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The role of muscle fatigue on movement timing and stability during repetitive tasks.

机译:在重复性任务中,肌肉疲劳对运动时机和稳定性的作用。

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摘要

Repetitive stress injuries are common in the workplace where workers perform repetitive tasks continuously throughout the day. Muscle fatigue may lead to injury either directly through muscle damage or indirectly through changes in coordination, development of muscle imbalances, kinematic and muscle activation variability, and/or movement instability. To better understand the role of muscle fatigue in changes in movement parameters, we studied how muscle fatigue and muscle imbalances affected the control of movement timing, variability, and stability during a repetitive upper extremity sawing task.;Since muscle fatigue leads to delayed muscle and cognitive response times, we might expect the ability to maintain movement timing would decline with muscle fatigue. We compared timing errors pre- and post-fatigue as subjects performed this repetitive sawing task synchronized with a metronome using standard techniques and a goal-equivalent manifold (GEM) approach. No differences in basic performance parameters were found. Significant decreases in the temporal correlations of the timing errors and velocities indicated that subjects made more frequent corrections to their movements post-fatigue.;Muscle fatigue may lead to movement instability through a variety of mechanisms including delayed muscle response times and muscle imbalances. To measure movement stability, we must first define a state space that describes the movement. We compared a variety of different state space definitions and found that state spaces composed of angles and velocities with little redundant information provide the most consistent results. We then studied the affect of fatigue on the shoulder flexor muscles and general fatigue of the arm on movement stability. Subjects were able to maintain stability in spite of muscle fatigue, shoulder strength imbalance and decreased muscle cocontraction.;Little is known about the time course for adaptations in response to fatigue. We studied the effect of muscle fatigue on movement coordination, kinematic variability and movement stability while subjects performed the same sawing task at two work heights. Increasing the height of the task caused subjects to make more adjustments to their movement patterns in response to muscle fatigue. Subjects also exhibited some increases in kinematic variability at the shoulder but no changes in movement stability. These findings suggest that people alter their kinematic patterns in response to fatigue possibly to maintain stability at the expense of increased variability.
机译:重复性压力伤害在工作人员中很常见,在工作场所中,工人全天不间断地执行重复性任务。肌肉疲劳可能直接通过肌肉损伤而导致伤害,或者通过协调性变化,肌肉失衡的发展,运动和肌肉激活变异性和/或运动不稳定性间接导致伤害。为了更好地了解肌肉疲劳在运动参数变化中的作用,我们研究了肌肉疲劳和肌肉失衡如何在重复的上肢锯切任务中影响运动时间,可变性和稳定性的控制。认知反应时间,我们可以预期,随着肌肉疲劳,保持运动时间的能力会下降。我们比较了受试者在疲劳前和疲劳后的计时误差,这些受试者使用标准技术和等效目标流形(GEM)方法执行了与节拍器同步的重复锯切任务。基本性能参数没有发现差异。时间误差和速度的时间相关性的显着降低表明受试者在疲劳后对其动作的校正更加频繁。肌肉疲劳可能通过多种机制导致运动不稳定,包括延迟的肌肉反应时间和肌肉失衡。要测量运动稳定性,我们必须首先定义一个描述运动的状态空间。我们比较了各种不同的状态空间定义,发现由角度和速度组成且几乎没有冗余信息的状态空间提供了最一致的结果。然后,我们研究了疲劳对肩膀屈肌和手臂总体疲劳对运动稳定性的影响。尽管肌肉疲劳,肩膀力量失衡和肌肉收缩不足,受试者仍能够保持稳定。对疲劳做出适应的时间安排知之甚少。我们研究了当受试者在两个工作高度下执行相同的锯切任务时,肌肉疲劳对运动协调性,运动学变异性和运动稳定性的影响。任务高度的增加导致受试者响应于肌肉疲劳而对其运动方式进行更多的调整。受试者的肩膀运动学变异性也有所增加,但运动稳定性没有变化。这些发现表明,人们响应疲劳而改变运动学模式,可能以增加可变性为代价来维持稳定性。

著录项

  • 作者

    Gates, Deanna Helene.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Health Sciences Occupational Health and Safety.;Engineering Biomedical.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 168 p.
  • 总页数 168
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 职业性疾病预防;机械、仪表工业;生物医学工程;
  • 关键词

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