Implementing and evaluating novel safety training methods for construction sector workers: Results of a randomized controlled trial

被引:90
作者
Nykanen, Mikko [1 ]
Puro, Vuokko [1 ]
Tiikkaja, Maria [1 ]
Kannisto, Henriikka [1 ]
Lantto, Eero [1 ]
Simpura, Frans [1 ]
Uusitalo, Jose [1 ]
Lukander, Kristian [1 ]
Rasanen, Tuula [1 ]
Heikkila, Tarja [1 ]
Teperi, Anna-Maria [1 ]
机构
[1] Finnish Inst Occupat Hlth, POB 40, FI-00032 Helsinki, Finland
关键词
Virtual reality; Human factors safety training; Safety self-efficacy; Safety locus of control; Safety motivation; VIRTUAL-REALITY; SELF-EFFICACY; RISK PERCEPTION; WORKPLACE SAFETY; HEALTH; MOTIVATION; MANAGEMENT; BEHAVIOR; INTERVENTION; ENVIRONMENTS;
D O I
10.1016/j.jsr.2020.09.015
中图分类号
TB18 [人体工程学];
学科分类号
1201 ;
摘要
Introduction: The construction industry is regarded as one of the most unsafe occupational fields worldwide. Despite general agreement that safety training is an important factor in preventing accidents in the construction sector, more studies are needed to identify effective training methods. To address the current research gap, this study evaluated the impact of novel, participatory safety training methods on construction workers' safety competencies. Specifically, we assessed the efficacy of an immersive virtual reality (VR)-based safety training program and a participatory human factors safety training program (HFST) in construction industry workplaces. Method: In 2019, 119 construction sector workers from eight workplaces participated in a randomized controlled trial conducted in Finland. All the study participants were assessed using questionnaires at baseline, immediately after the intervention and at one-month follow-up. We applied generalized linear mixed modeling for statistical analysis. Results: Compared to lecture-based safety training, VR-based safety training showed a stronger impact on safety motivation, self-efficacy and safety-related outcome expectancies. In addition, the construction sector workers who participated in the VR-based safety training showed a greater increase in self-reported safety performance at one-month follow-up. Contrary to our study hypotheses, we found no significant differences between the study outcomes in terms of study participants in the HFST training condition and the comparison condition without HFST training. Conclusion: Our study indicates that VR technology as a safety training tool has potential to increase safety competencies and foster motivational change in terms of the safety performance of construction sector workers. In the future, the efficacy of participatory human factors safety training should be studied further using a version that targets both managerial and employee levels and is implemented in a longer format. Practical implications: Safety training in virtual reality provides a promising alternative to passive learning methods. Its motivating effect complements other safety training activities. (C) 2020 National Safety Council and Elsevier Ltd. All rights reserved.
引用
收藏
页码:205 / 221
页数:17
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