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Updated: Nov 17, 2025

Experimental Methods to Study Human Postural Control
Published on: September 11, 2019
Postural control may drive the development of other domains in infancy
Anastasia Kyvelidou1, Kelsey Koss1, Jordan Wickstrom2
1Creighton University, 2500 California Plz, Omaha, NE 68178, USA.
Insights
Infants at high-risk for autism spectrum disorder show delayed development and altered postural control. Early postural control may predict later language and visual skills.
Area of Science:
- Developmental Pediatrics
- Neuroscience
- Motor Control
Background:
- Autism Spectrum Disorder (ASD) is a neurodevelopmental condition.
- Early identification and intervention are crucial for ASD.
- Sitting posture and postural control are key developmental milestones.
Purpose of the Study:
- To compare sitting posture in infants at high- and low-risk for ASD.
- To investigate the link between postural control and other developmental domains in infancy.
Main Methods:
- 19 infants (8 high-risk, 11 low-risk for ASD) were studied.
- Sitting posture was assessed at 6 months using force platform center of pressure (COP) analysis.
- Developmental domains were evaluated at 12 months using standardized assessments.
Main Results:
- No significant differences in postural control at 6 months between groups.
- High-risk infants showed significantly lower scores in all behavioral domains at 12 months.
- Early postural control measures predicted later language and visual reception.
Conclusions:
- High-risk infants exhibit developmental delays and altered postural control in the first year.
- Postural control may influence the development of other behavioral domains, including language and social skills.
Background:
To examine differences in sitting posture in infants at low- and high-risk for autism spectrum disorder and to establish the relationship between sitting postural control and other developmental domains.
Methods:
A total of 19 infants participated in the study. Eight infants at high-risk and 11 infants at low-risk for autism spectrum disorder. Sitting posture at 6 months was evaluated using a force platform while center of pressure data were acquired. We utilized traditional tools of center of pressure analysis, such as range, median frequency and frequency dispersion, as well as non-linear tools such as Sample Entropy for both the medial-lateral and anterior-posterior directions. At 12 months we used the Mullen Scales of Early Learning, the Communication and Symbolic Behavior Scales Developmental Profile™ and the Ages and Stages Questionnaire, the personal-social subscale.
Findings:
At 6 months none of the postural control measures showed statistically significant differences between groups. Infants at high-risk presented significantly lower scores in all behavioral domains than infants at low-risk at 12 months with fair effect sizes. Certain measures of postural control at 6 months could predict language and visual reception behavior at 12 months.
Interpretation:
Infants at high-risk for autism spectrum disorder present with delays in social, communication and language behavior as well as altered postural control in the first year of life. The present data support the possibility that motor skills and specifically postural control may drive the development in other domains.
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