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A preliminary investigation of upper limb muscle activity during simulated Canadian forest harvesting operations

机译:模拟加拿大森林采伐作业期间上肢肌肉活动的初步调查

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Objective: The forest industry is a major economic sector of Canada. While mechanized machines have reduced injuries workers suffered during manual operations, these machines have also created other musculoskeletal concerns. The purpose of this study was to obtain data regarding upper limb musculoskeletal stress during typical harvesting operations using surface electromyography (EMG). Participants: Students currently training in a forest machine operations course were recruited for this study. Four operators (1 female and 3 males, mean age =24.6 ± 13.4 years, mean height = 172.7 ± 4.6 cm, mean weight=75.4 ± 27.4 kg) participated in this study. Methods: Surface electrodes were placed over the muscles of the upper arm and shoulder to monitor muscular activity during Harvester Simulator operation. Operators were provided specific instructions and visual feedback. Data were collected over a two hours of operation. Results: Preliminary data suggests that while the movements used in the Simulator do not require large force, they are repetitive and constant and can result in muscle fatigue.Conclusions: The EMG data indicated signs of fatigue in several muscles of the upper arms. This preliminary data suggests that while operation of these machines does not require large force contractions, the continuous and repetitive nature of the work can result in muscular fatigue. This suggests that long term operation of mobile machines may result in fatigue and future studies should examine job design.
机译:目标:林业是加拿大的主要经济部门。虽然机械化的机器减轻了手动操作期间工人的伤害,但这些机器还引起了其他肌肉骨骼方面的问题。这项研究的目的是使用表面肌电图(EMG)获得有关典型收获操作期间上肢肌肉骨骼压力的数据。参加者:本研究招募了正在接受森林机械操作课程培训的学生。四个研究人员(1名女性和3名男性,平均年龄= 24.6±13.4岁,平均身高= 172.7±4.6 cm,平均体重= 75.4±27.4 kg)参加了这项研究。方法:将表面电极放置在上臂和肩膀的肌肉上,以监测收割机模拟器操作期间的肌肉活动。为操作员提供了具体的说明和视觉反馈。在运行两个小时后收集了数据。结果:初步数据表明,虽然模拟器中使用的运动不需要很大的力,但它们重复且恒定,并可能导致肌肉疲劳。结论:EMG数据表明上臂几块肌肉有疲劳迹象。初步数据表明,虽然这些机器的操作不需要大的力收缩,但工作的连续性和重复性会导致肌肉疲劳。这表明移动机器的长期运行可能会导致疲劳,因此未来的研究应检查作业设计。

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