Neuromechanical adaptations during a robotic powered exoskeleton assisted walking session

Author:

Ramanujam Arvind1ORCID,Cirnigliaro Christopher M.2,Garbarini Erica1,Asselin Pierre2,Pilkar Rakesh13ORCID,Forrest Gail F.13

Affiliation:

1. Kessler Foundation, Human Performance and Engineering Research, West Orange, New Jersey, USA

2. Department of Veterans Affairs Rehabilitation Research & Development Service, National Center for the Medical Consequences of Spinal Cord Injury, James J. Peters Veterans Affairs Medical Center, Bronx, New York, USA

3. Rutgers – New Jersey Medical School, Newark, New Jersey, USA

Funder

New Jersey Commission on Spinal Cord Research

Publisher

Informa UK Limited

Subject

Neurology (clinical)

Reference33 articles.

1. Heart rate and oxygen demand of powered exoskeleton-assisted walking in persons with paraplegia

2. Gait speed using powered robotic exoskeletons after spinal cord injury: a systematic review and correlational study

3. Assessment of In-Hospital Walking Velocity and Level of Assistance in a Powered Exoskeleton in Persons with Spinal Cord Injury

4. FDA. FDA receipt of Section 510(k) premarket notification for ReWalk PoweredLowerExtremityExoskeleton. Available at: https://www.accessdata.fda.gov/cdrh_docs/pdf16/k160987.pdf. Accessed on 30 March 2017.

5. FDA. FDA receipt of Section 510(k) premarket notification. Available at: Section 510(k) premarket notification for Indego PoweredLowerExtremityExoskeleton. Accessed on 30 March 2017.

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