Literature DB >> 22235109

Design and simulation of a new powered gait orthosis for paraplegic patients.

Mokhtar Arazpour1, Ahmad Chitsazan, Stephen W Hutchins, Farhad Tabatabai Ghomshe, Mohammad Ebrahim Mousavi, Esmaeil Ebrahimi Takamjani, Gholamreza Aminian, Mehdi Rahgozar, Monireh Ahmadi Bani.   

Abstract

BACKGROUND AND AIM: This article describes the development and testing of a new powered gait orthosis to potentially assist spinal cord injury patients to walk by producing synchronized hip and knee joint movements. TECHNIQUE: The first evaluation of the orthosis was performed without users, and was followed by evaluation of the orthosis performance using three healthy subjects to test the structure under weight-bearing conditions. The orthosis was primarily evaluated to ascertain its ability to generate appropriate hip and knee motion during walking. The walking experiments replicated the flexion and extension of both the hip and knee produced by the actuators which had previously been demonstrated during the initial computer simulations. DISCUSSION: The results suggest that this new orthosis could be used to assist paraplegic subjects who have adequate ranges of motion and also with weakness or reduced tone to ambulate, and may also be suitable for other subjects with impaired lower limb function (e.g. stroke, poliomyelitis, myelomeningocele and traumatic brain injury provided they do not have increased tone or movement disorders.

Entities:  

Mesh:

Year:  2012        PMID: 22235109     DOI: 10.1177/0309364611431481

Source DB:  PubMed          Journal:  Prosthet Orthot Int        ISSN: 0309-3646            Impact factor:   1.895


  8 in total

Review 1.  The influence of orthosis options on walking parameters in spinal cord-injured patients: a literature review.

Authors:  M Arazpour; M Samadian; K Ebrahimzadeh; M Ahmadi Bani; S W Hutchins
Journal:  Spinal Cord       Date:  2016-02-09       Impact factor: 2.772

2.  Kinematic and electromyography analysis of paraplegic gait with the assistance of mechanical orthosis and walker.

Authors:  Mina Baniasad; Farzam Farahmand; Mokhtar Arazpour; Hassan Zohoor
Journal:  J Spinal Cord Med       Date:  2019-03-18       Impact factor: 1.985

3.  The effect of ankle joint mobility when using an isocentric reciprocating gait orthosis (IRGO) on energy consumption in people with spinal cord injury: preliminary results.

Authors:  M Arazpour; M J Hojjati; M Samadian; M Bahramizadeh; M Ahmadi Bani; S W Hutchins
Journal:  Spinal Cord Ser Cases       Date:  2015-10-08

4.  Design and analysis of a new medial reciprocal linkage using a lower limb paralysis simulator.

Authors:  M Ahmadi Bani; M Arazpour; F Farahmand; S Sefati; M Baniasad; S W Hutchins; R Vahab Kashani; M E Mousavi
Journal:  Spinal Cord       Date:  2014-11-11       Impact factor: 2.772

5.  The influence of new medial linkage orthosis on walking and independence in spinal cord injury patients: a pilot study.

Authors:  Monireh Ahmadi Bani; Mokhtar Arazpour; Farzam Farahmand; Mohammad Ebrahim Mousavi; Mohammad Samadian; Reza Vahab Kashani; Stephen William Hutchins
Journal:  Spinal Cord Ser Cases       Date:  2016-04-07

6.  The influence of orthotic gait training with an isocentric reciprocating gait orthosis on the walking ability of paraplegic patients: a pilot study.

Authors:  M Samadian; M Arazpour; M Ahmadi Bani; A Pouyan; M Bahramizadeh; S W Hutchins
Journal:  Spinal Cord       Date:  2015-07-21       Impact factor: 2.772

7.  Effect of Orthotic Gait Training with Isocentric Reciprocating Gait Orthosis on Walking in Children with Myelomeningocele.

Authors:  Mokhtar Arazpour; Farin Soleimani; Firoozeh Sajedi; Roshanak Vameghi; Monireh Ahmadi Bani; Masoud Gharib; Mohammad Samadian
Journal:  Top Spinal Cord Inj Rehabil       Date:  2017

8.  Systematic review on wearable lower-limb exoskeletons for gait training in neuromuscular impairments.

Authors:  Antonio Rodríguez-Fernández; Joan Lobo-Prat; Josep M Font-Llagunes
Journal:  J Neuroeng Rehabil       Date:  2021-02-01       Impact factor: 4.262

  8 in total

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