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The Effects of Constraints on the Variability of Throwing Patterns in Young Children
Hamid Salehi1, Parisa Kalantari1
1Faculty of Sport Sciences, University of Isfahan, Isfahan, Iran.
Insights
Children aged 5-6 adapted their throwing patterns based on ball size and target orientation. Kinematic analysis revealed specific adjustments, supporting dynamical systems theory for motor skill development.
Area of Science:
- Motor Development
- Biomechanics
- Child Psychology
Background:
- Understanding how children develop motor skills is crucial for effective physical education.
- Task constraints, such as target size and ball properties, are known to influence movement patterns.
Purpose of the Study:
- To investigate the impact of varying task constraints on the throwing patterns of young children.
- To analyze kinematic adaptations in children's throws in response to changes in target orientation and ball size.
Main Methods:
- Observational study involving 24 children (5-6 years old).
- Manipulated task constraints: target orientation (horizontal/vertical hoops) and ball size (6cm/12cm diameter).
- Analyzed kinematic components of preferred throwing patterns.
Main Results:
- Children adapted throwing techniques based on ball size and target orientation.
- Significant kinematic adjustments, particularly in the forearm, were observed with target orientation changes.
- Specific modifications like humerus elevation and backward hand pull occurred when targeting vertical hoops.
Conclusions:
- Findings support the dynamical systems theory in explaining motor development variability.
- Task constraints play a significant role in shaping children's throwing patterns.
- Utilizing constraints can be beneficial for skill acquisition in physical education.
Abstract:
This research examined how changes in task constraints impacted the throwing patterns of children. The study involved 24 children, with an equal number of males and females, aged 5 and 6. The primary task constraints were the orientation of the target (horizontal or vertical hoops) and the size of the ball (diameters of 6 cm or 12 cm). We observed throwing patterns and analyzed kinematic changes in the preferred throws' components. Initially, some children transitioned from using two hands to using one hand, and from underhand to overarm throws, particularly when using the larger balls. However, the preferred pattern for most children was one-hand overarm throwing. The kinematic analysis revealed that the participants adapted their throwing technique based on the size of the ball and the orientation of the hoop. The most significant adjustments occurred in the forearm component in response to changes in the target orientation. Notably, when aiming for a vertical hoop, distinct modifications were observed, including elevating the humerus and pulling the hand backward. These findings support the dynamical systems theory, which explains how movement patterns vary during motor development. The study also discussed the potential benefits of using constraints for skill acquisition in physical education settings.
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