78-90. MIT Press.
    Crossref OpenAlex OpenCitations
  30. González Moreno, Andrés Santiago (2013). Diagnostic and Statistical Manual of Mental Disorders . American Psychiatric Association.
    Crossref OpenAlex OpenCitations
  31. Kevin Shockley , Marie-Vee Santana , Carol A. Fowler (2003). Mutual interpersonal postural constraints are involved in cooperative conversation. Journal of Experimental Psychology: Human Perception and Performance, 29(2), 326-332. American Psychological Association (APA).
    Crossref OpenAlex OpenCitations
  32. Huan Luo , David Poeppel (2007). Phase Patterns of Neuronal Responses Reliably Discriminate Speech in Human Auditory Cortex . Neuron, 54(6), 1001-1010. Elsevier BV.
    Crossref OpenAlex OpenCitations
  33. Erwan Pépiot (2014). Male and female speech: a study of mean f0, f0 range, phonation type and speech rate in Parisian French and American English speakers . Speech Prosody 2014, 305-309. ISCA.
    Crossref OpenAlex OpenCitations
  34. Elisabetta Palagi , Ivan Norscia , Elisa Demuru (2014). Yawn contagion in humans and bonobos: emotional affinity matters more than species . PeerJ, 2, e519. PeerJ.
    Crossref OpenAlex OpenCitations
  35. M. Uther , M.A. Knoll , D. Burnham (2007). Do you speak E-NG-L-I-SH? A comparison of foreigner- and infant-directed speech . Speech Communication, 49(1), 2-7. Elsevier BV.
    Crossref OpenAlex OpenCitations
  36. L. Fontolan , B. Morillon , C. Liegeois-Chauvel , Anne-Lise Giraud (2014). The contribution of frequency-specific activity to hierarchical information processing in the human auditory cortex . Nature Communications, 5(1), 4694. Springer Science and Business Media LLC.
    Crossref OpenAlex OpenCitations
  37. Usha Goswami (2019). A neural oscillations perspective on phonological development and phonological processing in developmental dyslexia . Language and Linguistics Compass, 13(5), e12328. Wiley.
    Crossref OpenAlex OpenCitations
  38. Usha Goswami (2019). Speech rhythm and language acquisition: an amplitude modulation phase hierarchy perspective . Annals of the New York Academy of Sciences, 1453(1), 67-78. Wiley.
    Crossref OpenAlex OpenCitations
  39. Tatsuya Daikoku , Usha Goswami (2022). Hierarchical amplitude modulation structures and rhythm patterns: Comparing Western musical genres, song, and nature sounds to Babytalk . PLOS ONE, 17(10), e0275631. Public Library of Science (PLoS).
    Crossref OpenAlex OpenCitations
  40. Kevin Shockley , Laura Sabadini , Carol A. Fowler (2004). Imitation in shadowing words . Perception & Psychophysics, 66(3), 422-429. Springer Science and Business Media LLC.
    Crossref OpenAlex OpenCitations
  41. EO Selkirk (1980). The role of prosodic categories in English word stress. Ling Inq., 11, 563.
    Type: Autre
    Crossref
  42. Susan Peppé , Joanne McCann , Fiona Gibbon , Anne O’Hare , Marion Rutherford (2007). Receptive and Expressive Prosodic Ability in Children With High-Functioning Autism . Journal of Speech, Language, and Hearing Research, 50(4), 1015-1028. American Speech Language Hearing Association.
    Crossref OpenAlex OpenCitations
  43. Victoria Leong , Michael A. Stone , Richard E. Turner , Usha Goswami (2014). A role for amplitude modulation phase relationships in speech rhythm perception . The Journal of the Acoustical Society of America, 136(1), 366-381. Acoustical Society of America (ASA).
    Crossref OpenAlex OpenCitations
  44. João Araújo , Sheila Flanagan , Alexandre Castro-Caldas , Usha Goswami (2018). The temporal modulation structure of illiterate versus literate adult speech . PLOS ONE, 13(10), e0205224. Public Library of Science (PLoS).
    Crossref OpenAlex OpenCitations
  45. Karen Toth , Jeffrey Munson , Andrew N. Meltzoff , Géraldine Dawson (2006). Early Predictors of Communication Development in Young Children with Autism Spectrum Disorder: Joint Attention, Imitation, and Toy Play . Journal of Autism and Developmental Disorders, 36(8), 993-1005. Springer Science and Business Media LLC.
    Crossref OpenAlex OpenCitations
  46. Joachim Gross , Nienke Hoogenboom , Gregor Thut , Philippe Schyns , Stefano Panzeri , Pascal Belin et al. (2013). Speech Rhythms and Multiplexed Oscillatory Sensory Coding in the Human Brain . PLoS Biology, 11(12), e1001752. Public Library of Science (PLoS).
    Crossref OpenAlex
  47. William S. Condon (1976). An Analysis of Behavioral Organization . Sign Language Studies, 13(1), 285-318. Project MUSE.
    Crossref OpenAlex OpenCitations
  48. R. Turner (2010). Ph.D. Dissertation . Ph.D. Dissertation.
    Type: Autre
    Crossref
  49. Thomas Schreiber (2000). Measuring Information Transfer . Physical Review Letters, 85(2), 461-464. American Physical Society (APS).
    Crossref OpenAlex OpenCitations
  50. RICHARD L. STREET (1984). SPEECH CONVERGENCE AND SPEECH EVALUATION IN FACT-FINDING INTERVIEWS . Human Communication Research, 11(2), 139-169. Oxford University Press (OUP).
