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Re-assessing hazard recognition ability in occupational environment with microvascular function in the brain

机译:在大脑中重新评估职业环境中的危害识别能力

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摘要

Hazard recognition (HR) is a critical process for safety management in the complex and dynamic occupational environment. Although previous studies have attempted to quantify hazard recognition ability (HRA), the results are potentially optimistic because of limitations in their experimental settings and/or single data collection channels. This study aims to re-develop a compound HRA index that incorporates microvascular function in the brain. First, the authors identify critical indicators of HR and design an experiment to be conducted in a real scene. Data are then collected through questionnaires (experience and risk tolerance), eye-tracking devices (eye movement), and near-infrared spectroscopy. Finally, discriminant analysis is applied to develop an HRA index. The prediction accuracy of the proposed HRA index is shown to outperform previous approaches. Theoretically, this research signals a new perspective (changes in hemodynamic properties of the prefrontal cortex) in the assessment of HRA. The proposed HRA index can be used for onboard assessment of workers or safety inspectors, reducing human errors and undetected occupational hazards.
机译:危险识别(HR)是复杂和动态职业环境中安全管理的关键过程。尽管以前的研究已经尝试量化了危险识别能力(HRA),但由于其实验设置和/或单数据收集通道中的限制,结果是潜在的乐观态度。本研究旨在重新开发一种复合HRA指数,其含有大脑中的微血管功能。首先,作者标识人力资源的关键指标,并设计一个在真实场景中进行的实验。然后通过问卷调查(经验和风险),眼跟踪设备(眼睛运动)和近红外光谱学收集数据。最后,判别分析适用于开发HRA指数。所提出的HRA指数的预测准确性显示出优于先前的方法。从理论上讲,在HRA的评估中,该研究表明了一种新的视角(预前列皮层的血液动力学性质的变化)。建议的HRA指数可用于工人或安全检查员的船上评估,减少人类错误和未被发现的职业危害。

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