Klapprott Melanie, Debener Stefan
Neuropsychology Lab, Department of Psychology, University of Oldenburg, Oldenburg, Germany.
Cluster of Excellence Hearing4All, University of Oldenburg, Oldenburg, Germany.
Front Hum Neurosci. 2024 Aug 29;18:1466853. doi: 10.3389/fnhum.2024.1466853. eCollection 2024.
Research on brain function in natural environments has become a new interest in cognitive science. In this study, we aim to advance mobile electroencephalography (EEG) participant and device mobility. We investigated the feasibility of measuring human brain activity using mobile EEG during a full-body motion task as swimming, by the example of cognitive-motor interference (CMI). Eleven participants were given an auditory oddball task while sitting and swimming, with mobile EEG recording ongoing brain activity. Measures of interest were event-related potentials (ERPs) elicited by experimental stimuli. While the auditory N100 was measured to verify signal quality, the P300 to task-relevant stimuli served as a marker of CMI effects. Analyzes were first performed within subjects, while binomial tests assessed the proportion of significant effects. Event-related changes in the time-frequency domain around turns during swimming were analyzed in an exploratory fashion. The successful recording of the N100 in all conditions shows that the setup was functional throughout the experiment. Regarding CMI, we did not find reliable changes in P300 amplitude in different motor settings in all subjects. However, we found plausible modulations in the alpha/mu and beta bands before and after turns. This study shows that it is generally feasible to measure mobile EEG in the time and time-frequency domain in an aquatic environment while subjects are freely moving. We see promising potential in the use of mobile EEG in extreme settings, advancing toward the application of mobile EEG in more real-life situations.
对自然环境中大脑功能的研究已成为认知科学的新热点。在本研究中,我们旨在提升移动脑电图(EEG)参与者和设备的移动性。我们以认知运动干扰(CMI)为例,研究了在游泳等全身运动任务中使用移动EEG测量人类大脑活动的可行性。11名参与者在坐着和游泳时接受听觉Oddball任务,同时移动EEG记录正在进行的大脑活动。感兴趣的测量指标是实验刺激诱发的事件相关电位(ERP)。测量听觉N100以验证信号质量,而与任务相关刺激的P300作为CMI效应的标志物。分析首先在个体内部进行,同时二项式检验评估显著效应的比例。以探索性方式分析了游泳过程中转弯时在时频域的事件相关变化。在所有条件下成功记录到N100表明该设置在整个实验过程中都能正常工作。关于CMI,我们在所有受试者的不同运动设置中未发现P300振幅有可靠变化。然而,我们在转弯前后的α/μ和β波段发现了合理的调制。本研究表明,在水生环境中,当受试者自由移动时,在时域和时频域测量移动EEG总体上是可行的。我们看到在极端环境中使用移动EEG有广阔的潜力,朝着在更现实生活场景中应用移动EEG迈进。