Literature DB >> 33933522

Atypical neural processing during the execution of complex sensorimotor behavior in autism.

Robin L Shafer1, Mark H Lewis2, Karl M Newell3, James W Bodfish4.   

Abstract

Stereotyped behavior is rhythmic, repetitive movement that is essentially invariant in form. Stereotypy is common in several clinical disorders, such as autism spectrum disorders (ASD), where it is considered maladaptive. However, it also occurs early in typical development (TD) where it is hypothesized to serve as the foundation on which complex, adaptive motor behavior develops. This transition from stereotyped to complex movement in TD is thought to be supported by sensorimotor integration. Stereotypy in clinical disorders may persist due to deficits in sensorimotor integration. The present study assessed whether differences in sensorimotor processing may limit the expression of complex motor behavior in individuals with ASD and contribute to the clinical stereotypy observed in this population. Adult participants with ASD and TD performed a computer-based stimulus-tracking task in the presence and absence of visual feedback. Electroencephalography was recorded during the task. Groups were compared on motor performance (root mean square error), motor complexity (sample entropy), and neural complexity (multiscale sample entropy of the electroencephalography signal) in the presence and absence of visual feedback. No group differences were found for motor performance or motor complexity. The ASD group demonstrated greater neural complexity and greater differences between feedback conditions than TD individuals, specifically in signals relevant to sensorimotor processing. Motor performance and motor complexity correlated with clinical stereotypy in the ASD group. These findings support the hypothesis that individuals with ASD have differences in sensorimotor processing when executing complex motor behavior and that stereotypy is associated with low motor complexity.
Copyright © 2021 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Adults; Electroencephalography (EEG); Entropy; Motor control; Stereotypies; Visual

Mesh:

Year:  2021        PMID: 33933522      PMCID: PMC8188828          DOI: 10.1016/j.bbr.2021.113337

Source DB:  PubMed          Journal:  Behav Brain Res        ISSN: 0166-4328            Impact factor:   3.352


  84 in total

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10.  Altered electroencephalogram complexity in autistic children shown by the multiscale entropy approach.

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