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Intrinsic ankle stiffness during standing increases with ankle torque and passive stretch of the Achilles tendon

机译:在站立期间的固有脚踝僵硬与脚踝扭矩和achilles肌腱的被动拉伸

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摘要

Individuals may stand with a range of ankle angles. Furthermore, shoes or floor surfaces may elevate or depress their heels. Here we ask how these situations impact ankle stiffness and balance. We performed two studies (each with 10 participants) in which the triceps surae, Achilles tendon and aponeurosis were stretched either passively, by rotating the support surface, or actively by leaning forward. Participants stood freely on footplates which could rotate around the ankle joint axis. Brief, small stiffness-measuring perturbations (0.7 deg; 140 ms) were applied at intervals of 4-5 s. In study 1, participants stood at selected angles of forward lean. In study 2, normal standing was compared with passive dorsiflexion induced by 15 deg toes-up tilt of the support surface. Smaller perturbations produced higher stiffness estimates, but for all perturbation sizes stiffness increased with active torque or passive stretch. Sway was minimally affected by stretch or lean, suggesting that this did not underlie the alterations in stiffness. In quiet stance, maximum ankle stiffness is limited by the tendon. As tendon strain increases, it becomes stiffer, causing an increase in overall ankle stiffness, which would explain the effects of leaning. However, stiffness also increased considerably with passive stretch, despite a modest torque increase. We discuss possible explanations for this increase.
机译:个人可以使用一系列脚踝角度。此外,鞋子或地板表面可以提升或压下它们的脚跟。在这里,我们询问这些情况如何影响脚踝僵硬和平衡。我们通过旋转支撑表面,通过旋转支撑表面,通过旋转支撑表面,通过旋转支撑表面,或通过向前旋转,进行两项研究(每次有10名参与者),其中肱三头肌Surae,achilles肌腱和腱膜,或者主动地旋转。参与者在脚踏板上自由地站在脚踝关节轴上。简介,小刚度测量扰动(& 0.7℃)以4-5秒的间隔施用。在研究1中,参与者站在选定的前向倾斜角度。在研究2中,将正常的站立与由支撑表面的15°脚趾倾斜引起的被动背屈进行比较。较小的扰动产生更高的刚度估计,但对于所有扰动尺寸刚度,刚度随着主动扭矩或被动拉伸而增加。摇摆宽度影响伸展或瘦弱,这表明这并未使刚度的变化置于僵硬。在安静的立场,最大踝僵硬度受肌腱的限制。随着肌腱应变的增加,它变得更硬,导致整体踝僵硬度增加,这将解释倾斜的影响。然而,尽管扭矩增加,但被动拉伸,刚度也显着增加。我们讨论了这种增加的可能解释。

著录项

  • 来源
    《Journal of land use science》 |2018年第3期|共21页
  • 作者单位

    Univ Birmingham Sch Sport Exercise &

    Rehabil Sci Birmingham W Midlands England;

    Univ Birmingham Sch Sport Exercise &

    Rehabil Sci Birmingham W Midlands England;

    Univ Birmingham Sch Sport Exercise &

    Rehabil Sci Birmingham W Midlands England;

    Univ Birmingham Sch Sport Exercise &

    Rehabil Sci Birmingham W Midlands England;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

  • 入库时间 2022-08-20 09:30:15

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