反复提钢筋时腰背部疾病的潜在生物力学危险因素的鉴定

M. F. Antwi-Afari, Heng Li, D. Edwards, Erika A. Parn, D. Owusu-Manu, Joonoh Seo, A. Wong
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引用次数: 28

摘要

目的与工作有关的腰背部疾病(lbd)在钢筋工人中普遍存在,但其原因尚不清楚。本研究的目的是检查钢筋工人自我报告的不适和脊柱生物力学(肌肉活动和脊柱运动学)。设计/方法/方法总共,20名健康男性参与者使用三种不同的举重,使用弯腰(n = 10)或蹲起(n = 10)的举重姿势进行模拟重复性钢筋举重任务,直到达到主观疲劳。在这些任务中,躯干肌肉活动和脊柱运动学分别用表面肌电图和运动传感器记录。混合模型、重复测量方差分析显示,举重的增加显著增加了L3水平的下背部肌肉活动,但减少了疲劳和疲劳时间(耐力时间)(p < 0.05)。举重姿势对脊柱生物力学无显著影响(p < 0.05)。试验结果表明,举重不同的重量会使肌肉承受不成比例的负荷,从而缩短了达到工作耐力的时间,增加了钢筋工人患lbd的风险。研究局限/启示未来的研究需要:扩大研究范围,纳入其他行业;调查使用辅助升降装置对减少人工搬运风险的影响;并开发基于人体状况的自动化解决方案,以监测躯干肌肉活动和脊柱运动学。原创性/价值本研究满足了一个确定的需求,即研究基于实验室的模拟任务,以调查螺纹钢工人中主要由重复的螺纹钢提升引起的lbd的风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification of potential biomechanical risk factors for low back disorders during repetitive rebar lifting
Purpose Work-related low back disorders (LBDs) are prevalent among rebar workers although their causes remain uncertain. The purpose of this study is to examine the self-reported discomfort and spinal biomechanics (muscle activity and spinal kinematics) experienced by rebar workers. Design/methodology/approach In all, 20 healthy male participants performed simulated repetitive rebar lifting tasks with three different lifting weights, using either a stoop (n = 10) or a squat (n = 10) lifting posture, until subjective fatigue was reached. During these tasks, trunk muscle activity and spinal kinematics were recorded using surface electromyography and motion sensors, respectively. Findings A mixed-model, repeated measures analysis of variance revealed that an increase in lifting weight significantly increased lower back muscle activity at L3 level but decreased fatigue and time to fatigue (endurance time) (p < 0.05). Lifting postures had no significant effect on spinal biomechanics (p < 0.05). Test results revealed that lifting different weights causes disproportional loading upon muscles, which shortens the time to reach working endurance and increases the risk of developing LBDs among rebar workers. Research limitations/implications Future research is required to: broaden the research scope to include other trades; investigate the effects of using assistive lifting devices to reduce manual handling risks posed; and develop automated human condition-based solutions to monitor trunk muscle activity and spinal kinematics. Originality/value This study fulfils an identified need to study laboratory-based simulated task conducted to investigate the risk of developing LBDs among rebar workers primarily caused by repetitive rebar lifting.
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