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Updated: Sep 18, 2025

Kinematic Analysis Using 3D Motion Capture of Drinking Task in People With and Without Upper-extremity Impairments
Published on: March 28, 2018
Development and Evaluation of a 3D Motion Capture Model for Upper Extremity Kinematics During Wheelchair Maneuvering
Lina Bunketorp Käll1,2, Gudni Rafn Harðarson3, Erik Tullin1
1Department of Occupational Therapy and Physiotherapy, Sahlgrenska University Hospital/Mölndal, 431 80 Mölndal, Sweden.
Abstract:
Spinal cord injury (SCI) often necessitates the use of a manual wheelchair, which can overload the shoulders and contribute to upper extremity (UE) pain. Currently, no standardized methods exist to assess UE kinematics during wheelchair propulsion. This study aimed to develop and evaluate a marker-based motion capture model for analyzing UE movement during wheelchair use, with a secondary goal of assessing test-retest reliability. The study was conducted in two phases: (1) development of the motion analysis model and (2) reliability testing. Eleven participants with SCI were included. Reliability was assessed using intraclass correlation coefficients (ICCs) across 15 movement parameters, including total range of motion and minimum and maximum movement values. The model demonstrated good test-retest reliability. For minimum movement, 12 of 15 parameters were significant (ICC = 0.681-0.965). For maximum movement, 13 of 15 were significant (ICC = 0.726-0.981). For total range of motion, 12 of 15 showed significant reliability (ICC = 0.596-0.952). In conclusion, the motion capture model showed promising reliability for assessing UE kinematics during wheelchair maneuvering in individuals with SCI. However, due to the small sample size, further research is needed to validate and refine the model.

