Identification of potential biomechanical risk factors for low back disorders during repetitive rebar lifting

Author:

Antwi-Afari Maxwell Fordjour,Li Heng,Edwards David John,Pärn Erika Anneli,Owusu-Manu De-Graft,Seo Joonoh,Wong Arnold Yu Lok

Abstract

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.

Publisher

Emerald

Subject

Building and Construction,Architecture,Civil and Structural Engineering,General Computer Science,Control and Systems Engineering

Reference89 articles.

1. Albers, J.T. and Estill, C.F. (2007), “Simple solution: ergonomics for construction workers, US Department of Health and Human Services–National Institute for Occupational Safety and Health”, available at: www.cdc.gov/niosh/awards/hamilton/aliceabs08.html (accessed May 2017).

2. Biomechanical assessment of three rebar tying techniques;International Journal of Occupational Safety and Ergonomics,2007

3. A biomechanical evaluation of five lifting techniques;Applied Ergonomics,1986

4. Biomechanical analysis of risk factors for work-related musculoskeletal disorders during repetitive lifting task in construction workers;Automation in Construction,2017

5. A short questionnaire for the measurement of habitual physical activity in epidemiological studies;American Journal of Clinical Nutrition,1982

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