Trunk, head and pelvis interactions in healthy children when performing seated daily arm tasks

L H C Peeters1, I Kingma2, G S Faber2

  • 1Department of Rehabilitation, Donders Centre for Neuroscience, Radboud University Medical Center, 9101, 6500 HB, Nijmegen, The Netherlands. laura.hc.peeters@radboudumc.nl.

Insights

Understanding trunk and head movement in children is key for designing supportive devices. This study analyzed how upper body segments interact during daily tasks, revealing age-related changes and providing crucial data for assistive technology development.

Area of Science:

  • Biomedical Engineering
  • Human Movement Science
  • Pediatric Rehabilitation

Background:

  • Designing supportive devices for children with neuromuscular disorders necessitates understanding trunk, head, and pelvis movement.
  • Interactions between upper extremity and upper body movements are critical for seated daily activities.

Purpose of the Study:

  • To investigate physiological interactions between pelvis, trunk, and head movements during upper extremity tasks in healthy children.
  • To assess maturation effects on these movements in children aged 6-20 years.
  • To inform the design of trunk and head supportive devices for children with neuromuscular disorders.

Main Methods:

  • Utilized an optical motion capture system to record movements of arms, head, pelvis, and trunk segments.
  • Included 25 healthy subjects aged 6-20 years.
  • Subjects performed maximum range of motion tasks and daily reaching tasks (forward and lateral).

Main Results:

  • Trunk segment contributions to motion varied by direction and task.
  • Pelvis and trunk sagittal plane motion increased with reaching height, distance, and object weight.
  • Trunk movement during reaching decreased with age; head movement often opposed trunk movement.
  • Trunk and head movements initiated earlier than arm movements.

Conclusions:

  • Movement patterns of the trunk and head are integral to upper extremity function in children.
  • Results provide valuable data for developing effective trunk and head supportive devices for pediatric neuromuscular disorders.
  • Findings highlight age-related maturation effects on movement strategies.

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