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Research Article
Habitual foot strike pattern does not affect simulated triceps surae muscle metabolic energy consumption during running
Wannes Swinnen, Wouter Hoogkamer, Friedl De Groote, Benedicte Vanwanseele
Journal of Experimental Biology 2019 222: jeb212449 doi: 10.1242/jeb.212449 Published 10 December 2019
Wannes Swinnen
1Human Movement Biomechanics Research Group, Department of Movement Sciences, KU Leuven, 3001 Leuven, Belgium
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  • ORCID record for Wannes Swinnen
  • For correspondence: wannes.swinnen@kuleuven.be
Wouter Hoogkamer
2Department of Kinesiology, University of Massachusetts Amherst, Amherst, MA 01003, USA
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Friedl De Groote
1Human Movement Biomechanics Research Group, Department of Movement Sciences, KU Leuven, 3001 Leuven, Belgium
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Benedicte Vanwanseele
1Human Movement Biomechanics Research Group, Department of Movement Sciences, KU Leuven, 3001 Leuven, Belgium
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ABSTRACT

Foot strike pattern affects ankle joint work and triceps surae muscle–tendon dynamics during running. Whether these changes in muscle–tendon dynamics also affect triceps surae muscle energy consumption is still unknown. In addition, as the triceps surae muscle accounts for a substantial amount of the whole-body metabolic energy consumption, changes in triceps surae energy consumption may affect whole-body metabolic energy consumption. However, direct measurements of muscle metabolic energy consumption during dynamic movements is difficult. Model-based approaches can be used to estimate individual muscle and whole-body metabolic energy consumption based on Hill type muscle models. In this study, we use an integrated experimental and dynamic optimization approach to compute muscle states (muscle forces, lengths, velocities, excitations and activations) of 10 habitual midfoot/forefoot striking and nine habitual rearfoot striking runners while running at 10 and 14 km h−1. The Achilles tendon stiffness of the musculoskeletal model was adapted to fit experimental ultrasound data of the gastrocnemius medialis muscle during ground contact. Next, we calculated triceps surae muscle and whole-body metabolic energy consumption using four different metabolic energy models provided in the literature. Neither triceps surae metabolic energy consumption (P>0.35) nor whole-body metabolic energy consumption (P>0.14) was different between foot strike patterns, regardless of the energy model used or running speed tested. Our results provide new evidence that midfoot/forefoot and rearfoot strike patterns are metabolically equivalent.

FOOTNOTES

  • Competing interests

    The authors declare no competing or financial interests.

  • Author contributions

    Conceptualization: W.S., B.V.; Methodology: W.S., W.H., F.D.G., B.V.; Formal analysis: W.S., W.H., F.D.G., B.V.; Investigation: W.S.; Writing - original draft: W.S.; Writing - review & editing: W.S., W.H., F.D.G., B.V.; Visualization: W.S.; Supervision: W.H., F.D.G., B.V.; Funding acquisition: W.S.

  • Funding

    W.S. is funded by a PhD fellowship from the Fonds Wetenschappelijk Onderzoek (11E3919N).

  • Supplementary information

    Supplementary information available online at http://jeb.biologists.org/lookup/doi/10.1242/jeb.212449.supplemental

  • Received August 15, 2019.
  • Accepted November 2, 2019.
  • © 2019. Published by The Company of Biologists Ltd
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Keywords

  • Dynamic optimization
  • Forefoot strike
  • Gastrocnemius medialis
  • Rearfoot strike
  • Soleus
  • Ultrasound

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Research Article
Habitual foot strike pattern does not affect simulated triceps surae muscle metabolic energy consumption during running
Wannes Swinnen, Wouter Hoogkamer, Friedl De Groote, Benedicte Vanwanseele
Journal of Experimental Biology 2019 222: jeb212449 doi: 10.1242/jeb.212449 Published 10 December 2019
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Research Article
Habitual foot strike pattern does not affect simulated triceps surae muscle metabolic energy consumption during running
Wannes Swinnen, Wouter Hoogkamer, Friedl De Groote, Benedicte Vanwanseele
Journal of Experimental Biology 2019 222: jeb212449 doi: 10.1242/jeb.212449 Published 10 December 2019

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