Neuromagnetic Beta-Band Oscillations during Motor Imitation in Youth with Autism

Author:

Buard I.1ORCID,Kronberg E.1,Steinmetz S.1,Hepburn S.2,Rojas D. C.3ORCID

Affiliation:

1. Department of Neurology, University of Colorado Anschutz Medical Campus, Aurora, CO, USA

2. Department of Psychiatry, University of Colorado Anschutz Medical Campus, Aurora, CO, USA

3. Department of Psychology, Colorado State University, Fort Collins, CO, USA

Abstract

Children with ASD often exhibit early difficulties with action imitation, possibly due to low-level sensory or motor impairments. Impaired cortical rhythms have been demonstrated in adults with ASD during motor imitation. While those oscillations reflect an age-dependent process, they have not been fully investigated in youth with ASD. We collected magnetoencephalography data to examine patterns of oscillatory activity in the mu (8-13 Hz) and beta frequency (15-30 Hz) range in 14 adolescents with and 14 adolescents without ASD during a fine motor imitation task. Typically developing adolescents exhibited adult-like patterns of motor signals, e.g., event-related beta and mu desynchronization (ERD) before and during the movement and a postmovement beta rebound (PMBR) after the movement. In contrast, those with ASD exhibited stronger beta and mu-ERD and reduced PMBR. Behavioral performance was similar between groups despite differences in motor cortical oscillations. Finally, we observed age-related increases in PBMR and beta-ERD in the typically developing children, but this correlation was not present in the autism group. These results suggest reduced inhibitory drive in cortical rhythms in youth with autism during intact motor imitation. Furthermore, impairments in motor brain signals in autism may not be due to delayed brain development. In the context of the excitation-inhibition imbalance perspectives of autism, we offer new insights into altered organization of neurophysiological networks.

Funder

Autism Speaks

Publisher

Hindawi Limited

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