Billets de Michelle Dawson

Billet publié sur Bluesky le 19/07/2026 11:23

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

"Early and later onset autism may represent different subtypes"?--based on age of diagnosis (not "onset") & excluding "early" diagnosed autistics who lost their diagnosis "later" onlinelibrary.wiley.com/doi/10.1111/... see Fig 1 for overlap across "early-autism" & "later-autism" & "no-autism" groups

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Publication avec DOI Récupéré Publication crossref

Tessel Bazelmans, Tony Charman, Mark H. Johnson, Emily J. H. Jones, the BASIS Team (2026). Distinct Temporal Stages of Infant Brain Processing Associate With Early Versus Later Autism Diagnosis. Developmental Science, 29(5), e70244. Wiley.

Date de publication
06/07/2026
Identifiant
10.1111/desc.70244
Auteurs
Tessel Bazelmans, Tony Charman, Mark H. Johnson, Emily J. H. Jones, the BASIS Team
Source
Developmental Science
Détails
29(5), e70244
Type de référence
article
Éditeur
Wiley
Source de métadonnées
crossref

Résumé

ABSTRACT The expression of autism traits sufficient to meet criteria for a diagnosis can occur early (by 3 years) or later (from mid‐childhood onwards). It remains unknown whether variation in age of onset is due to clinical recognition or reflects distinct biological pathways. One way of addressing this question is by investigating biological differences very early in development associated with a later age of diagnosis. We use a prospective family history design to look at event‐related potentials to faces, one of the most robust biomarkers in autism. A sample of 102 infants (aged 6–10 months, 54% female) with an older autistic sibling had an EEG recorded whilst viewing faces (faces vs. noise; gaze toward vs. away). Autism diagnostic assessments were conducted at 3 years and again in mid‐childhood (aged 6–12 years), resulting in early diagnosed (at age 3; N = 22), later diagnosed (at mid‐childhood; N = 21), and no autism in early or mid‐childhood (N = 59) groups. We found that while early‐stage visual processing (P100) does not associate with autism outcome, speed of structural face‐versus‐noise processing (N290) is slower in early‐onset autism only, and semantic processing (P400) is altered in both early‐ and later‐onset autism. Thus, temporal stages of face processing in infancy differentially associate with age of autism onset such that an earlier age of diagnosis is associated with earlier stage deviation within the event‐related waveform. Early and later onset autism may represent different subtypes, challenging the view of one etiological pathway and that variation in diagnostic age is solely due to clinical ascertainment. Summary Temporal stages of face processing in infancy differentially associate with age of autism onset. N290 is slower in early‐onset autism, indicating an earlier stage neural deviation. The later occurring P400 is altered in both early‐ and later‐onset autism. Early and later‐onset autism may represent distinct biological subtypes.

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