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年轻人力量训练期间跟腱的适应性变化

Achilles tendon adaptation during strength training in young adults.

作者信息

Urlando Alessandro, Hawkins David

机构信息

Section of Neurobiology, Physiology and Behavior, University of California-Davis, Davis, CA 95616, USA.

出版信息

Med Sci Sports Exerc. 2007 Jul;39(7):1147-52. doi: 10.1249/mss.0b013e31805371d1.

Abstract

PURPOSE

Tendons are specialized musculoskeletal structures responsible for transferring forces between muscles and bones. To maintain joint mechanics and structural integrity, tendons must adapt to changes in mechanical loading, but little is known about the interaction between muscle and tendon adaptations in vivo. We tested the hypothesis that tendons adapt to changes in muscle strength to maintain strains within a preferred operating range.

METHODS

The right lower leg of 10 male subjects, age 24.9 +/- 3.4 yr (mean +/- SD), mass 78.1 +/- 9.7 kg, and height 176.5 +/- 7.2 cm, were tested before and during weeks 1, 2, 4, 6, and 8 of an 8-wk ankle plantar flexion strength training program. Subjects performed isometric plantar flexion efforts slowly ramping up from rest to a maximum effort. Plantar flexion force, Achilles tendon deformation, and cross-sectional area were measured. Triceps surae muscle force (assumed equal to Achilles tendon force), normalized force, and Achilles tendon stress and strain were calculated. Achilles tendon strains during maximum plantar flexion efforts (epsilon(max)) were compared between weeks to test the hypothesis. Repeated-measures ANOVA was used to test for significant changes during the 8 wk, with alpha = 0.05 used as the criterion for significance.

RESULTS

There were no significant differences in the group's mean percent or absolute change in epsilon(max) (P = 0.607 and 0.351, respectively) despite a 21.4% average increase in muscle strength during the 8 wk.

CONCLUSIONS

This is the first study that quantifies Achilles tendon strain throughout a strength training program. Findings indicate that the Achilles tendon adapts quickly to muscle strength training and experiences relatively little change in peak strain despite large increases in muscle strength.

摘要

目的

肌腱是专门的肌肉骨骼结构,负责在肌肉和骨骼之间传递力量。为维持关节力学和结构完整性,肌腱必须适应机械负荷的变化,但关于体内肌肉与肌腱适应性之间的相互作用,我们所知甚少。我们检验了这样一个假设,即肌腱会适应肌肉力量的变化,以将应变维持在一个优选的工作范围内。

方法

对10名男性受试者的右小腿进行测试,受试者年龄为24.9±3.4岁(均值±标准差),体重78.1±9.7千克,身高176.5±7.2厘米,测试时间为为期8周的踝关节跖屈力量训练计划的第1、2、4、6和8周,以及训练前。受试者进行等长跖屈用力,从休息状态缓慢增加至最大用力。测量跖屈力、跟腱变形和横截面积。计算小腿三头肌肌力(假定等于跟腱力)、标准化力以及跟腱应力和应变。比较各周之间最大跖屈用力时的跟腱应变(ε(max)),以检验该假设。采用重复测量方差分析来检验8周期间的显著变化,显著性标准设定为α = 0.05。

结果

尽管在8周期间肌肉力量平均增加了21.4%,但该组ε(max)的平均百分比变化或绝对变化均无显著差异(P值分别为0.607和0.351)。

结论

这是第一项在整个力量训练计划中对跟腱应变进行量化的研究。研究结果表明,跟腱能快速适应肌肉力量训练,尽管肌肉力量大幅增加,但其峰值应变的变化相对较小。

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