Lower Limb Extension Power is Associated With Slope Walking Joint Loading Mechanics in Older Adults

Author:

Thomsen Peter B.1,Aumeier Jacob W.2,Wilbur Chelsey A.2,Oro Evan G.2,Carlson Hunter B.2,Christensen Jesse C.23

Affiliation:

1. Physical Therapy Program, School of Medicine, University of Colorado Anschutz Medical Campus, Aurora, CO, USA

2. Department of Physical Therapy & Athletic Training, University of Utah, Salt Lake City, UT, USA

3. Department of Physical Medicine and Rehabilitation, Veterans Affairs Salt Lake City Health Care System, Salt Lake City, UT, USA

Abstract

Fall-related injuries are associated with muscle weakness and common during slope walking in older adults. However, no study has evaluated the relationship between muscle weakness, measured by maximal lower limb extension power, and older adults’ ability to navigate slope walking for a better understanding of fall prevention. Therefore, the purpose of this study was to investigate the association between maximal lower limb extension power and joint mechanics during slope walking. Fifteen healthy older adults were tested. Lower limb extension power was measured using the Leg Extension Power Rig. Kinematic and kinetic analysis was performed during level (0°), incline (10°), and decline (10°) slope walking. Greater maximal lower limb extension power was significantly (p < .050; Cohen’s f2 > 0.35) associated with multiple kinetic and kinematic joint mechanic variables across stance phase of the gait cycle during level, incline, and decline walking. These findings will allow clinicians to better educate patients and develop interventions focused on fall prevention and improving functional mobility in older adults.

Publisher

Human Kinetics

Subject

Rehabilitation,Orthopedics and Sports Medicine,Biophysics

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