Literature DB >> 21625048

In vivo investigation of tendon responses to mechanical loading.

K M Heinemeier1, M Kjaer.   

Abstract

Tendons transmit skeletal muscle forces to bone and are essential in all voluntary movement. In turn, movement appears to affect tendon properties, and in recent years considerable effort has been put into discovering how tendon tissue responds to mechanical stimuli in vivo. Months and years of mechanical loading can influence the gross morphology of tendon, seen as an increase tendon cross sectional area (CSA). Similarly, tendon stiffness appears to be affected by weeks to months of loading. Increased stiffness can relate to changes in CSA and/or tendon material properties (modulus), though the relative contribution of these parameters is largely unclear. The possible mechanisms behind alterations in tendon material properties include changes in collagen fibril morphology and levels of cross-linking between collagen molecules. Furthermore, increased levels of collagen synthesis and expression are seen as a response to acute exercise and training, and may be a central parameter in tendon adaptation to loading. There are indications that this collagen-induction relates to the auto-/paracrine action of collagen-stimulating growth factors, such as TGFβ-1 and IGF-I, which are expressed in response to mechanical stimuli.

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Year:  2011        PMID: 21625048

Source DB:  PubMed          Journal:  J Musculoskelet Neuronal Interact        ISSN: 1108-7161            Impact factor:   2.041


  49 in total

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Review 7.  Tendon mechanobiology: Current knowledge and future research opportunities.

Authors:  Michael Lavagnino; Michelle E Wall; Dianne Little; Albert J Banes; Farshid Guilak; Steven P Arnoczky
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8.  No inflammatory gene-expression response to acute exercise in human Achilles tendinopathy.

Authors:  Jessica Pingel; Ulrich Fredberg; Lone Ramer Mikkelsen; Peter Schjerling; Katja Maria Heinemeier; Michael Kjaer; Adrian Harisson; Henning Langberg
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9.  Quantification of cell density in rat Achilles tendon: development and application of a new method.

Authors:  Christian Couppé; René B Svensson; Katja M Heinemeier; Emilie Wøjdemann Thomsen; Monika Lucia Bayer; Lise Christensen; Michael Kjær; S Peter Magnusson; Peter Schjerling
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10.  Biomechanical comparison of 3 ankle braces with and without free rotation in the sagittal plane.

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