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Standing centre of pressure alters the vibration transmissibility response of the foot

机译:常设压力中心改变了脚的振动传动响应

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摘要

Vibration-white foot as an occupational disease has underscored the need to better understand the vibration response of the foot. While vibration transmissibility data exist for a natural standing position, it is anticipated that weight distribution will affect the response. The purpose of this study was to determine the effects of changes in centre of pressure (COP) on the foot's biomechanical response. Twenty-one participants were exposed to vertical vibration of 30 mm/s, with a sine sweep from 10-200 Hz. Z-axis (vertical) vibration was measured at 24 locations on the right foot, with the COP shifted forward or toward the heel. A mixed model analysis at each location revealed significant differences (p .001) in the transmissibility response when the COP was altered to the forefoot and rearfoot. In general, the peak frequency of the average vibration response increased for a region of the foot when the COP was shifted toward that region. Practitioner Summary: Altering the centre of pressure location resulted in changes in the transmission of vibration through the foot. The forward lean position was associated with the greatest amplitude of vibration transmissibility at the toes. This information is relevant for clinicians studying vibration-induced white-foot and engineers designing protective equipment.
机译:振动白脚随着职业病强调需要更好地了解脚的振动响应。虽然存在用于自然立位置的振动传输性数据,但预期重量分布将影响响应。本研究的目的是确定脚对脚生物力学反应的压力(COP)变化的影响。将二十一位参与者暴露于30毫米/秒的垂直振动,正弦扫描从10-200 Hz。在右脚的24个位置测量Z轴(垂直)振动,警察向前或向后倾斜。当COP被改变到前脚和后脚时,每个位置的混合模型分析显示出透射性响应中的显着差异(P <.001)。通常,当COP向该区域移位时,平均振动响应的平均振动响应的峰值频率增加。从业者摘要:改变压力中心的中心导致通过脚的振动传递变化。前向倾斜位置与脚趾处的振动传动幅度的最大幅度相关联。这些信息与研究振动诱导的白脚和工程师设计保护设备的临床医生有关。

著录项

  • 来源
    《Ergonomics》 |2019年第9期|1202-1213|共12页
  • 作者单位

    Laurentian Univ Bharti Sch Engn Sudbury ON Canada|Laurentian Univ Ctr Res Occupat Safety & Hlth 935 Ramsey Lake Rd Sudbury ON P3E 2C6 Canada;

    Politecn Milan Dept Mech Lecce Italy;

    Laurentian Univ Bharti Sch Engn Sudbury ON Canada|Laurentian Univ Ctr Res Occupat Safety & Hlth 935 Ramsey Lake Rd Sudbury ON P3E 2C6 Canada;

    Laurentian Univ Ctr Res Occupat Safety & Hlth 935 Ramsey Lake Rd Sudbury ON P3E 2C6 Canada|Laurentian Univ Sch Human Kinet Sudbury ON Canada;

  • 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

    Foot-transmitted vibration; resonant frequency; centre of pressure;

    机译:纵向振动;谐振频率;压力中心;
  • 入库时间 2022-08-18 21:22:09

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