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. 2013;21(5):258-61.
doi: 10.1590/S1413-78522013000500003.

How does static stretching influence the tendons mechanical response?

Affiliations

How does static stretching influence the tendons mechanical response?

Nathalia Polisello Rossetto et al. Acta Ortop Bras. 2013.

Abstract

Objective: Analyze in vitro the mechanical response of bovine calcaneus tendons subjected to static stretching in three different intervals (15, 30, 45 s).

Methods: Six groups of bovine calcaneus tendons (n=10) were formed according to the static stretching protocol: three different intervals (15, 30, 45 s) and initial stretching percentage (2.5% and 3.5%). The control group (n=10) did not perform prior stretching. At the end of the stretching tests, the specimens were subjected to stress rupture tests.

Results: The values for force relaxation presented stability after the 30(th) second (p<0.0001) at both levels of deformation. Greater force relaxation (p<0.0026) and the least tensile strength (p=0.0123) was observed in the group that was subjected to the highest stretch percentage (3.5%). No difference was observed between the rupture parameters of the stretch and control groups. The variables, stretch duration and percentage did not demonstrate interaction.

Conclusion: In relation to force relaxation, the 30 second interval seems to be the most effective when stretching tendons. This fact should be considered when establishing new clinical stretching protocols. Laboratory investigation.

Keywords: Biomechanics; Collagen; Tendons; Time.

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Conflict of interest statement

All the authors declare that there is no potential conflict of interest referring to this article.

Figures

Figure 1
Figure 1. Mean values and standard deviation of the tensile strength obtained at the different stretching levels (2.5% and 3.5%) and time intervals (15 s, 30 s and 45 s) studied..

References

    1. Osinbowale OO, Milani RV. Benefits of exercise therapy in peripheral arterial disease. Prog Cardiovasc Dis. 2011;53(6):447–453. - PubMed
    1. Walsh NP, Gleeson M, Shephard RJ, Gleeson M, Woods JA, Bishop NC, et al. Position statement. Part one: Immune function and exercise. Exerc Immunol Rev. 2011;17:6–63. - PubMed
    1. Bandy WD, Irion JM, Briggler M. The effect of static stretch and dynamic range of motion training on the flexibility of the hamstring muscles. J Orthop Sports Phys Ther. 1998;27(4):295–300. - PubMed
    1. Bixler B, Jones RL. High-school football injuries: effects of a post-halftime warm-up and stretching routine. Fam Pract Res J. 1992;12(2):131–139. - PubMed
    1. Rosenbaum D, Hennig EM. The influence of stretching and warm-up exercises on Achilles tendon reflex activity. J Sports Sci. 1995;13(6):481–490. - PubMed

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