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Capturing Human Perceptual and Cognitive Activities via Event-Related Potentials Measured with Candle-Like Dry Microneedle Electrodes

机译:通过类似于蜡烛的干式微针电极测量的与事件相关的电位来捕获人类的感知和认知活动

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摘要

We demonstrate capture of event-related potentials (ERPs) using candle-like dry microneedle electrodes (CMEs). CMEs can record an electroencephalogram (EEG) even from hairy areas without any skin preparation, unlike conventional wet electrodes. In our previous research, we experimentally verified that CMEs can measure the spontaneous potential of EEG from the hairy occipital region without preparation with a signal-to-noise ratio as good as that of the conventional wet electrodes which require skin preparation. However, these results were based on frequency-based signals, which are relatively robust compared to noise contamination, and whether CMEs are sufficiently sensitive to capture finer signals remained unclear. Here, we first experimentally verified that CMEs can extract ERPs as good as conventional wet electrodes without preparation. In the auditory oddball tasks using pure tones, P300, which represent ERPs, was extracted with a signal-to-noise ratio as good as that of conventional wet electrodes. CMEs successfully captured perceptual activities. Then, we attempted to investigate cerebral cognitive activity using ERPs. In processing the vowel and prosody in auditory stimuli such as /itta/, /itte/, and /itta?/, laterality was observed that originated from the locations responsible for the process in near-infrared spectroscopy (NIRS) and magnetoencephalography experiments. We simultaneously measured ERPs with CMEs and NIRS in the oddball tasks using the three words. Laterality appeared in NIRS for six of 10 participants, although laterality was not clearly shown in the results, suggesting that EEGs have a limitation of poor spatial resolution. On the other hand, successful capturing of MMN and P300 using CMEs that do not require skin preparation may be readily applicable for real-time applications of human perceptual activities.
机译:我们演示了使用类似蜡烛的干式微针电极(CME)捕获事件相关电位(ERP)。与传统的湿电极不同,CME甚至可以在没有任何皮肤准备的情况下从毛发区域记录脑电图(EEG)。在我们之前的研究中,我们通过实验验证了CME可以测量毛发枕部的EEG的自发电位,而无需准备信噪比,就可以像需要准备皮肤的常规湿式电极一样好。但是,这些结果基于基于频率的信号,与噪声污染相比,该信号相对鲁棒,并且CME是否足够灵敏以捕获更精细的信号仍不清楚。在这里,我们首先通过实验验证了CME无需准备即可提取出与传统湿电极一样好的ERP。在使用纯音的听觉杂项任务中,代表ERP的P300的信噪比与传统湿电极一样好。 CME成功捕获了感知活动。然后,我们尝试使用ERPs调查大脑的认知活动。在处理诸如/ itta /,/ itte /和/ itta?/的听觉刺激中的元音和韵律时,观察到侧向性是由负责近红外光谱(NIRS)和脑磁图实验的过程的位置引起的。我们使用这三个词在奇数任务中同时测量了带有CME和NIRS的ERP。尽管未在结果中清楚显示横向性,但NIRS中有10个参与者中有6个出现了横向性,这表明脑电图具有局限性,即空间分辨率差。另一方面,使用不需要皮肤准备的CME成功捕获MMN和P300可能很容易适用于人类感知活动的实时应用。

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