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RGB 刺激的大脑活动特征:一项 EEG 研究。

Brain activity characteristics of RGB stimulus: an EEG study.

机构信息

Biomechatronics and Cognitive Engineering Research Lab, School of Mechanical Engineering, Iran University of Science and Technology, Tehran, Iran.

出版信息

Sci Rep. 2023 Nov 3;13(1):18988. doi: 10.1038/s41598-023-46450-z.

Abstract

The perception of color is a fundamental cognitive feature of our psychological experience, with an essential role in many aspects of human behavior. Several studies used magnetoencephalography, functional magnetic resonance imaging, and electroencephalography (EEG) approaches to investigate color perception. Their methods includes the event-related potential and spectral power activity of different color spaces, such as Derrington-Krauskopf-Lennie and red-green-blue (RGB), in addition to exploring the psychological and emotional effects of colors. However, we found insufficient studies in RGB space that considered combining all aspects of EEG signals. Thus, in the present study, focusing on RGB stimuli and using a data-driven approach, we investigated significant differences in the perception of colors. Our findings show that beta oscillation of green compared to red and blue colors occurs in early sensory periods with a latency shifting in the occipital region. Furthermore, in the occipital region, the theta power of the blue color decreases noticeably compared to the other colors. Concurrently, in the prefrontal area, we observed an increase in phase consistency in response to the green color, while the blue color showed a decrease. Therefore, our results can be used to interpret the brain activity mechanism of color perception in RGB color space and to choose suitable colors for more efficient performance in cognitive activities.

摘要

颜色感知是我们心理体验的基本认知特征,在人类行为的许多方面都起着重要作用。几项研究使用脑磁图、功能磁共振成像和脑电图 (EEG) 方法来研究颜色感知。它们的方法包括不同颜色空间(如 Derrington-Krauskopf-Lennie 和红-绿-蓝 (RGB))的事件相关电位和光谱功率活动,此外还探索了颜色的心理和情感影响。然而,我们发现 RGB 空间中缺乏考虑结合 EEG 信号所有方面的研究。因此,在本研究中,我们专注于 RGB 刺激并采用数据驱动的方法,研究了颜色感知的显著差异。我们的研究结果表明,与红色和蓝色相比,绿色的β振荡发生在早期感觉期,潜伏期在枕区转移。此外,在枕区,与其他颜色相比,蓝色的θ功率明显降低。同时,在前额区域,我们观察到对绿色的相位一致性增加,而蓝色则减少。因此,我们的研究结果可用于解释 RGB 颜色空间中颜色感知的大脑活动机制,并选择适合在认知活动中更高效表现的颜色。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c374/10624840/35d9c2a7f959/41598_2023_46450_Fig1_HTML.jpg

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