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Assessing Task Mental Workload in Construction Projects: A Novel Electroencephalography Approach

机译:在建设项目中评估任务心理工作量:一种新型的脑电图方法

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Inappropriate task allocation in construction activities results not only in lower productivity but also higher error rates and more work-related injuries. Without quantitative assessment of task demand, it is nearly impossible to achieve reasonable and flexible task allocation. However, it is extremely difficult to assess the mental/cognitive demand of construction tasks quantitatively and reliably. This paper introduces a novel electroencephalography (EEG) approach to estimate task mental workload based on the power spectral densities (PSDs) of major frequency bands. A preliminary experiment was designed and conducted to demonstrate the proposed assessment approach, and the National Aeronautics and Space Administration task load index (NASA-TLX) was adopted to validate the results. Four EEG channels were tested for 30 subjects in the preliminary experiment with three-way analysis of variance (ANOVA). Both the types of construction activities and frequency bands show statistically significant effects on PSDs of the EEG signals. Among all channels, the channel that is located at the left frontal parietal lobe (Fp1), especially the gamma band, showed the highest correlation with the mental load level. The final statistical results and the frequency bin model suggest that the estimation results are consistent with the NASA-TLX mental demand scores. (C) 2017 American Society of Civil Engineers.
机译:施工活动中不适当的任务分配不仅导致生产率降低,而且导致较高的错误率和更多与工作有关的伤害。如果不对任务需求进行定量评估,则几乎不可能实现合理而灵活的任务分配。但是,要定量可靠地评估施工任务的心理/认知需求是极其困难的。本文介绍了一种新颖的脑电图(EEG)方法,可以根据主要频段的功率谱密度(PSD)估算任务的心理工作量。设计并进行了初步实验,以证明所提出的评估方法,并采用了美国航空航天局任务负荷指数(NASA-TLX)来验证结果。在三阶段方差分析(ANOVA)的初步实验中,对30个受试者的四个EEG通道进行了测试。建设活动的类型和频带对EEG信号的PSD均显示出统计学上显着的影响。在所有通道中,位于左额叶顶叶(Fp1)的通道,特别是伽玛谱带,与精神负荷水平相关性最高。最终的统计结果和频点模型表明,估计结果与NASA-TLX的心理需求得分一致。 (C)2017年美国土木工程师学会。

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