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Varying Whole Body Vibration amplitude differentially affects tendon and ligament structural and material properties.

机译:变化的全身振动幅度会不同地影响肌腱和韧带的结构和材料特性。

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摘要

Whole Body Vibration (WBV) is becoming increasingly popular for bone maintenance and muscle strengthening applications. Low-magnitude WBV (1 G) has shown evidence for increasing bone density, bone formation rate, as well as bone strength. High- magnitude WBV (>1 G) has also been found to increase muscle size, strength, and reaction time. Our study is the first to examine the biomechanical effects of both low-magnitude and high-magnitude WBV on tendons and ligaments. It was hypothesized that both low vibration (0.3 G) and high vibration (2 G) would strengthen ligament and tendon but that low vibration would be more effective because high vibration may be near the threshold of tissue overloading. A total of 36 rats were divided into three groups: control, low-vibration (0.3 G), high-vibration (2 G). Experimental groups were vibrated 20 minutes a day, 5 days a week, over 5 weeks with a 30 Hz sinusoidal stimulus. Tensile testing and histological examination were carried out on the rats' Achilles tendons, patellar tendons, anterior cruciate ligaments, and medial collateral ligaments. Differences in biomechanical data and histology of the high-vibration group suggest that high-magnitude vibration may be harmful to ligaments and tendons. No significant differences in the biomechanical properties were observed with the low-vibration group relative to the control suggesting that little effect exists or that a longer duration or higher-magnitude stimulus may be required to observe significant effects.
机译:全身振动(WBV)在骨骼维护和肌肉增强应用中越来越受欢迎。低幅WBV(<1 G)已显示出增加骨密度,骨形成速率以及骨强度的证据。还发现高强度WBV(> 1 G)会增加肌肉的大小,强度和反应时间。我们的研究是第一个研究低强度和高强度WBV对肌腱和韧带的生物力学影响的研究。假设低振动(0.3 G)和高振动(2 G)都会增强韧带和肌腱,但低振动会更有效,因为高振动可能接近组织超负荷的阈值。将总共​​36只大鼠分为三组:对照组,低振动(0.3 G),高振动(2 G)。实验组每周30天,每天5分钟,每天20分钟,振动频率为30 Hz的正弦振动。对大鼠的跟腱,pa骨肌腱,前交叉韧带和内侧副韧带进行拉伸测试和组织学检查。高振动组的生物力学数据和组织学差异表明高强度振动可能对韧带和肌腱有害。相对于对照组,低振动组未观察到生物力学性能的显着差异,表明几乎没有影响,或者可能需要更长的持续时间或更高幅度的刺激才能观察到显着的影响。

著录项

  • 作者

    Keller, Benjamin Verhoogh.;

  • 作者单位

    The University of North Carolina at Chapel Hill.;

  • 授予单位 The University of North Carolina at Chapel Hill.;
  • 学科 Engineering Biomedical.;Health Sciences Medicine and Surgery.
  • 学位 M.S.
  • 年度 2012
  • 页码 76 p.
  • 总页数 76
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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