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An EEG frequency tagging study on biological motion perception in children with DCD

Griet Warlop (UGent) , Emiel Cracco (UGent) , Roeljan Wiersema (UGent) , Guido Orgs and Frederik Deconinck (UGent)
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Abstract
Background: The perception of biological motion requires accurate prediction of the spatiotemporal dynamics of human movement. Research on Developmental Coordination Disorder (DCD) suggests deficits in accurate motor prediction, raising the question whether not just action execution, but also action perception is perturbed in this disorder. Aims: To examine action perception by comparing the neural response to the observation of apparent biological motion in children with and without DCD. Methods and procedures: Thirty-three participants with and 33 without DCD, matched based on age (13.0 ± 2.0), sex and writing hand, observed sequences of static body postures that showed either fluent or non-fluent motion, in which only the fluent condition depicted apparent biological motion. Using a recently validated paradigm combining EEG frequency tagging and apparent biological motion (Cracco et al., 2023), the perception of biological motion was contrasted with the perception of individual body postures. Outcomes and conclusions: Children with DCD did not show reduced sensitivity to apparent biological motion compared with typically developing children. However, the DCD group did show a reduced brain response to repetitive visual stimuli, suggesting altered predictive processing in the perceptual domain in this group. Suggestions for further research on biological motion perception in DCD are identified.
Keywords
Developmental coordination disorder, Apparent biological motion, Perception-action, Electroencephalography, Frequency tagging, DEVELOPMENTAL COORDINATION DISORDER, IMITATION, MOVEMENT, DEFICIT, HAND

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Citation

Please use this url to cite or link to this publication:

MLA
Warlop, Griet, et al. “An EEG Frequency Tagging Study on Biological Motion Perception in Children with DCD.” RESEARCH IN DEVELOPMENTAL DISABILITIES, vol. 153, 2024, doi:10.1016/j.ridd.2024.104810.
APA
Warlop, G., Cracco, E., Wiersema, R., Orgs, G., & Deconinck, F. (2024). An EEG frequency tagging study on biological motion perception in children with DCD. RESEARCH IN DEVELOPMENTAL DISABILITIES, 153. https://doi.org/10.1016/j.ridd.2024.104810
Chicago author-date
Warlop, Griet, Emiel Cracco, Roeljan Wiersema, Guido Orgs, and Frederik Deconinck. 2024. “An EEG Frequency Tagging Study on Biological Motion Perception in Children with DCD.” RESEARCH IN DEVELOPMENTAL DISABILITIES 153. https://doi.org/10.1016/j.ridd.2024.104810.
Chicago author-date (all authors)
Warlop, Griet, Emiel Cracco, Roeljan Wiersema, Guido Orgs, and Frederik Deconinck. 2024. “An EEG Frequency Tagging Study on Biological Motion Perception in Children with DCD.” RESEARCH IN DEVELOPMENTAL DISABILITIES 153. doi:10.1016/j.ridd.2024.104810.
Vancouver
1.
Warlop G, Cracco E, Wiersema R, Orgs G, Deconinck F. An EEG frequency tagging study on biological motion perception in children with DCD. RESEARCH IN DEVELOPMENTAL DISABILITIES. 2024;153.
IEEE
[1]
G. Warlop, E. Cracco, R. Wiersema, G. Orgs, and F. Deconinck, “An EEG frequency tagging study on biological motion perception in children with DCD,” RESEARCH IN DEVELOPMENTAL DISABILITIES, vol. 153, 2024.
@article{01J583D9SVR73HBMGC9Q4SNAWP,
  abstract     = {{Background: The perception of biological motion requires accurate prediction of the spatiotemporal
dynamics of human movement. Research on Developmental Coordination Disorder (DCD)
suggests deficits in accurate motor prediction, raising the question whether not just action
execution, but also action perception is perturbed in this disorder.
Aims: To examine action perception by comparing the neural response to the observation of
apparent biological motion in children with and without DCD.
Methods and procedures: Thirty-three participants with and 33 without DCD, matched based on
age (13.0 ± 2.0), sex and writing hand, observed sequences of static body postures that showed
either fluent or non-fluent motion, in which only the fluent condition depicted apparent biological
motion. Using a recently validated paradigm combining EEG frequency tagging and
apparent biological motion (Cracco et al., 2023), the perception of biological motion was contrasted
with the perception of individual body postures.
Outcomes and conclusions: Children with DCD did not show reduced sensitivity to apparent biological
motion compared with typically developing children. However, the DCD group did show a
reduced brain response to repetitive visual stimuli, suggesting altered predictive processing in the
perceptual domain in this group. Suggestions for further research on biological motion perception
in DCD are identified.}},
  articleno    = {{104810}},
  author       = {{Warlop, Griet and Cracco, Emiel and Wiersema, Roeljan and Orgs, Guido and Deconinck, Frederik}},
  issn         = {{0891-4222}},
  journal      = {{RESEARCH IN DEVELOPMENTAL DISABILITIES}},
  keywords     = {{Developmental coordination disorder,Apparent biological motion,Perception-action,Electroencephalography,Frequency tagging,DEVELOPMENTAL COORDINATION DISORDER,IMITATION,MOVEMENT,DEFICIT,HAND}},
  language     = {{eng}},
  pages        = {{10}},
  title        = {{An EEG frequency tagging study on biological motion perception in children with DCD}},
  url          = {{http://doi.org/10.1016/j.ridd.2024.104810}},
  volume       = {{153}},
  year         = {{2024}},
}

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