Toward Developing a Powered Ankle-Foot Prosthesis With Electromyographic Control to Enhance Functional Performance: A Case Study in a U.S. Service Member

Author:

Knight Ashley D123,Bass Sarah R23,Elrod Jonathan M24,Hassinger Louise M2,Dearth Christopher L125,Gonzalez-Vargas Jose6,Hendershot Brad D123,Han Zhixiu6

Affiliation:

1. Research and Surveillance Division, DoD-VA Extremity Trauma and Amputation Center of Excellence, Bethesda, MD 20889, USA

2. Department of Rehabilitation, Walter Reed National Military Medical Center, Bethesda, MD 20889, USA

3. Department of Rehabilitation Medicine, Uniformed Services of the Health Sciences, Bethesda, MD 20814, USA

4. Henry M. Jackson Foundation for the Advancement of Military Medicine, Bethesda, MD 20817, USA

5. Department of Surgery, Uniformed Services University of the Health Sciences—Walter Reed National Military Medical Center, Bethesda, MD 20814, USA

6. Ottobock SE & Co. KGaA, Duderstadt 37115, Germany

Abstract

ABSTRACT The only commercially available ankle-foot prosthesis with powered propulsion lacks ruggedization and other capabilities for service members seeking to return to duty and/or other physically demanding activities. Here, we evaluated a ruggedized powered ankle-foot prosthesis with electromyographic control (“Warrior Ankle”; WA) in an experienced male user of the predicate (Empower) prosthesis. The participant (age = 56 years, mass = 86.8 kg, stature = 173 cm) completed a 650 m simulated hike with varying terrain at a fixed, self-selected speed in the WA and predicate prosthesis, with and without a 22.8 kg weighted vest (“loaded” and “unloaded,” respectively). Peak dorsiflexion and plantarflexion angles were extracted from each gait cycle throughout the simulated hike (∼500 prosthetic-side steps). The participant walked faster with the WA (1.15 m/s) compared to predicate (0.80 m/s) prosthesis. On the prosthetic side, peak dorsiflexion angles were larger for the WA (loaded: 27.9°; unloaded: 26.9°) compared to the predicate (loaded: 19.4°; unloaded: 21.3°); peak plantarflexion angles were similar between prostheses and loading conditions [WA (loaded: 15.5°; unloaded: 14.9°), predicate (loaded: 16.9°; unloaded: 14.8°). The WA better accommodated the varying terrain profile, evidenced by greater peak dorsiflexion angles, as well as dorsiflexion and plantarflexion angles that more closely matched or exceeded those of the innate ankle [dorsiflexion (WA: 31.6°, predicate: 27.5°); plantarflexion (WA: 20.7°, predicate: 20.5°)]. Furthermore, the WA facilitated a faster walking speed, suggesting a greater functional capacity with the WA prosthesis. Although further design enhancements are needed, this case study demonstrated feasibility of a proof-of-concept, ruggedized powered ankle-foot prosthesis with electromyographic control.

Publisher

Oxford University Press (OUP)

Subject

Public Health, Environmental and Occupational Health,General Medicine

Reference26 articles.

1. Major deployment-related amputations of lower and upper limbs, active and reserve components, U.S. Armed Forces, 2001-2017;Farrokhi;MSMR,2018

2. Unilateral lower-limb loss: prosthetic device use and functional outcomes in servicemembers from Vietnam war and OIF/OEF conflicts;Gailey;J Rehabil Res Dev,2010

3. Return to sport following amputation;Matthews;J Sports Med Phys Fitness,2014

4. Transtibial energy-storage-and-return prosthetic devices: a review of energy concepts and a proposed nomenclature;Hafner;J Rehabil Res Dev,2002

5. Mechanical energetic contributions from individual muscles and elastic prosthetic feet during symmetric unilateral transtibial amputee walking: a theoretical study;Zmitrewicz;J Biomech,2007

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