UFPE, Fisioterapia, Recife, Brazil.
Int J Sports Med. 2013 Dec;34(12):1070-3. doi: 10.1055/s-0033-1345130. Epub 2013 Jun 5.
The aim of this study was to evaluate the effect of swimming exercise, without overloading, on the biomechanical parameters of the calcaneal tendon of rats. 27 male Wistar rats (70 days) were distributed randomly into 2 groups, Control Group (CG; n=15) with restricted movements inside the cage and Swimming Group (SG; n=12), subjected to exercise training in a tank with a water temperature of 30±1°C, for 1 h/day, 5 days/week for 8 weeks. All animals were kept in a reversed light/dark cycle of 12 h with access to food and water ad libitum. After that, they were anesthetized and had their calcaneus tendons collected from their left rear paws. The tendon was submitted to a mechanical test on a conventional test machine. From the stress vs. strain curve, the biomechanical data were analyzed. For the statistical analysis, the Student-T test was used (p<0.05). Of the variables examined, the maximum tension (p=0.009), maximum force (p=0.03), energy of deformation/tendon cross sectional area (p=0.017) and elastic modulus of the tendon (p=0.013) showed positive outcomes in SG. There was no difference in the other parameters. The results indicate that the swimming exercise training, without overloading, was an important stimulus for improving the biomechanical parameters and structural properties of the calcaneal tendon.
本研究旨在评估无负重游泳运动对大鼠跟腱生物力学参数的影响。27 只雄性 Wistar 大鼠(70 天)被随机分为 2 组:对照组(CG;n=15),限制在笼内活动;游泳组(SG;n=12),在水温为 30±1°C 的水箱中进行运动训练,每天 1 小时,每周 5 天,共 8 周。所有动物均保持 12 小时明暗颠倒的循环,自由进食和饮水。之后,将它们麻醉,从左后爪采集跟腱。将肌腱置于常规试验机上进行力学测试。从应力-应变曲线上分析生物力学数据。采用 Student-T 检验进行统计学分析(p<0.05)。在所检查的变量中,SG 的最大张力(p=0.009)、最大力(p=0.03)、变形能/肌腱横截面积(p=0.017)和肌腱弹性模量(p=0.013)均呈阳性结果。其他参数没有差异。结果表明,无负重游泳运动训练是改善跟腱生物力学参数和结构特性的重要刺激因素。