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Published on: November 6, 2015
Evaluation of suitability of a micro-processing unit of motion analysis for upper limb tracking
José Antonio Barraza Madrigal1, Eladio Cardiel1, Pablo Rogeli1
1The Electrical Engineering Department/Bioelectronics Section, Center for Research and Advanced Studies of the National Polytechnic Institute, Av. IPN 2508 Col. San Pedro Zacatenco, México D.F. C.P. 07360, Mexico.
Abstract:
The aim of this study is to assess the suitability of a micro-processing unit of motion analysis (MPUMA), for monitoring, reproducing, and tracking upper limb movements. The MPUMA is based on an inertial measurement unit, a 16-bit digital signal controller and a customized algorithm. To validate the performance of the system, simultaneous recordings of the angular trajectory were performed with a video-based motion analysis system. A test of the flexo-extension of the shoulder joint during the active elevation in a complete range of 120º of the upper limb was carried out in 10 healthy volunteers. Additional tests were carried out to assess MPUMA performance during upper limb tracking. The first, a 3D motion reconstruction of three movements of the shoulder joint (flexo-extension, abduction-adduction, horizontal internal-external rotation), and the second, an upper limb tracking online during the execution of three movements of the shoulder joint followed by a continuous random movement without any restrictions by using a virtual model and a mechatronic device of the shoulder joint. Experimental results demonstrated that the MPUMA measured joint angles that are close to those from a motion-capture system with orientation RMS errors less than 3º.
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