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人类视觉系统对色调的“即时”反应:基于脑电图的研究。

An "Instantaneous" Response of a Human Visual System to Hue: An EEG-Based Study.

机构信息

Drayer Department of Electrical Engineering, Lamar University, Beaumont, TX 77710, USA.

Department of Biology, Lamar University, Beaumont, TX 77710, USA.

出版信息

Sensors (Basel). 2022 Nov 4;22(21):8484. doi: 10.3390/s22218484.

Abstract

(1) The article presents a new technique to interpret biomedical data (EEG) to assess cortical responses to continuous color/hue variations. We propose an alternative approach to analyze EEG activity evoked by visual stimulation. This approach may augment the traditional VEP analysis. (2) Considering ensembles of EEG epochs as multidimensional spatial vectors evolving over time (rather than collections of time-domain signals) and evaluating the similarity between such vectors across different EEG epochs may result in a more accurate detection of colors that evoke greater responses of the visual system. To demonstrate its suitability, the developed analysis technique was applied to the EEG data that we previously collected from 19 participants with normal color vision, while exposing them to stimuli of continuously varying hue. (3) Orange/yellow and dark blue/violet colors generally aroused better-pronounced cortical responses. The selection of EEG channels allowed for assessing the activity that predominantly originates from specific cortical regions. With such channel selection, the strongest response to the hue was observed from Parieto-Temporal region of the right hemisphere. The statistical test-Kruskal-Wallis one-way analysis of variance-indicates that the distance evaluated for spatial EEG vectors at different post-stimulus latencies generally originate from different statistical distributions with a probability exceeding 99.9% (α = 0.001).

摘要

(1) 本文提出了一种新的技术,用于解释生物医学数据(EEG),以评估皮质对连续颜色/色调变化的反应。我们提出了一种分析视觉刺激诱发 EEG 活动的替代方法。这种方法可以增强传统的 VEP 分析。(2) 考虑到 EEG 时段的集合作为随时间演变的多维空间向量(而不是时域信号的集合),并评估不同 EEG 时段之间这些向量之间的相似性,可能会导致更准确地检测到引起视觉系统更大反应的颜色。为了证明其适用性,我们将开发的分析技术应用于我们之前从 19 名具有正常色觉的参与者那里收集的 EEG 数据,同时向他们展示不断变化的色调刺激。(3) 橙色/黄色和深蓝色/紫色通常会引起更明显的皮质反应。选择 EEG 通道可以评估主要源自特定皮质区域的活动。通过这种通道选择,可以从右半球的顶颞区域观察到对色调的最强反应。统计检验——Kruskal-Wallis 单向方差分析表明,在不同刺激后潜伏期评估的空间 EEG 向量之间的距离通常源自具有超过 99.9%概率(α=0.001)的不同统计分布。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f098/9657469/6f8cccacada4/sensors-22-08484-g001.jpg

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