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Shorter work boot shaft height improves ankle range of motion and decreases the oxygen cost of work

机译:较短的工作靴高度可提高脚踝运动范围,并降低工作的氧气成本

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摘要

Work boots featuring design elements implemented to protect the foot and lower limb are common in many industries. However, boot design can have negative unintended consequences such as increases in work related fatigue and injury risk. This study compared joint kinematics and the physiological cost of two commercially available steel-toed work boots with different shaft designs worn throughout a simulated work task. A boot with a lower-cut and scalloped shaft allowed greater sagittal plane range of motion at the ankle joint compared to a boot with a higher-cut straight shaft, particularly in the late stance phase of the gait cycle. This was coupled with a decreased physiological cost of treadmill walking (2.6 and 3.1% improvement in oxygen consumption and walking economy, respectively), likely caused by a more efficient gait pattern. A lower-cut and scalloped shaft could lead to decreases in work-related fatigue and the subsequent risk of injuries in workers.Practitioner summary: Gait kinematics and the physiological cost of work boots with different shaft heights has not previously been investigated. A randomised cross-over study design found that a boot with a lower shaft height and scalloped collar improved ankle range of motion and reduced the physiological cost experienced by the wearers.
机译:在许多行业中,设计以保护脚和下肢的设计元素为特色的工作靴。然而,靴子设计可以产生负面意向后果,例如增加相关疲劳和伤害风险的增加。本研究比较了与在整个模拟的工作任务中佩戴的不同轴设计的两个商业钢制工作靴的关节运动学和生理成本。与具有更高切割的直轴的靴子相比,具有低切割和扇形轴的靴子允许更大的矢状平面运动范围,特别是在步态周期的后立场相位中。这与跑步机行走的生理成本降低(分别提高氧气消费和步行经济的提高2.6%和3.1%),可能是由更有效的步态模式引起的。下切和扇形的轴可能导致工作相关的疲劳和随后的工人伤害的风险.PraTitioner摘要:以前还没有研究步态运动学和不同轴高度的工作靴的生理成本。随机交叉的研究设计发现,具有较低轴高度和扇形套环的靴子改善了脚踝运动,并降低了穿着者所经历的生理成本。

著录项

  • 来源
    《Ergonomics》 |2021年第4期|532-544|共13页
  • 作者单位

    Univ Canberra Univ Canberra Res Inst Sport & Exercise UCRISE Bruce Australia;

    Univ Canberra Univ Canberra Res Inst Sport & Exercise UCRISE Bruce Australia;

    Univ Canberra Univ Canberra Res Inst Sport & Exercise UCRISE Bruce Australia;

    Univ Canberra Univ Canberra Res Inst Sport & Exercise UCRISE Bruce Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Work boot design biomechanics walking work task oxygen consumption;

    机译:工作靴设计生物力学行走工作任务氧气消耗;
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