飞机行李搬运工的躯干和上臂姿势和动作。

Annals of Occupational Hygiene Pub Date : 2016-10-01 Epub Date: 2016-07-14 DOI:10.1093/annhyg/mew043
Jens Wahlström, Eva Bergsten, Catherine Trask, Svend Erik Mathiassen, Jennie Jackson, Mikael Forsman
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引用次数: 39

摘要

目的:本研究评估了瑞典机场行李搬运工全班次躯干和上臂姿势暴露的幅度、频率和持续时间,旨在确定坡道(装卸飞机)和行李分拣区的工人之间的暴露是否不同。方法:在瑞典一个大型机场工作的27名男性行李搬运工的三个完整轮班期间,使用倾斜仪测量躯干和上臂姿势。16名行李搬运工在坡道上工作,11名在分拣区工作。计算总结姿态和运动的变量,并使用单向随机效应模型中的限制最大似然算法估计受试者之间和受试者内部(天之间)的平均值和方差成分。结果:总共收集了79个全班次(651h)的数据,平均记录时间为每班次495分钟(范围319-632)。平均而言,行李搬运工的右臂和左臂抬升>60°的工作时间分别占总工作时间的6.4%和6.3%。第90百分位躯干前投影(FP)为34.1°,第50百分位躯干运动速度为8°s(-1)。对于大多数躯干(FP)和上臂暴露变量,受试者之间的差异是相当大的,这表明飞行行李搬运工不是一个均匀的暴露组。一个显著的日与日之间的差异表明,工作内容在不同的日子有所不同。坡道工人的峰值暴露(>90°)高于分拣区工人(主干0.6%坡道对0.3%分拣;右臂1.3%斜坡与0.7%分拣)。结论:通过倾斜度测量法测量的航班行李搬运工的躯干和上臂姿势和运动与其他体力搬运工作相似,已知这些工作与肌肉骨骼疾病的风险增加有关。结果表明,与分拣工人相比,坡道工人的全轮班躯干(FP)和峰臂暴露在一定程度上更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Full-Shift Trunk and Upper Arm Postures and Movements Among Aircraft Baggage Handlers.

Objectives: The present study assessed full-shift trunk and upper arm postural exposure amplitudes, frequencies, and durations among Swedish airport baggage handlers and aimed to determine whether exposures differ between workers at the ramp (loading and unloading aircraft) and baggage sorting areas.

Methods: Trunk and upper arm postures were measured using inclinometers during three full work shifts on each of 27 male baggage handlers working at a large Swedish airport. Sixteen of the baggage handlers worked on the ramp and 11 in the sorting area. Variables summarizing postures and movements were calculated, and mean values and variance components between subjects and within subject (between days) were estimated using restricted maximum likelihood algorithms in a one-way random effect model.

Results: In total, data from 79 full shifts (651h) were collected with a mean recording time of 495min per shift (range 319-632). On average, baggage handlers worked with the right and left arm elevated >60° for 6.4% and 6.3% of the total workday, respectively. The 90th percentile trunk forward projection (FP) was 34.1°, and the 50th percentile trunk movement velocity was 8° s(-1). For most trunk (FP) and upper arm exposure variables, between-subject variability was considerable, suggesting that the flight baggage handlers were not a homogeneously exposed group. A notable between-days variability pointed to the contents of the job differing on different days. Peak exposures (>90°) were higher for ramp workers than for sorting area workers (trunk 0.6% ramp versus 0.3% sorting; right arm 1.3% ramp versus 0.7% sorting).

Conclusions: Trunk and upper arm postures and movements among flight baggage handlers measured by inclinometry were similar to those found in other jobs comprising manual material handling, known to be associated with increased risks for musculoskeletal disorders. The results showed that full-shift trunk (FP) and, to some extent, peak arm exposures were higher for ramp workers compared with sorting workers.

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