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Published on: August 30, 2016
Dual-task effects on postural sway during sit-to-stand movement in children with Down syndrome
G M Pena1, S L Pavão1, M F P Oliveira1
1Physical Therapy Department, Neuropediatrics Sector, Federal University of São Carlos, São Carlos, Brazil.
Insights
Children with Down syndrome exhibit greater postural sway during sit-to-stand movements compared to typical children. Dual-tasking strategies differ between groups, with Down syndrome children adopting a stiffer posture.
Area of Science:
- Neuroscience
- Developmental Psychology
- Biomechanics
Background:
- Cognitive and postural control share neural resources, leading to interference during dual-tasking.
- Neuromotor impairments, like Down syndrome, can disrupt coordination essential for dual-task performance.
Purpose of the Study:
- To examine the impact of dual-tasking on postural sway during sit-to-stand movements in children with and without Down syndrome.
Main Methods:
- A cross-sectional study comparing 26 typical children and 21 children with Down syndrome (ages ~10 years).
- Participants performed sit-to-stand tasks under single-task and three dual-task conditions (bimanual, unimanual dominant, unimanual non-dominant).
- Postural sway was quantified by center-of-pressure displacement, velocity, and area across three sit-to-stand phases.
Main Results:
- Children with Down syndrome demonstrated significantly greater postural sway across all phases compared to typical children.
- Typical children exhibited increased sway in the non-dominant unimanual dual-task condition.
- Children with Down syndrome showed reduced sway in dual-task conditions compared to single-task, suggesting a stiffening strategy.
Conclusions:
- Children with Down syndrome present with impaired postural control during sit-to-stand, exacerbated by dual-tasking.
- Dual-tasking affects postural sway differently in typical children and those with Down syndrome.
- Children with Down syndrome may adopt a compensatory stiffening strategy to manage dual-task demands.
Background:
Cognitive and postural tasks require common cognitive mechanisms, resulting in conflicts when both tasks are simultaneously performed. The presence of neuromotor dysfunctions, such as Down syndrome, may impair coordination processes required to perform dual-tasks. The objective of this study was to investigate the dual-task effects on postural sway during sit-to-stand movements in typical children and children with Down syndrome in a cross-sectional study.
Methods:
Twenty six typical children (10.2 ± 2.4 years) and 21 with Down syndrome (10.3 ± 2.3 years) performed sit-to-stand in the following conditions: (1) simple task; (2) dual-task bimanual activity (DT-Bim): sit-to-stand while carrying a tray using both hands; (3) dual-task unimanual dominant activity (DT-Uni-Dom): sit-to-stand while holding a plastic cup simulating water using the dominant hand; (4) dual-task unimanual non-dominant activity (DT-Uni-Nondom): sit-to-stand movement while holding a plastic cup simulating water. For data analysis, sit-to-stand was divided into three phases: preparation (phase 1), rising (phase 2), and stabilisation (phase 3). The following variables were calculated for each phase: anterior-posterior and medial-lateral amplitude of centre-of-pressure displacement, anterior-posterior and medial-lateral velocity of centre-of-pressure sway and area of centre-of-pressure sway.
Results:
Children with Down syndrome showed greater sway than typical children in all sit-to-stand phases. Typical children showed greater anterior-posterior amplitude in phase 2 of sit-to-stand during DT-Uni Nondom compared with DT-Uni Dom. Children with Down syndrome during simple task condition showed greater and faster values sway in phases 2 and 3 of sit-to-stand movement than in DT-Bim activity, DT-Uni Dom activity and DT-Uni Nondom activity. During the condition of DT-Bim activity, these children showed lower anterior-posterior velocity of sway in phase 2 than during DT-Uni Dom activity.
Conclusions:
Children with Down syndrome showed greater postural sway during sit-to-stand than typical children. The addition of a concurrent motor task to sit-to-stand impacted postural sway in different intensities and in different ways across groups. Dual-tasks increased body sway in typical children in the DT-Uni Nondom condition compared with dominant one. In children with Down syndrome, dual-tasks decreased body sway, apparently resulting in a postural strategy of stiffness.
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