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Post published on Twitter/X on 23 Dec 2020 02:09

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Amandine Lassalle, Michael X Cohen, Laura Dekkers, Elizabeth Milne, Rasa Gulbinaite, Hilde Geurts (2020). Behavioural and EEG atypicalities during rest, visual perception, and cognitive control in autistic adults. Center for Open Science.

Publication date
22 Dec 2020
Identifier
10.31234/osf.io/42zrq
Authors
Amandine Lassalle, Michael X Cohen, Laura Dekkers, Elizabeth Milne, Rasa Gulbinaite, Hilde Geurts
Reference type
preprint
Publisher
Center for Open Science
Metadata source
crossref

Abstract

Background: People with an Autism Spectrum Condition diagnosis (ASD) are hypothesized to show atypical neural dynamics, reflecting differences in neural structure and function. However, previous results regarding neural dynamics in autistic individuals have not converged on a single pattern of differences. It is possible that the differences are cognitive-set-specific, and we therefore measured EEG in autistic individuals and matched controls during three different cognitive states: resting, visual perception, and cognitive control.Methods: Young adults with and without an ASD (N=17 in each group) matched on age (range 20 to 30 years), sex, and estimated Intelligence Quotient (IQ) were recruited. We measured their behavior and their EEG during rest, a task requiring low-level visual perception of gratings of varying spatial frequency, and the “Simon task” to elicit activity in the executive control network. We computed EEG power and Inter-Site Phase Clustering (ISPC; a measure of connectivity) in various frequency bands.Results: During rest, there were no ASD vs. controls differences in EEG power, suggesting typical oscillation power at baseline. During visual processing, without pre-baseline normalization, we found decreased broadband EEG power in ASD vs. controls, but this was not the case during the cognitive control task. Furthermore, the behavioral results of the cognitive control task suggest that autistic adults were better able to ignore irrelevant stimuli.Conclusions: Together, our results defy a simple explanation of overall differences between ASD and controls, and instead suggest a more nuanced pattern of altered neural dynamics that depend on which neural networks are engaged.

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