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迈向现实世界中脑功能的普遍和非侵入性测量:使用便携式低成本脑电图评估模拟飞行期间与眨眼相关的振荡。

Towards ubiquitous and nonintrusive measurements of brain function in the real world: assessing blink-related oscillations during simulated flight using portable low-cost EEG.

作者信息

Ziccardi Alexia, Van Benthem Kathleen, Liu Careesa Chang, Herdman Chris M, Ghosh Hajra Sujoy

机构信息

Department of Cognitive Science, Carleton University, Ottawa, ON, Canada.

Department of Biomedical Engineering and Science, Florida Institute of Technology, Melbourne, FL, United States.

出版信息

Front Neurosci. 2024 Jan 8;17:1286854. doi: 10.3389/fnins.2023.1286854. eCollection 2023.

Abstract

Blink-related oscillations (BRO) are newly discovered neurophysiological phenomena associated with spontaneous blinking and represent cascading neural mechanisms including visual sensory, episodic memory, and information processing responses. These phenomena have been shown to be present at rest and during tasks and are modulated by cognitive load, creating the possibility for brain function assessments that can be integrated seamlessly into real-world settings. Prior works have largely examined the BRO phenomenon within controlled laboratory environments using magnetoencephalography and high-density electroencephalography (EEG) that are ill-suited for real-world deployment. Investigating BROs using low-density EEG within complex environments reflective of the real-world would further our understanding of how BRO responses can be utilized in real-world settings. We evaluated whether the BRO response could be captured in a high-fidelity flight simulation environment using a portable, low-density wireless EEG system. The effects of age and task demands on BRO responses were also examined. EEG data from 30 licensed pilots (age 43.37 +/- 17.86, 2 females) were collected during simulated flights at two cognitive workload levels. Comparisons of signal amplitudes were undertaken to confirm the presence of BRO responses and mixed model ANOVAs quantified the effects of workload and age group on BRO amplitudes. Significant increases in neural activity were observed post-blink compared to the baseline period ( < 0.05), confirming the presence of BRO responses. In line with prior studies, results showed BRO time-domain responses from the delta band (0.5-4 Hz) consisting of an early negative peak followed by a positive peak post-blink in temporal and parietal electrodes. Additionally, task workload and age-related effects were also found, with observations of the enhancement of BRO amplitudes with older age and attenuation of BRO responses in high workloads ( < 0.05). These findings demonstrate that it is possible to capture BRO responses within simulated flight environments using portable, low-cost, easy-to-use EEG systems. Furthermore, biological and task salience were reflected in these BRO responses. The successful detection and demonstration of both task-and age-related modulation of BRO responses in this study open the possibility of assessing human brain function across the lifespan with BRO responses in complex and realistic environments.

摘要

眨眼相关振荡(BRO)是新发现的与自发眨眼相关的神经生理现象,代表了包括视觉感觉、情景记忆和信息处理反应在内的级联神经机制。这些现象已被证明在休息和任务期间均存在,并受认知负荷调节,这为能够无缝集成到现实世界环境中的脑功能评估创造了可能性。先前的研究主要在受控实验室环境中使用不适用于现实世界部署的脑磁图和高密度脑电图(EEG)来研究BRO现象。在反映现实世界的复杂环境中使用低密度EEG研究BRO将进一步加深我们对BRO反应如何在现实世界环境中得到利用的理解。我们评估了是否可以使用便携式、低密度无线EEG系统在高保真飞行模拟环境中捕获BRO反应。还研究了年龄和任务需求对BRO反应的影响。在两个认知工作负荷水平的模拟飞行期间,收集了30名有执照飞行员(年龄43.37 +/- 17.86,2名女性)的EEG数据。进行信号幅度比较以确认BRO反应的存在,混合模型方差分析量化了工作负荷和年龄组对BRO幅度的影响。与基线期相比,眨眼后观察到神经活动显著增加(<0.05),证实了BRO反应的存在。与先前的研究一致,结果显示在颞叶和顶叶电极中,来自δ波段(0.5-4Hz)的BRO时域反应由一个早期负峰和眨眼后的一个正峰组成。此外,还发现了任务工作负荷和年龄相关的影响,观察到随着年龄增长BRO幅度增强,在高工作负荷下BRO反应减弱(<0.05)。这些发现表明,使用便携式、低成本、易于使用的EEG系统在模拟飞行环境中捕获BRO反应是可能的。此外,这些BRO反应反映了生物学和任务显著性。本研究中成功检测并证明了BRO反应的任务和年龄相关调制,这为在复杂和现实环境中用BRO反应评估全生命周期的人类脑功能开辟了可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f35a/10801007/48f1d5726117/fnins-17-1286854-g001.jpg

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