Literature DB >> 16003904

Simulation of a functional neuromuscular stimulation powered mechanical gait orthosis with coordinated joint locking.

Curtis S To1, Robert F Kirsch, Rudi Kobetic, Ronald J Triolo.   

Abstract

The purpose of this study was to examine a hybrid orthosis system (HOS) for walking after spinal-cord injury (SCI) that coordinates the mechanical locking and unlocking of knee and ankle joints of a reciprocating gait orthosis (RGO), while propulsive forces are injected and unlocked joints controlled with functional neuromuscular stimulation (FNS). The likely effectiveness of the HOS in terms of forward progression, stability, and posture of paraplegic gait was determined in this simulation study. A three-dimensional computer model of a HOS combining FNS with an RGO incorporating feedback control of muscle activation and joint locking was developed. An anthropomorphic human model included passive joint moments and a foot-ground contact model adapted from other studies. A model of the RGO reciprocally coupled the hips and locked and unlocked the knee and ankle joints during stance and swing respectively. The actions of muscles under FNS activation were modeled via closed-loop control of joint torque inputs. A walking aid that mimicked canes and voluntary upper extremity actions maintained lateral stability by providing the necessary shoulder forces and moments. The simulated HOS achieved gait speeds of 0.51 +/- 0.03 m/s, stride lengths of 0.85 +/- 0.04 m, and cadences of 72 +/- 4 steps/min, exceeding the reported performance of other assistive gait systems. Although minimal forward trunk tilt was found to be necessary during specific phases of gait, posture, and stability were significantly improved over FNS-only systems.

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Year:  2005        PMID: 16003904     DOI: 10.1109/TNSRE.2005.847384

Source DB:  PubMed          Journal:  IEEE Trans Neural Syst Rehabil Eng        ISSN: 1534-4320            Impact factor:   3.802


  4 in total

1.  Feasibility of a hybrid-FES system for gait restoration in paraplegics.

Authors:  Hugo A Quintero; Ryan J Farris; William K Durfee; Michael Goldfarb
Journal:  Annu Int Conf IEEE Eng Med Biol Soc       Date:  2010

2.  Surrogate modeling of deformable joint contact using artificial neural networks.

Authors:  Ilan Eskinazi; Benjamin J Fregly
Journal:  Med Eng Phys       Date:  2015-07-26       Impact factor: 2.242

Review 3.  Donald Munro Lecture. Spinal cord injury--past, present, and future.

Authors:  William H Donovan
Journal:  J Spinal Cord Med       Date:  2007       Impact factor: 1.985

4.  A Muscle-First, Electromechanical Hybrid Gait Restoration System in People With Spinal Cord Injury.

Authors:  Mark Nandor; Rudi Kobetic; Musa Audu; Ron Triolo; Roger Quinn
Journal:  Front Robot AI       Date:  2021-04-27
  4 in total

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