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Effects of moving environments upon the physical demands of heavy materials handling operators.

机译:移动环境对重型物料搬运操作员的身体需求的影响。

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摘要

Introduction. Commercial fishing, cargo and passenger shipping, as well as offshore oil production are essential industrial activities in Canada, as well as other parts of the world. Mariners have to concentrate on maintaining balance as well as be prepared for motion-induced interruptions while performing work-related tasks, such as lifting. The purpose of this study was to assess the effects of a moving platform and load stability on recruitment of selected trunk musculature and thoraco-lumbar kinematics during common lifting tasks. Methods. Nineteen healthy male participants (22.78 +/- 1.72 years, 1.81 +/- .06 m, 82.42 +/- 12.08 kg) were recruited. Loads and conditions were manipulated to determine the effects of instability during manual materials handling tasks. Participants lifted four different loads (10kg stable, 10kg unstable, 15kg stable, 15kg unstable) onto a shelf in one lab condition and three different ship conditions (pure roll, quartering seas, and pure pitch) while wearing EMG electrodes and a Lumbar Motion Monitor (LMM). Statistical analysis including a repeated measures ANOVA was used to test for significant differences between loads and conditions for both electromyography (EMG) and LMM data. Results. The mean and maximum electromyography (%Maximal Voluntary Contraction) showed significant differences due to load for all muscles except the left latissimus dorsi but showed a significant difference due to condition for the left latissimus dorsi only. For all loads, the pitch condition produced the largest maximum sagittal velocities and the lab condition produced the smallest. There were significant mean and maximum velocity differences due to condition in all three planes. Conclusion. The pitch condition proved to be the most difficult condition to maintain stability regardless of whether or not a load was being handled. Motion direction of a platform, occurring during a lifting task, did not significantly increase muscular activity about the selected trunk musculature but did significantly increase thoraco-lumbar kinematics. Lifting unstable loads, compared to stable loads, in moving environments did significantly increase muscular activity about the selected trunk musculature but did not significantly increase thoraco-lumbar kinematics.
机译:介绍。商业捕鱼,货物和客运以及海上石油生产是加拿大以及世界其他地区的重要工业活动。在执行与工作相关的任务(例如举升)时,水手们必须专注于保持平衡,并为运动引起的中断做好准备。这项研究的目的是评估运动平台和负荷稳定性对常见举重任务期间选定躯干肌肉组织和胸腰运动的招募的影响。方法。招募了19名健康男性参与者(22.78 +/- 1.72岁,1.81 +/- .06 m,82.42 +/- 12.08 kg)。控制负载和条件以确定在手动物料处理任务过程中不稳定的影响。参加者在佩戴EMG电极和腰部运动监测器的情况下,在一个实验室条件和三种不同的船况(倾翻,四分之一海和纯俯仰)下,将四种不同的载荷(稳定的10kg,不稳定的10kg,稳定的15kg,稳定的15kg)举到架子上。 (LMM)。统计分析(包括重复测量)使用方差分析(ANOVA)来测试肌电图(EMG)和LMM数据的负载和条件之间的显着差异。结果。平均肌电图和最大肌电图(最大自愿收缩百分比)显示除左背阔肌以外的所有肌肉的负荷所致的显着差异,但仅由于左背阔肌的状况而显示显着的差异。对于所有负载,俯仰条件产生最大的矢状速度,而实验室条件产生最小的矢状速度。由于在所有三个平面上的状况,均存在明显的平均和最大速度差异。结论。无论是否处理负载,俯仰条件都是保持稳定性最困难的条件。在举升任务期间发生的平台运动方向不会显着增加所选躯干肌肉组织的肌肉活动,但会显着增加胸腰腰运动量。与稳定的负载相比,在移动的环境中举起不稳定的负载确实显着增加了所选躯干肌肉组织的肌肉活动,但并未显着增加胸腰段运动学。

著录项

  • 作者

    Matthews, Julie D.;

  • 作者单位

    University of New Brunswick (Canada).;

  • 授予单位 University of New Brunswick (Canada).;
  • 学科 Health Sciences Occupational Health and Safety.; Biology Physiology.
  • 学位 M.Sc.
  • 年度 2005
  • 页码 133 p.
  • 总页数 133
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 职业性疾病预防;
  • 关键词

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