The impact of walker height positions and their influence on triceps activity and energy conservation: a pilot study

Author:

Rzepkowski Terry1,Abrams Saige C1,Bell Farrah P1,Orkwis Alexander1,Radin Hunter1,Reinoso Gustavo1

Affiliation:

1. Department of Occupational Therapy, Nova Southeastern University, Clearwater, Florida, USA

Abstract

Background/Aims Millions of adults use walkers for functional mobility. Inappropriate walker use is associated with incorrect height, forward-leaning posture, and increased energy expenditure. Few studies have investigated the impact of walker positions and their influence on triceps activity. The present study assessed walker height and baseline positioning for individuals with a 50% weight bearing restriction of the lower extremity, and implications for energy conservation. Methods A total of 38 young adults (mean age = 24.95 years; 84.2% female; 15.8% male) participated in this study with a two-wheeled walker. Participants executed five walker positions while maintaining 50% weight bearing of the lower extremity to determine the effect on triceps electromyography activity. Results Triceps electromyography activity did significantly change across the five walker positions assessed (X2 [df=37, P<0.001]). This study showed that the median electromyography activity for positions B (median=0.268) and A (median=0.280) was significantly less than the median electromyography activity for position E (median=0.452; P<0.001). The effect sizes for comparisons of positions B and E (r=0.49) as well as A and E were the largest (r=0.53). Conclusions These findings suggest an elbow angle of 26–35° (position B), followed by an elbow angle of 15–25° (position A), with the walker in line with the heels of the participant, to be superior in minimising exertion of the triceps.

Publisher

Mark Allen Group

Subject

Rehabilitation,Physical Therapy, Sports Therapy and Rehabilitation

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