Billets de Michelle Dawson

Billet publié sur Twitter/X le 01/07/2020 02:55

Twitter/X Publication avec DOI crossref Extrait cité dans le billet Lien intégré au billet Termes sur l’autisme

1 réponse intégrée de Michelle Dawson

01/07/2020 03:15

Note: our 2013 paper on autism, synesthesia, and exceptional abilities https://t.co/EATz5QpWSV free

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Publication avec DOI Récupéré Publication crossref

Andreas Riedel, Simon Maier, Kerstin Wenzler, Bernd Feige, Ludger Tebartz van Elst, Sven Bölte, Janina Neufeld (2020). A case of co-occuring synesthesia, autism, prodigious talent and strong structural brain connectivity. BMC Psychiatry, 20(1), 342. Springer Science and Business Media LLC.

Date de publication
30/06/2020
Identifiant
10.1186/s12888-020-02722-w
Auteurs
Andreas Riedel, Simon Maier, Kerstin Wenzler, Bernd Feige, Ludger Tebartz van Elst, Sven Bölte, Janina Neufeld
Source
BMC Psychiatry
Détails
20(1), 342
Type de référence
article
Éditeur
Springer Science and Business Media LLC
Source de métadonnées
crossref

Résumé

Abstract Background Synesthesia is a sensory phenomenon where certain domain-specific stimuli trigger additional sensations of e.g. color or texture. The condition occurs in about 4% of the general population, but is overrepresented in individuals with Autism Spectrum Disorder (ASD), where it might also be associated with the presence of prodigious talents. Case presentation Here we describe the case of a young transsexual man with Asperger Syndrome, synesthesia and a prodigious talent for foreign language acquisition. In our case, not only letters, numbers, spoken words, music, noises, weekdays and months lead to highly consistent, vivid color sensations but also his own and others’ emotions, geometric shapes, any mathematical symbol, and letters from an unfamiliar alphabet (Hebrew). These color associations seem to aid categorization, differentiation and storage of information and might thereby contribute to the young man’s language acquisition ability. We investigated the young man’s structural brain connectivity in comparison to adults with or without ASD, applying global fiber tracking to diffusion-weighted Magnetic Resonance Imaging (MRI) data. The case presented with increased connectivity, especially between regions involved in visual and emotion processing, memory, and higher order associative binding regions. An electroencephalography experiment investigating synesthetic color and shape sensations while listening to music showed a negligible occipital alpha suppression, indicating that these internally generated synesthetic sensations derive from a different brain mechanism than when processing external visual information. Conclusions Taken together, this case study endorses the notion of a link between synesthesia, prodigious talent and autism, adding to the currently still sparse literature in this field. It provides new insights into the possible manifestations of synesthesia in individuals with ASD and its potential contribution to prodigious talents in people with an otherwise unexceptional cognitive profile. Additionally, this case impressively illustrates how synesthesia can be a key element not only of sensory perception but also social and emotional processing and contributes to existing evidence of increased brain connectivity in association with synesthesia.

Auteur·ices de l’étude dans cette référence citée

Publication avec DOI Récupéré Réponse intégrée crossref

Laurent Mottron, Lucie Bouvet, Anna Bonnel, Fabienne Samson, Jacob A. Burack, Michelle Dawson, Pamela Heaton (2013). Veridical mapping in the development of exceptional autistic abilities. Neuroscience & Biobehavioral Reviews, 37(2), 209-228. Elsevier BV.

Date de publication
février 2013
Identifiant
10.1016/j.neubiorev.2012.11.016
Auteurs
Laurent Mottron, Lucie Bouvet, Anna Bonnel, Fabienne Samson, Jacob A. Burack, Michelle Dawson, Pamela Heaton
Source
Neuroscience & Biobehavioral Reviews
Détails
37(2), 209-228
Type de référence
article
Éditeur
Elsevier BV
Source de métadonnées
crossref

Résumé

Superior perception, peaks of ability, and savant skills are often observed in the autistic phenotype. The enhanced perceptual functioning model (Mottron et al., 2006a) emphasizes the increased role and autonomy of perceptual information processing in autistic cognition. Autistic abilities also involve enhanced pattern detection, which may develop through veridical mapping across isomorphic perceptual and non-perceptual structures (Mottron et al., 2009). In this paper, we elaborate veridical mapping as a specific mechanism which can explain the higher incidence of savant abilities, as well as other related phenomena, in autism. We contend that savant abilities such as hyperlexia, but also absolute pitch and synaesthesia, involve similar neurocognitive components, share the same structure and developmental course, and represent related ways by which the perceptual brain deals with objective structures under different conditions. Plausibly, these apparently different phenomena develop through a veridical mapping mechanism whereby perceptual information is coupled with homological data drawn from within or across isomorphic structures. The atypical neural connectivity characteristic of autism is consistent with a developmental predisposition to veridical mapping and the resulting high prevalence of savant abilities, absolute pitch, and synaesthesia in autism.

Auteur·ices de l’étude dans cette référence citée