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Using Peak and Cumulative Spinal Loading to Assess Jobs, Job Rotation and Engineering Controls

机译:使用峰值和累积脊柱负荷评估工作,工作轮换和工程控制

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摘要

Peak and cumulative forces on spinal structures have been identified as significant and statistically independent risk factors for reporting low back pain (LBP). This paper describes a software based approach which utilizes these risk factors to quantitatively predict the reporting of LBP by utilizing a Low Back Pain Reporting Index Score (LBPRI). Two automotive manufacturing jobs were assessed utilizing this approach and these results were utilized in the development of a specific administrative and engineering control. Analysis of the jobs with the controls in place indicated that the administrative control, job rotation, was less effective than assumed and produced an overall increase in the risk of reporting LBP. The engineering control resulted in an overall decrease in the risk of reporting LBP and this beneficial risk reduction would be delivered to any worker that performed this job. The results of this study indicate that both peak and cumulative loading must be considered in order to properly appreciate the risk of injury and the consequences associated with the implementation of administrative and engineering controls.
机译:脊柱结构上的峰值力和累积力已被确定为报告下背痛(LBP)的重要且统计学上独立的危险因素。本文介绍了一种基于软件的方法,利用这些风险因素通过腰痛报告指数评分(LBPRI)定量预测LBP的报告。使用此方法评估了两个汽车制造工作,并将这些结果用于开发特定的行政和工程控制。对具有适当控制措施的职位进行的分析表明,行政控制,职位轮换的有效性低于预期,并导致报告LBP的风险整体增加。工程控制导致报告LBP的风险整体降低,这种有益的风险降低将传递给执行此工作的任何工人。这项研究的结果表明,必须同时考虑峰值负荷和累积负荷,以正确认识伤害的风险以及与行政和工程控制的实施相关的后果。

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    Frazer Mardy B;

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  • 年度 2003
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