Evaluating the ‘cost of generating force’ hypothesis across frequency in human running and hopping

Author:

Allen Stephen P.1ORCID,Beck Owen N.2ORCID,Grabowski Alena M.13ORCID

Affiliation:

1. University of Colorado Boulder 1 Department of Integrative Physiology , , Boulder, CO 80309 , USA

2. Emory University and Georgia Institute of Technology 2 The Wallace H. Coulter Department of Biomedical Engineering , , Atlanta, GA 30332 , USA

3. Eastern Colorado Healthcare System 3 Department of Veterans Affairs , , Denver, CO 80045 , USA

Abstract

ABSTRACT The volume of active muscle and duration of extensor muscle force well explain the associated metabolic energy expenditure across body mass and velocity during level-ground running and hopping. However, if these parameters fundamentally drive metabolic energy expenditure, then they should pertain to multiple modes of locomotion and provide a simple framework for relating biomechanics to metabolic energy expenditure in bouncing gaits. Therefore, we evaluated the ability of the ‘cost of generating force’ hypothesis to link biomechanics and metabolic energy expenditure during human running and hopping across step frequencies. We asked participants to run and hop at 85%, 92%, 100%, 108% and 115% of preferred running step frequency. We calculated changes in active muscle volume, duration of force production and metabolic energy expenditure. Overall, as step frequency increased, active muscle volume decreased as a result of postural changes via effective mechanical advantage (EMA) or duty factor. Accounting for changes in EMA and muscle volume better related to metabolic energy expenditure during running and hopping at different step frequencies than assuming a constant EMA and muscle volume. Thus, to ultimately develop muscle mechanics models that can explain metabolic energy expenditure across different modes of locomotion, we suggest more precise measures of muscle force production that include the effects of EMA.

Funder

McCamish Parkinson's Disease Innovation Program

Publisher

The Company of Biologists

Subject

Insect Science,Molecular Biology,Animal Science and Zoology,Aquatic Science,Physiology,Ecology, Evolution, Behavior and Systematics

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