Department of Design and Creativity, Institute for Cognitive Science Studies, Tehran, Iran.
Faculty of Entrepreneurship, University of Tehran, Tehran, Iran.
Brain Behav. 2024 Sep;14(9):e70020. doi: 10.1002/brb3.70020.
Occupational hazards are partly caused by the physical factors of the work environment, among which are ambient color and brightness, which can interfere with cognitive performance. Especially in modern work environments, performance relies heavily on cognitive functions such as attention, and an important factor in disrupting sustained attention is mind wandering (MW). This study aimed to investigate the effects of white and blue colors with two brightness levels on sustained attention and brain electrophysiology.
A total of 20 participants were exposed to 4 different conditions (white and blue as color and 300 and 800 lx as the brightness level) in separate blocks in a virtual reality environment in which a continuous performance test (CPT) was performed.
The high brightness blue condition induced significant changes in sustained attention. MW network analysis showed a significant decrease in delta frequency band in the blue color condition with high brightness and beta decrease in the blue color condition with low brightness, whereas the activity of MW network increased when exposed to the white color condition.
High-brightness blue light resulted in better sustained attention and decreased activity of MW-related neural regions. It is thus recommended that these results be taken into consideration in the interior design of educational settings and cars among other environments that require a high level and maintenance of cognitive functions, especially sustained attention.
职业危害部分是由工作环境的物理因素引起的,其中包括环境颜色和亮度,它们会干扰认知表现。特别是在现代工作环境中,表现很大程度上依赖于注意力等认知功能,而分散持续注意力的一个重要因素是思维漫游(MW)。本研究旨在探讨两种亮度水平的白色和蓝色对持续注意力和脑电生理学的影响。
在虚拟现实环境中,20 名参与者在单独的块中分别暴露于 4 种不同的条件(白色和蓝色作为颜色,300 和 800 lx 作为亮度水平),并进行连续性能测试(CPT)。
高亮度蓝色条件引起持续注意力的显著变化。MW 网络分析显示,高亮度蓝色条件下的 delta 频带显著减少,低亮度蓝色条件下的 beta 减少,而暴露于白色条件时,MW 网络的活动增加。
高亮度蓝色光导致更好的持续注意力和减少与 MW 相关的神经区域的活动。因此,建议在需要高水平认知功能(特别是持续注意力)的教育环境和汽车等其他环境的室内设计中考虑这些结果。