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证据表明,衰老不会影响短跑大师的肌肉-肌腱单位适应的均匀性。

Evidence that ageing does not influence the uniformity of the muscle-tendon unit adaptation in master sprinters.

机构信息

Sport and Exercise Science Research Centre, School of Applied Sciences, London South Bank University, United Kingdom.

Sport and Exercise Science Research Centre, School of Applied Sciences, London South Bank University, United Kingdom.

出版信息

J Biomech. 2021 May 7;120:110364. doi: 10.1016/j.jbiomech.2021.110364. Epub 2021 Mar 9.

DOI:10.1016/j.jbiomech.2021.110364
PMID:33743395
Abstract

Differences in the adaptation processes between muscle and tendon in response to mechanical loading can lead to non-uniform mechanical properties within the muscle-tendon unit (MTU), potentially increasing injury risk. The current study analysed the mechanical properties of the triceps surae (TS) MTU in 10 young (YS; 22 ± 3 yrs) and 10 older (OS; age 65 ± 8 yrs; i.e. master) (inter)national level sprinters and 11 young recreationally active adults (YC; 23 ± 3 yrs) to detect possible non-uniformities in muscle and tendon adaptation due to habitual mechanical loading and ageing. Triceps surae muscle strength, tendon stiffness and maximal tendon strain were assessed in both legs during maximal voluntary isometric plantarflexion contractions via dynamometry and ultrasonography. Irrespective of the leg, OS and YC in comparison to YS demonstrated significantly (P < 0.05) lower TS muscle strength and tendon stiffness, with no differences between OS and YC. Furthermore, no group differences were detected in the maximal tendon strain (average of both legs: OS 3.7 ± 0.8%, YC 4.4 ± 0.8% and YS 4.3 ± 0.9%) as well as in the inter-limb symmetry indexes in muscle strength, tendon stiffness and maximal tendon strain (range across groups: -5.8 to 4.9%; negative value reflects higher value for the non-preferred leg). Thus, the findings provide no clear evidence for a disruption in the TS MTU uniformity in master sprinters, demonstrating that ageing tendons can maintain their integrity to meet the increased functional demand due to elite sports.

摘要

肌肉和肌腱对机械负荷的适应过程存在差异,可能导致肌肉-肌腱单元(MTU)内的力学性质不均匀,从而增加受伤风险。本研究分析了 10 名年轻(YS;22 ± 3 岁)和 10 名年老(OS;年龄 65 ± 8 岁;即国家级)国际水平短跑运动员和 11 名年轻的业余活动成年人(YC;23 ± 3 岁)的比目鱼肌(TS)MTU 的力学性质,以检测由于习惯性机械负荷和衰老导致的肌肉和肌腱适应的可能不均匀性。通过测力和超声检查,在最大自主等长跖屈收缩期间,在双腿上评估比目鱼肌肌肉力量、肌腱硬度和最大肌腱应变。无论哪条腿,OS 和 YC 与 YS 相比,TS 肌肉力量和肌腱硬度均显著降低(P < 0.05),而 OS 和 YC 之间无差异。此外,在最大肌腱应变(双腿平均值:OS 3.7 ± 0.8%、YC 4.4 ± 0.8%和 YS 4.3 ± 0.9%)以及肌肉力量、肌腱硬度和最大肌腱应变的肢体间对称指数(跨组范围:-5.8 至 4.9%;负值表示非优势腿的数值较高)方面,各组之间也没有差异。因此,这些发现没有提供明显证据表明在高级短跑运动员中 TS MTU 不匀质性受到破坏,这表明老化的肌腱可以保持其完整性,以满足由于精英运动而增加的功能需求。

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