Do humans optimally exploit redundancy to control step variability in walking?
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ABSTRACT: It is widely accepted that humans and animals minimize energetic cost while walking. While such principles predict average behavior, they do not explain the variability observed in walking. For robust performance, walking movements must adapt at each step, not just on average. Here, we propose an analytical framework that reconciles issues of optimality, redundancy, and stochasticity. For human treadmill walking, we defined a goal function to formulate a precise mathematical definition of one possible control strategy: maintain constant speed at each stride. We recorded stride times and stride lengths from healthy subjects walking at five speeds. The specified goal function yielded a decomposition of stride-to-stride variations into new gait variables explicitly related to achieving the hy
SUBMITTER: Dingwell JB
PROVIDER: S-EPMC2904769 | biostudies-literature | 2010 Jul
REPOSITORIES: biostudies-literature
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