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Effects of Mechanical Vibrations and Compression on Muscle Contractile Properties and Physiology.

机译:机械振动和压缩对肌肉收缩特性和生理的影响。

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摘要

Human movement involves repeated interactions between the body and the environment. In certain cases interaction is presented in the form of impacts between various body parts and a rigid surface. Impacts were shown to induce mechanical vibrations in the tissues. The effects of vibrations on various tissues have been extensively studied in the last four decades and it was found that most tissues react to vibration by means of mechanical and physiological changes. In particular, muscles were shown to respond to vibrations, however, a clear understanding of the physiological and contractile changes occurring in the muscles are not completely elucidated. This thesis proposes to answer some of these questions. Thus, the effects of vibrations on muscle contraction, muscle tissue oxygenation, hemodynamics and contractile properties were studied in selected muscles. It has been found that vibrations have an impact on all these variables and that in certain cases it is desirable to dampen the vibrations induced in the muscles. The most common damping procedure is compression apparel. However, compression is known to have a number of secondary physiological effects. Since these effects might be crucial for the understanding of various apparel interventions on human performance and functioning in general this thesis has also investigated some of the most common phenomena associated with soft tissue compression. Thus, it has been found that compression can selectively improve blood flow, affect the dynamics of local tissue oxygenation and tissue perfusion and might have an effect on metabolites clearance during exercise and/or during the post exercise recovery phase. The findings presented in this thesis show that both mechanical vibrations and the compression associated with damping apparel can have (sometimes surprising) impacts on the basic properties of human skeletal muscles and possibly on the physiology and mechanics of the body as a whole.
机译:人类运动涉及身体与环境之间的反复相互作用。在某些情况下,相互作用以各种身体部位与刚性表面之间的碰撞形式出现。结果表明,撞击会引起组织中的机械振动。在过去的四十年中,已经广泛研究了振动对各种组织的影响,并且发现大多数组织通过机械和生理变化对振动做出反应。特别是,肌肉显示出对振动的响应,但是,对肌肉中发生的生理变化和收缩变化的清晰理解并没有完全阐明。本文提出回答其中一些问题。因此,在选定的肌肉中研究了振动对肌肉收缩,肌肉组织氧合,血液动力学和收缩特性的影响。已经发现,振动对所有这些变量都有影响,并且在某些情况下,希望衰减在肌肉中引起的振动。最常见的阻尼程序是压缩服装。然而,已知压缩具有许多次要生理作用。由于这些作用对于理解各种服装干预对人类绩效和功能的影响可能至关重要,因此,本文还研究了一些与软组织压迫有关的最常见现象。因此,已经发现压缩可以选择性地改善血流,影响局部组织氧合和组织灌注的动力学,并且可能对运动期间和/或运动后恢复阶段的代谢物清除有影响。本文提出的研究结果表明,机械振动和与减震服装相关的压缩都可能对人体骨骼肌的基本特性以及整个身体的生理和力学产生影响(有时令人惊讶)。

著录项

  • 作者

    Coza, Aurel.;

  • 作者单位

    University of Calgary (Canada).;

  • 授予单位 University of Calgary (Canada).;
  • 学科 Health Sciences Recreation.;Biology Physiology.;Biophysics Biomechanics.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 166 p.
  • 总页数 166
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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