Literature DB >> 24948642

Tendon elastic strain energy in the human ankle plantar-flexors and its role with increased running speed.

Adrian Lai1, Anthony G Schache1, Yi-Chung Lin1, Marcus G Pandy2.   

Abstract

The human ankle plantar-flexors, the soleus and gastrocnemius, utilize tendon elastic strain energy to reduce muscle fiber work and optimize contractile conditions during running. However, studies to date have considered only slow to moderate running speeds up to 5 m s(-1). Little is known about how the human ankle plantar-flexors utilize tendon elastic strain energy as running speed is advanced towards maximum sprinting. We used data obtained from gait experiments in conjunction with musculoskeletal modeling and optimization techniques to calculate muscle-tendon unit (MTU) work, tendon elastic strain energy and muscle fiber work for the ankle plantar-flexors as participants ran at five discrete steady-state speeds ranging from jogging (~2 m s(-1)) to sprinting (≥8 m s(-1)). As running speed progressed from jogging to sprinting, the contribution of tendon elastic strain energy to the positive work generated by the MTU increased from 53% to 74% for the soleus and from 62% to 75% for the gastrocnemius. This increase was facilitated by greater muscle activation and the relatively isometric behavior of the soleus and gastrocnemius muscle fibers. Both of these characteristics enhanced tendon stretch and recoil, which contributed to the bulk of the change in MTU length. Our results suggest that as steady-state running speed is advanced towards maximum sprinting, the human ankle plantar-flexors continue to prioritize the storage and recovery of tendon elastic strain energy over muscle fiber work.
© 2014. Published by The Company of Biologists Ltd.

Entities:  

Keywords:  Achilles tendon strain; Efficiency; Human gait; Muscle fiber; Muscle force; Musculoskeletal modeling; Sprinting

Mesh:

Year:  2014        PMID: 24948642     DOI: 10.1242/jeb.100826

Source DB:  PubMed          Journal:  J Exp Biol        ISSN: 0022-0949            Impact factor:   3.312


  26 in total

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Authors:  Adrian Lai; Anthony G Schache; Nicholas A T Brown; Marcus G Pandy
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Authors:  Adrian K M Lai; Taylor J M Dick; Nicholas A T Brown; Andrew A Biewener; James M Wakeling
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8.  Effects of two neuromuscular training programs on running biomechanics with load carriage: a study protocol for a randomised controlled trial.

Authors:  Bernard X W Liew; Susan Morris; Justin W L Keogh; Brendyn Appleby; Kevin Netto
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10.  Stretching Your Energetic Budget: How Tendon Compliance Affects the Metabolic Cost of Running.

Authors:  Thomas K Uchida; Jennifer L Hicks; Christopher L Dembia; Scott L Delp
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