Age-related changes in gait biomechanics and their impact on the metabolic cost of walking: Report from a National Institute on Aging workshop

Katherine A. Boyer*, Kate L. Hayes, Brian R. Umberger, Peter Gabriel Adamczyk, Jonathan F. Bean, Jennifer S. Brach, Brian C. Clark, David J. Clark, Luigi Ferrucci, James Finley, Jason R. Franz, Yvonne M. Golightly, Tibor Hortobágyi, Sandra Hunter, Marco Narici, Barbara Nicklas, Thomas Roberts, Gregory Sawicki, Eleanor Simonsick, Jane A. Kent

*Corresponding author for this work

Research output: Contribution to journalReview articlepeer-review

35 Citations (Scopus)
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Abstract

Changes in old age that contribute to the complex issue of an increased metabolic cost of walking (mass-specific energy cost per unit distance traveled) in older adults appear to center at least in part on changes in gait biomechanics. However, age-related changes in energy metabolism, neuromuscular function and connective tissue properties also likely contribute to this problem, of which the consequences are poor mobility and increased risk of inactivity-related disease and disability. The U.S. National Institute on Aging convened a workshop in September 2021 with an interdisciplinary group of scientists to address the gaps in research related to the mechanisms and consequences of changes in mobility in old age. The goal of the workshop was to identify promising ways to move the field forward toward improving gait performance, decreasing energy cost, and enhancing mobility for older adults. This report summarizes the workshop and brings multidisciplinary insight into the known and potential causes and consequences of age-related changes in gait biomechanics. We highlight how gait mechanics and energy cost change with aging, the potential neuromuscular mechanisms and role of connective tissue in these changes, and cutting-edge interventions and technologies that may be used to measure and improve gait and mobility in older adults. Key gaps in the literature that warrant targeted research in the future are identified and discussed.

Original languageEnglish
Article number112102
Number of pages11
JournalExperimental Gerontology
Volume173
DOIs
Publication statusPublished - Mar-2023

Keywords

  • Fatigue
  • Mobility
  • Muscle energetics
  • Tendon
  • Wearable technology

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