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Standing balance in preschoolers using nonlinear dynamics and sway density curve analysis
Paula Hentschel Lobo da Costa1, Evi Verbecque2, Ann Hallemans3
1Department of Physical Education, Federal University of São Carlos, São Carlos, Brazil; Laboratory of Functional Morphology, Department of Biology, University of Antwerp, Antwerp, Belgium.
Insights
As children age from 3 to 5 years, their postural sway becomes less variable. Sensory challenges like closing eyes increase sway variability and corrective actions in preschoolers.
Area of Science:
- Pediatric motor control
- Developmental biomechanics
- Postural stability analysis
Background:
- Preschoolers' ability to maintain balance is crucial for development.
- Understanding how age and sensory input affect balance control is important for identifying developmental trends.
Purpose of the Study:
- To investigate the impact of age and sensory deprivation on postural control in preschoolers.
- To analyze temporal organization of center of pressure (CoP) sway variability and corrective commands during standing balance.
Main Methods:
- Utilized stabilometric descriptors: sample entropy (SEn), detrended fluctuation analysis (DFA), and sway density curve (SDC).
- Collected CoP data from 57 children (3-5 years) on rigid and foam surfaces with eyes open/closed using a force platform.
- Analyzed balance control under four sensory conditions.
Main Results:
- With increasing age, SEn decreased and DFA coefficient increased, indicating more organized sway.
- Challenging sensory conditions (foam surface, eyes closed) led to decreased SEn and increased DFA coefficient.
- More difficult sensory conditions also resulted in decreased sway variability and increased corrective torques, irrespective of age.
Conclusions:
- Five-year-olds exhibit more stable standing balance than younger children.
- Sensory deprivation increases the need for postural adjustments in preschoolers.
- Age does not significantly alter preschoolers' responses to sensory challenges in balance tasks.
Abstract:
The aim of the present study was to investigate how age and sensory deprivation affect the temporal organization of CoP sway variability and the postural corrective commands during standing balance in typically developing preschoolers. A sample of 57 children aged 3-5 years participated in the study. Structural stabilometric descriptors of sample entropy (SEn), detrended fluctuation analysis (DFA), and sway density curve (SDC) analysis were employed to assess features of center of pressure sway. A force platform was used to collect center of pressure data during standing balance over 40 s in four conditions: standing on rigid and foam surfaces with eyes open and closed. The main results are as follows: (1) sample entropy decreased and DFA_coefficient increased with age, while the SDC variables remained unaltered among the 3-, 4-, and 5-year-old children; (2) as sensory conditions became more challenging, sample entropy decreased and DFA_coefficient increased, while MT and MD decreased and MD increased; age did not influence the responses to sensorial deprivation. In conclusion, 5-year-old children showed decreased variability of CoP sway during standing balance compared with the younger children, but all children used the same corrective torques to control for perturbations. More challenging sensory deprivation conditions resulted in decreased variability of postural sway, higher amplitudes and more frequent correcting torques for stabilization, but age did not influence these behaviors.
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