The Energy of Muscle Contraction. II. Transverse Compression and Work.

3D compression deformation energy finite element model muscle tissue transverse

Journal

Frontiers in physiology
ISSN: 1664-042X
Titre abrégé: Front Physiol
Pays: Switzerland
ID NLM: 101549006

Informations de publication

Date de publication:
2020
Historique:
received: 27 02 2020
accepted: 07 10 2020
entrez: 7 12 2020
pubmed: 8 12 2020
medline: 8 12 2020
Statut: epublish

Résumé

In this study we examined how the strain energies within a muscle are related to changes in longitudinal force when the muscle is exposed to an external transverse load. We implemented a three-dimensional (3D) finite element model of contracting muscle using the principle of minimum total energy and allowing the redistribution of energy through different strain energy-densities. This allowed us to determine the importance of the strain energy-densities to the transverse forces developed by the muscle. We ran a series of

Identifiants

pubmed: 33281608
doi: 10.3389/fphys.2020.538522
pmc: PMC7689187
doi:

Types de publication

Journal Article

Langues

eng

Pagination

538522

Informations de copyright

Copyright © 2020 Ryan, Domínguez, Ross, Nigam and Wakeling.

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Auteurs

David S Ryan (DS)

Department of Biomedical Physiology and Kinesiology, Simon Fraser University, Burnaby, BC, Canada.

Sebastián Domínguez (S)

Department of Mathematics, Simon Fraser University, Burnaby, BC, Canada.

Stephanie A Ross (SA)

Department of Biomedical Physiology and Kinesiology, Simon Fraser University, Burnaby, BC, Canada.

Nilima Nigam (N)

Department of Mathematics, Simon Fraser University, Burnaby, BC, Canada.

James M Wakeling (JM)

Department of Biomedical Physiology and Kinesiology, Simon Fraser University, Burnaby, BC, Canada.
Department of Mathematics, Simon Fraser University, Burnaby, BC, Canada.

Classifications MeSH