Validity of an inertial measurement unit to assess pelvic orientation angles during gait, sit–stand transfers and step-up transfers: Comparison with an optoelectronic motion capture system*
Author:
Publisher
Elsevier BV
Subject
Biomedical Engineering,Biophysics
Reference45 articles.
1. Compensatory trunk movements in patients with hip osteoarthritis: accuracy and reproducibility of a body-fixed sensor-based assessment;Reininga;Am J Phys Med Rehabil,2011
2. Knee kinematics and kinetics during gait, step and hop in males with a 16 years old ACL injury compared with matched controls;von Porat;Knee Surg Sports Traumatol Arthrosc,2006
3. Inertial measures of motion for clinical biomechanics: comparative assessment of accuracy under controlled conditions – effect of velocity;Lebel;PLoS One,2013
4. A wearable inertial system to assess the cervical spine mobility: comparison with an optoelectronic-based motion capture evaluation;Duc;Med Eng Phys,2014
5. Gait analysis in children with cerebral palsy via inertial and magnetic sensors;van den Noort;Med Biol Eng Comput,2013
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