Billets de Michelle Dawson

Billet publié sur Bluesky le 31/12/2025 11:15

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

"both exceptionally large and small head circumference measures during infancy are significantly associated with a subsequent diagnosis of autism..."? onlinelibrary.wiley.com/doi/10.1002/... & this "may be attributed to overall growth abnormalities & not a restricted characteristic of head growth"?

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Publication avec DOI Récupéré Publication crossref

Rewaa Balaum, Leena Elbedour, Einav Alhozyel, Gal Meiri, Dikla Zigdon, Analya Michaelovski, Orly Kerub, Idan Menashe (2026). Head Growth Trajectories During the First Year of Life and Risk of Autism Spectrum Disorder. Autism Research, 19(2), e70172. Wiley.

Date de publication
29/12/2025
Identifiant
10.1002/aur.70172
Auteurs
Rewaa Balaum, Leena Elbedour, Einav Alhozyel, Gal Meiri, Dikla Zigdon, Analya Michaelovski, Orly Kerub, Idan Menashe
Source
Autism Research
Détails
19(2), e70172
Type de référence
article
Éditeur
Wiley
Source de métadonnées
crossref

Résumé

ABSTRACT Atypical infant head circumference (HC)—including increased rates of macrocephaly and microcephaly—has been linked to autism spectrum disorder (ASD). However, specific head growth trajectories associated with ASD remain poorly defined. This retrospective case–control study aimed to delineate these trajectories and examine their relationship to height. The study sample included 262 children diagnosed with ASD and 560 matched controls. Growth measures at 1, 2, 4, 6, 9, and 12 months of age were obtained from health clinics in southern Israel. The sample was classified into seven clusters based on HC patterns across these six time points, and associations with ASD were estimated using conditional logistic regression. Results demonstrated significant correlations between HC and height throughout the study period (Pearson correlation r = 0.44–0.55, p < 0.001), with stronger correlations in ASD (r = 0.50–0.67) compared to controls (r = 0.32–0.50). Children with consistently small or large HC exhibited the highest ASD likelihood (adjusted odds ratio [aOR] = 2.95, 95% CI = 1.88–4.94; and aOR = 3.17, 95% CI = 1.92–5.01, respectively), with the most extreme percentiles (0–5th and 95th–100th) showing the strongest associations (aOR = 9.53, 95% CI = 2.49–35.26; aOR = 6.51, 95% CI = 2.91–15.35, respectively). These associations were primarily driven by children with similar height trajectories (aOR = 7.71, 95% CI = 3.23–15.43; and aOR = 6.89, 95% CI = 2.99–13.26, respectively), indicating that atypical HC growth in ASD during infancy may reflect broader physiological growth dysregulation.

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