Literature DB >> 17931846

Lateral force transmission between human tendon fascicles.

Bjarki T Haraldsson1, Per Aagaard, Klaus Qvortrup, Jens Bojsen-Moller, Michael Krogsgaard, Satu Koskinen, Michael Kjaer, S Peter Magnusson.   

Abstract

Whether adjacent collagen fascicles transmit force in parallel is unknown. The purpose of the present study was to examine the magnitude of lateral force transmission between adjacent collagen fascicles from the human patellar and Achilles tendon. From each sample two adjacent strands of fascicles (phi 300-530 mum) enclosed in a fascicular membrane were dissected. The specimen was deformed to approximately 3% strain in three independent load-displacement cycles in a small-scale tensile testing device. Cycle 1: the fascicles and the fascicular membrane were intact. Cycle 2: one fascicle was transversally cut while the other fascicle and the fascicular membrane were kept intact. Cycle 3: both fascicles were cut in opposite ends while the fascicular membrane was left intact. A decline in peak force of 45% and 55% from cycle 1 to cycle 2, and 93% and 92% from cycle 2 to cycle 3 was observed in the patellar and Achilles tendon fascicles, respectively. A decline in stiffness of 39% and 60% from cycle 1 to cycle 2, and of 93% and 100% from cycle 2 to cycle 3 was observed in the patellar and Achilles tendon fascicles, respectively. The present data demonstrate that lateral force transmission between adjacent collagen fascicles in human tendons is small or negligible, suggesting that tendon fascicles largely act as independent structures and that force transmission principally takes place within the individual fascicles.

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Year:  2007        PMID: 17931846     DOI: 10.1016/j.matbio.2007.09.001

Source DB:  PubMed          Journal:  Matrix Biol        ISSN: 0945-053X            Impact factor:   11.583


  24 in total

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5.  Elucidation of extracellular matrix mechanics from muscle fibers and fiber bundles.

Authors:  Gretchen A Meyer; Richard L Lieber
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6.  Non-uniform in vivo deformations of the human Achilles tendon during walking.

Authors:  Jason R Franz; Laura C Slane; Kristen Rasske; Darryl G Thelen
Journal:  Gait Posture       Date:  2014-10-12       Impact factor: 2.840

7.  The mechanical properties of tail tendon fascicles from lubricin knockout, wild type and heterozygous mice.

Authors:  John Reuvers; Andrew R Thoreson; Chunfeng Zhao; Ling Zhang; Gregory D Jay; Kai-Nan An; Matthew L Warman; Peter C Amadio
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8.  Ultrasound speckle tracking of Achilles tendon in individuals with unilateral tendinopathy: a pilot study.

Authors:  Christian Couppé; René B Svensson; Christian Orhammer Josefsen; Esben Kjeldgaard; S Peter Magnusson
Journal:  Eur J Appl Physiol       Date:  2020-02-14       Impact factor: 3.078

9.  Specimen dimensions influence the measurement of material properties in tendon fascicles.

Authors:  Kirsten Legerlotz; Graham P Riley; Hazel R C Screen
Journal:  J Biomech       Date:  2010-05-18       Impact factor: 2.712

10.  Micromechanical model of a surrogate for collagenous soft tissues: development, validation and analysis of mesoscale size effects.

Authors:  Shawn P Reese; Benjamin J Ellis; Jeffrey A Weiss
Journal:  Biomech Model Mechanobiol       Date:  2013-02-12
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