Comparison of muscular activity and metabolic response between a novel handle-based and a push-rim wheelchair in a simulated daily mobility circuit.
cross_sectional · Level IV
Where this comes from
- Record sourced from PubMed, PMID 41537499.
- Also identified by DOI 10.2340/jrm.v58.44397 and PMC identifier 12817141.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
To compare the muscular activity and metabolic response between a novel handle-based wheelchair drive (KURT) and conventional push rim propulsion in a simulated daily mobility circuit. Single-group comparative study between 3 wheelchair configurations. 22 healthy individuals without prior wheelchair experience. Participants completed a multi--movement circuit including ramps, obstacle avoidance, and directional changes using KURT and 2 push-rim wheelchairs with different wheel sizes (small wheels, SW; large wheels, LW). Electromyographic data were collected bilaterally from 7 upper body muscles, and cardiopulmonary variables were -continuously monitored. Biceps brachii activity was significantly higher with KURT than with SW and LW for both arms (all p < 0.001), while triceps brachii and pectoralis major activity were significantly lower (all p < 0.001). Other monitored muscles showed smaller relative differences between configurations, often resulting in limited or no statistically significant effects. Metabolic demand was lower with KURT: heart rate, oxygen consumption, and carbon dioxide production were reduced compared with LW (all p < 0.05), while respiratory exchange ratio was unchanged and respiratory frequency was higher than with SW (p < 0.05). KURT appears to be a promising, more energy-efficient alternative to push-rim wheelchairs, reducing upper limb muscle demand and metabolic cost. These findings motivate studies in regular wheelchair users and longer-term use in daily living scenarios.
Medical subject headings
- Wheelchairs
- Muscle, Skeletal