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Physiological artifacts in scalp EEG and ear-EEG.

机译:头皮EEG和耳EEG中的生理伪影。

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摘要

BACKGROUND: A problem inherent to recording EEG is the interference arising from noise and artifacts. While in a laboratory environment, artifacts and interference can, to a large extent, be avoided or controlled, in real-life scenarios this is a challenge. Ear-EEG is a concept where EEG is acquired from electrodes in the ear. METHODS: We present a characterization of physiological artifacts generated in a controlled environment for nine subjects. The influence of the artifacts was quantified in terms of the signal-to-noise ratio (SNR) deterioration of the auditory steady-state response. Alpha band modulation was also studied in an open/closed eyes paradigm. RESULTS: Artifacts related to jaw muscle contractions were present all over the scalp and in the ear, with the highest SNR deteriorations in the gamma band. The SNR deterioration for jaw artifacts were in general higher in the ear compared to the scalp. Whereas eye-blinking did not influence the SNR in the ear, it was significant for all groups of scalps electrodes in the delta and theta bands. Eye movements resulted in statistical significant SNR deterioration in both frontal, temporal and ear electrodes. Recordings of alpha band modulation showed increased power and coherence of the EEG for ear and scalp electrodes in the closed-eyes periods. CONCLUSIONS: Ear-EEG is a method developed for unobtrusive and discreet recording over long periods of time and in real-life environments. This study investigated the influence of the most important types of physiological artifacts, and demonstrated that spontaneous activity, in terms of alpha band oscillations, could be recorded from the ear-EEG platform. In its present form ear-EEG was more prone to jaw related artifacts and less prone to eye-blinking artifacts compared to state-of-the-art scalp based systems.
机译:背景技术:记录脑电图所固有的问题是由噪声和伪影引起的干扰。在实验室环境中,可以在很大程度上避免或控制伪影和干扰,但在现实生活中,这是一个挑战。耳脑电图是从耳中的电极获取脑电图的概念。方法:我们提出了在九个对象的受控环境中生成的生理假象的表征。伪影的影响根据听觉稳态响应的信噪比(SNR)恶化进行了量化。在开/闭眼范例中还研究了α波段调制。结果:与下颌肌肉收缩有关的伪影遍布整个头皮和耳朵,在γ波段中,SNR衰减最大。与头皮相比,耳朵中颌骨伪影的SNR降低通常更高。尽管眨眼不影响耳朵的SNR,但对于三角带和θ带中的所有头皮电极组来说,眨眼都是有意义的。眼球运动导致额,颞和耳电极的SNR显着降低。 α波段调制的记录显示,在闭眼期间,耳和头皮电极的EEG功率和相干性增强。结论:Ear-EEG是一种为长时间和在现实生活中的环境中进行不干扰和谨慎录制而开发的方法。这项研究调查了最重要类型的生理伪影的影响,并证明可以从耳脑电图平台记录自发活动(就α波段振动而言)。与目前最先进的基于头皮的系统相比,以目前的形式,脑电图更容易出现与下颌有关的伪影,而不会出现眨眼的伪影。

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