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Electrode-Skin Impedance Characterization of In-Ear Electrophysiology Accounting for Cerumen and Electrodermal Response

机译:入耳电生理学对皮肤和皮肤电反应的电极皮肤阻抗表征

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Conventional electroencephalography (EEG) requires placement of several electrode sensors on the scalp and, accompanied by lead wires and bulky instrumentation, makes for an uncomfortable experience. Recent efforts in miniaturization and system integration have enabled smaller systems, such as wearable, in-ear EEG devices that are gaining popularity for their unobtrusive form factor. Although in-ear EEG has been demonstrated in recent works, dynamics of the ear and ear canal that directly affect electrophysiological measurements have been largely ignored. Here, we present a quantitative analysis of electrode-skin impedance for drycontact in-ear EEG that accounts for cerumen (earwax) and electrodermal (sweat gland) response. Custom fitted earmolds with 16 embedded electrodes were developed to map the skin conductance in the ear canal of 3 subjects. In the presence of cerumen, the measured average dry-contact impedance in the ear canal was 86% higher than canals removed of cerumen. Electrodermal activity was also found to play a role in electrode-skin impedance, showing up to 25% decrease in drycontact impedance in response to tactile stimulation. The better understanding of the dynamics of in-ear conditions serves to improve consistency and accuracy of in-ear electrophysiology.
机译:传统的脑电图(EEG)需要在头皮上放置几个电极传感器,并伴随导线和笨重的仪器,给人带来不舒服的体验。最近在小型化和系统集成方面的努力已经使较小的系统成为可能,例如可穿戴式入耳式EEG设备,这些设备因其不显眼的外形而广受欢迎。尽管入耳式脑电图已在最近的工作中得到证实,但直接影响电生理测量的耳道和耳道的动力学已被大大忽略。在这里,我们对干接触式入耳式EEG的电极-皮肤阻抗进行定量分析,该分析说明了皮肤(耳垢)和皮肤电(汗腺)反应。开发了具有16个嵌入式电极的定制耳模,以绘制3位受试者耳道的皮肤电导图。在有陶瓷的情况下,耳道中测得的平均干接触阻抗比去除了陶瓷的耳道高86%。还发现,皮肤电活动在电极-皮肤阻抗中起作用,响应于触觉刺激,干接触阻抗最多降低25%。更好地了解入耳情况的动态有助于提高入耳电生理的一致性和准确性。

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