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article 2021 13 pages

Quantifying mechanical loading and elastic strain energy of the human Achilles tendon during walking and running

Mohamadreza Kharazi, Sebastian Bohm, Christos Theodorakis, Falk Mersmann, Adamantios Arampatzis

Journal
Scientific Reports
DOI
10.1038/s41598-021-84847-w
Publication type
Original Research
Population
human
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Abstract

The purpose of the current study was to assess in vivo Achilles tendon (AT) mechanical loading and strain energy during locomotion. We measured AT length considering its curve-path shape. Eleven participants walked at 1.4 m/s and ran at 2.5 m/s and 3.5 m/s on a treadmill. The AT length was defined as the distance between its origin at the gastrocnemius medialis myotendinous junction (MTJ) and the calcaneal insertion. The MTJ was tracked using ultrasonography and projected to the reconstructed skin surface to account for its misalignment. Skin-to-bone displacements were assessed during a passive rotation (5°/s) of the ankle joint. Force and strain energy of the AT during locomotion were calculated by fitting a quadratic function to the experimentally measured tendon force–length curve obtained from maximum voluntary isometric contractions. The maximum AT strain and force were affected by speed (p 

Description

The study assesses in vivo Achilles tendon mechanical loading and strain energy during walking and running.