Literature DB >> 16602575

Center of mass approximation and prediction as a function of body acceleration.

Aimee L Betker1, Zahra M K Moussavi, Tony Szturm.   

Abstract

In order to maintain postural stability, the central nervous system must maintain equilibrium of the total center of body mass (COM) in relation to its base of support. Thus, the trajectory of the COM provides an important measure of postural stability. Three different models were developed to estimate the COM and the results tested on 16 subjects: namely a neural network, an adaptive fuzzy interface system and a hybrid genetic algorithm sum-of-sines model. The inputs to the models were acquired via two accelerometers, one representing the trunk segment placed on T2 and the second representing the limb segment placed on the shank below the knee joint. The portability, ease of use and low cost (compared with video motion analysis systems) of the accelerometers increases the range of clinics to which the system will be available. The subjects performed a multisegmental movement task on fixed and foam surfaces, thus covering a relatively wide dynamic scope. The results are encouraging for obtaining COM estimates that have clinical applications; the genetic sum-of-sines model was found to be superior when compared to the other two models.

Mesh:

Year:  2006        PMID: 16602575     DOI: 10.1109/TBME.2006.870222

Source DB:  PubMed          Journal:  IEEE Trans Biomed Eng        ISSN: 0018-9294            Impact factor:   4.538


  6 in total

1.  Center of mass acceleration feedback control for standing by functional neuromuscular stimulation: a simulation study.

Authors:  Raviraj Nataraj; Musa L Audu; Robert F Kirsch; Ronald J Triolo
Journal:  J Rehabil Res Dev       Date:  2012

2.  Reliability, Validity and Utility of Inertial Sensor Systems for Postural Control Assessment in Sport Science and Medicine Applications: A Systematic Review.

Authors:  William Johnston; Martin O'Reilly; Rob Argent; Brian Caulfield
Journal:  Sports Med       Date:  2019-05       Impact factor: 11.136

3.  Center of mass acceleration feedback control of functional neuromuscular stimulation for standing in presence of internal postural perturbations.

Authors:  Raviraj Nataraj; Musa L Audu; Ronald J Triolo
Journal:  J Rehabil Res Dev       Date:  2012

4.  Trunk acceleration for neuroprosthetic control of standing: a pilot study.

Authors:  Raviraj Nataraj; Musa L Audu; Robert F Kirsch; Ronald J Triolo
Journal:  J Appl Biomech       Date:  2011-10-04       Impact factor: 1.833

5.  Center of mass acceleration feedback control of standing balance by functional neuromuscular stimulation against external postural perturbations.

Authors:  Raviraj Nataraj; Musa L Audu; Ronald J Triolo
Journal:  IEEE Trans Biomed Eng       Date:  2012-09-12       Impact factor: 4.538

6.  Symmetry Analysis of Amputee Gait Based on Body Center of Mass Trajectory and Discrete Fourier Transform.

Authors:  Claudia Ochoa-Diaz; Antônio Padilha L Bó
Journal:  Sensors (Basel)       Date:  2020-04-23       Impact factor: 3.576

  6 in total

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