脑电图
头皮
电极
生物医学工程
导电体
计算机科学
脑-机接口
前额
α波
神经科学
材料科学
医学
心理学
化学
外科
复合材料
物理化学
作者
Zichong Ji,Leqi Li,Mei-Mei Zheng,Xinyuan Ye,Wenqing Yan,Zonglei Wang,Yi Liu,Yuli Wang,Yujie Zhang,Pengcheng Zhou,Jiawei Yang,Mingzhe Wang,Shihong Lin,Hossam Haick,Yan Wang,Yan Wang,Yan Wang
出处
期刊:Small methods
[Wiley]
日期:2025-09-06
卷期号:: e01242-e01242
被引量:2
标识
DOI:10.1002/smtd.202501242
摘要
Abstract Scalp electroencephalography (EEG) serves as a pivotal technology for the noninvasive monitoring of brain functional activity, diagnosing neurological disorders, and assessing cognitive states. However, inherent compatibility barriers between traditional rigid electrodes and the hairy scalp interface significantly compromise signal quality, long‐term monitoring comfort, and user compliance. This review examines conductive hydrogel electrodes’ pivotal role in advancing scalp EEG, particularly their unique capacity to overcome hair‐interface barriers. The superiority of scalp EEG is first established over forehead/ear EEG for capturing diverse neural signals and defining core requirements for hair‐compatible interfaces: scalp conformability, electrical conductivity, low contact impedance, and interfacial stability. Conductive hydrogel electrode applications are then detailed in alpha wave detection, sleep monitoring, event‐related potential studies, and brain‐computer interfaces. Finally, persisting challenges and future opportunities are discussed.
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