Billets de Michelle Dawson

Billet publié sur Twitter/X le 19/11/2022 07:51

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

Liens cités structurés

1 ressource citée

Publication avec DOI Récupéré Publication crossref

Kyle Jasmin, Alex Martin, Stephen J. Gotts (2022). Compensation and conversation in autism: atypical connectivity supports typical behavior. openRxiv.

Date de publication
18/11/2022
Identifiant
10.1101/2022.11.18.517079
Auteurs
Kyle Jasmin, Alex Martin, Stephen J. Gotts
Type de référence
preprint
Éditeur
openRxiv
Source de métadonnées
crossref

Résumé

Abstract Background It is well-established that individuals with autism show atypical functional brain connectivity. However, the role this plays in behavior, especially in naturalistic social settings, has remained unclear. Some atypical patterns may reflect core deficits, while others may instead compensate for deficits and promote adaptive behavior. Distinguishing these possibilities requires measuring the ‘typicality’ of spontaneous behavior and determining which connectivity patterns correlate with it. Methods Thirty-nine male participants (19 autism, 20 typically-developed) engaged in 115 spontaneous conversations with an experimenter during fMRI scanning (Jasmin, et al., 2019, Brain). A classifier algorithm was trained to distinguish participants by diagnosis based on 81 semantic, affective and linguistic dimensions derived from their use of language. The algorithm’s certainty that a participant was in either the autism or typical group was used as a measure of task performance and compared with functional connectivity levels. Results The algorithm accurately classified participants (74%, P =.002), and its scores correlated with clinician-observed autism signs (ADOS) (r s =.56, P =.03). In support of a compensatory role, greater functional connectivity, most prominently between left-hemisphere social communication regions and right inferior frontal cortex, correlated with more typical language behaviour, only for the autism group (r s =.56, P =.01). Conclusion We report a simple and highly generalizable method for quantifying behavioral performance and neural compensation during complex spontaneous social behavior, without the need for an a priori benchmark. The findings suggest that functional connectivity increases in autism during communication reflect a neural compensation strategy.

Auteur·ices de l’étude dans cette référence citée