Measuring dynamic stability requirements during sitting pivot transfers using stabilizing and destabilizing forces in individuals with complete motor paraplegia
Author:
Publisher
Elsevier BV
Subject
Rehabilitation,Biomedical Engineering,Orthopedics and Sports Medicine,Biophysics
Reference14 articles.
1. The ability to transfer in individuals with spinal cord injury;Allison;Critical Reviews in Physical Medicine and Rehabilitation,1997
2. Preservation of Upper Limb Function Following Spinal Cord Injury: A Clinical Practice Guideline for Health-care Professionals,2005
3. Destabilizing and stabilizing forces to assess equilibrium during everyday activities;Duclos;Journal of Biomechanics,2009
4. Movement patterns and muscular demands during posterior transfers toward an elevated surface in individuals with spinal cord injury;Gagnon;Spinal Cord,2005
5. Biomechanical assessment of sitting pivot transfer tasks using a newly-developed instrumented transfer system among long-term wheelchair users;Gagnon;Journal of Biomechanics,2008
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1. A nonlinear modelling approach to quantify sitting control in individuals with sensorimotor impairments;Asian Journal of Control;2023-11-28
2. Static force and tipover stability analysis of an assistive device for paraplegics;Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine;2021-08-18
3. Application of a T-S unknown input observer for studying sitting control for people living with spinal cord injury;Control Applications for Biomedical Engineering Systems;2020
4. Current state of balance assessment during transferring, sitting, standing and walking activities for the spinal cord injured population: A systematic review;The Journal of Spinal Cord Medicine;2018-06-05
5. Effect of different hand positions on trunk and shoulder kinematics and reaction forces in sitting pivot transfer;Journal of Physical Therapy Science;2015
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