| Literature DB >> 35976994 |
Luke Mason1, Carolin Moessnang2, Christopher Chatham3, Lindsay Ham3, Julian Tillmann4, Guillaume Dumas5,6, Claire Ellis4, Claire S Leblond5, Freddy Cliquet5, Thomas Bourgeron5, Christian Beckmann7, Tony Charman4, Beth Oakley4, Tobias Banaschewski2, Andreas Meyer-Lindenberg2, Simon Baron-Cohen8, Sven Bölte9, Jan K Buitelaar7, Sarah Durston10, Eva Loth4, Bob Oranje10, Antonio Persico11, Flavio Dell'Acqua4, Christine Ecker12, Mark H Johnson1,8, Declan Murphy4, Emily J H Jones1.
Abstract
Autism spectrum disorder (ASD) is a neurodevelopmental condition characterized by difficulties in social communication, but also great heterogeneity. To offer individualized medicine approaches, we need to better target interventions by stratifying autistic people into subgroups with different biological profiles and/or prognoses. We sought to validate neural responses to faces as a potential stratification factor in ASD by measuring neural (electroencephalography) responses to faces (critical in social interaction) in N = 436 children and adults with and without ASD. The speed of early-stage face processing (N170 latency) was on average slower in ASD than in age-matched controls. In addition, N170 latency was associated with responses to faces in the fusiform gyrus, measured with functional magnetic resonance imaging, and polygenic scores for ASD. Within the ASD group, N170 latency predicted change in adaptive socialization skills over an 18-month follow-up period; data-driven clustering identified a subgroup with slower brain responses and poor social prognosis. Use of a distributional data-driven cutoff was associated with predicted improvements of power in simulated clinical trials targeting social functioning. Together, the data provide converging evidence for the utility of the N170 as a stratification factor to identify biologically and prognostically defined subgroups in ASD.Entities:
Mesh:
Year: 2022 PMID: 35976994 DOI: 10.1126/scitranslmed.abf8987
Source DB: PubMed Journal: Sci Transl Med ISSN: 1946-6234 Impact factor: 19.319