    Crossref OpenAlex OpenCitations
  51. Antonia F. de C. Hamilton (2013). Reflecting on the mirror neuron system in autism: A systematic review of current theories . Developmental Cognitive Neuroscience, 3, 91-105. Elsevier BV.
    Crossref OpenAlex OpenCitations
  52. Stephen D. Goldinger (1998). Echoes of echoes? An episodic theory of lexical access. Psychological Review, 105(2), 251-279. American Psychological Association (APA).
    Crossref OpenAlex OpenCitations
  53. Linda R. Watson , Jane E. Roberts , Grace T. Baranek , Kerry C. Mandulak , Jennifer C. Dalton (2012). Behavioral and Physiological Responses to Child-Directed Speech of Children with Autism Spectrum Disorders or Typical Development . Journal of Autism and Developmental Disorders, 42(8), 1616-1629. Springer Science and Business Media LLC.
    Crossref OpenAlex OpenCitations
  54. J. N. Constantino (2012). Social responsiveness scale: SRS-2 (p. 106). Social responsiveness scale: SRS-2 (p. 106)..
    Type: Autre
    Crossref
  55. Keith B. Doelling , Luc H. Arnal , Oded Ghitza , David Poeppel (2014). Acoustic landmarks drive delta–theta oscillations to enable speech comprehension by facilitating perceptual parsing . NeuroImage, 85, 761-768. Elsevier BV.
    Crossref OpenAlex OpenCitations
  56. T Ii (2003). 高機能自閉症スペクトラム スクリーニング質問紙 (ASSQ) について. 自閉症と ADHD の子どもたちへの教育支援とアセスメント(English translation: On the high-functioning autism spectrum screening questionnaire (ASSQ). Educational support and assessment for children with autism and ADHD, 39.
    Type: Autre
    Crossref
  57. C. E. Shannon (1948). A Mathematical Theory of Communication . Institute of Electrical and Electronics Engineers (IEEE).
    Crossref OpenCitations
  58. (2021). The jamovi project . Jamovi (1.6 version) [Computer Software]..
    Type: Autre
    Crossref
  59. Gregory J. McHugo , John T. Lanzetta , Denis G. Sullivan , Roger D. Masters , Basil G. Englis (1985). Emotional reactions to a political leader's expressive displays. Journal of Personality and Social Psychology, 49(6), 1513-1529. American Psychological Association (APA).
    Crossref OpenAlex OpenCitations
  60. Rhea Paul , Amy Augustyn , Ami Klin , Fred R. Volkmar (2005). Perception and Production of Prosody by Speakers with Autism Spectrum Disorders . Journal of Autism and Developmental Disorders, 35(2), 205-220. Springer Science and Business Media LLC.
    Crossref OpenAlex OpenCitations
  61. Patricia K. Kuhl , Andrew N. Meltzoff (1996). Infant vocalizations in response to speech: Vocal imitation and developmental change . The Journal of the Acoustical Society of America, 100(4), 2425-2438. Acoustical Society of America (ASA).
    Type: Article DOI: 10.1121/1.417951 OpenAlex: https://openalex.org/W2092655206
    Crossref OpenAlex OpenCitations
  62. Klaus Kessler , Katja Biermann-Ruben , Melanie Jonas , Hartwig Roman Siebner , Tobias Bäumer , Alexander Münchau et al. (2006). Investigating the human mirror neuron system by means of cortical synchronization during the imitation of biological movements . NeuroImage, 33(1), 227-238. Elsevier BV.
    Crossref OpenAlex OpenCitations
  63. Nai Ding , Lucia Melloni , Hang Zhang , Xing Tian , David Poeppel (2016). Cortical tracking of hierarchical linguistic structures in connected speech . Nature Neuroscience, 19(1), 158-164. Springer Science and Business Media LLC.
    Type: Article DOI: 10.1038/nn.4186 OpenAlex: https://openalex.org/W2195506630
    Crossref OpenAlex OpenCitations
  64. Dean Falk (2004). Prelinguistic evolution in early hominins: Whence motherese? Behavioral and Brain Sciences, 27(4), 491-503. Cambridge University Press (CUP).
    Crossref OpenAlex OpenCitations
  65. Andrew N. Meltzoff , M. Keith Moore (1983). Newborn Infants Imitate Adult Facial Gestures . Child Development, 54(3), 702. Oxford University Press (OUP).
    Type: Article DOI: 10.2307/1130058 OpenAlex: https://openalex.org/W4242455153
    Crossref OpenCitations
  66. M. LaFrance (1982). Interaction rhythms: Periodicity in communicative behavior . Interaction rhythms: Periodicity in communicative behavior, 279.
    Type: Autre
    Crossref
  67. D. Newtson (1994). Dynamical Systems in Social Psychology . Dynamical Systems in Social Psychology, 139.
    Type: Autre
    Crossref
  68. Thierry Nazzi , Josiane Bertoncini , Jacques Mehler (1998). Language discrimination by newborns: Toward an understanding of the role of rhythm. Journal of Experimental Psychology: Human Perception and Performance, 24(3), 756-766. American Psychological Association (APA).
    Crossref OpenAlex OpenCitations
  69. W Condon (1971). The Perception of Language. The Perception of Language., 150.
    Type: Autre
    Crossref
  70. J Nadel (1999). Imitation in Infancy. Imitation in Infancy., 209.
    Type: Autre
    Crossref
  71. Andrew N. Meltzoff , M. Keith Moore (1983). Newborn Infants Imitate Adult Facial Gestures . Child Development, 54(3), 702. Oxford University Press (OUP).
    OpenAlex
  72. NR Carlson (2005). Psychology: The Science of Behaviour (3rd ed.) . 384 (Pearson Education, Canada,.
    Type: Autre
    Crossref