Chen Shiming, Jiang Daolian, Li Mingji, Xuan Xiuwei, Li Hongji
Tianjin Key Laboratory of Film Electronic and Communication Devices, School of Integrated Circuit Science and Engineering, Tianjin University of Technology, Tianjin 300384, PR China.
Tianjin Key Laboratory of Organic Solar Cells and Photochemical Conversion, School of Chemistry and Chemical Engineering, Tianjin University of Technology, Tianjin 300384, PR China.
ACS Sens. 2025 Feb 28;10(2):868-880. doi: 10.1021/acssensors.4c02461. Epub 2025 Jan 28.
The simultaneous detection of electroencephalography (EEG) signals and neurotransmitter levels plays an important role as biomarkers for the assessment and monitoring of emotions and cognition. This paper describes the development of boron and nitrogen codoped graphene-diamond (BNGrD) microelectrodes with a diameter of only 200 μm for sensing EEG signals and dopamine (DA) levels, which have been developed for the first time. The optimized BNGrD microelectrode responded sensitively to both EEG and DA signals, with a signal-to-noise ratio of 9 dB for spontaneous EEG signals and a limit of detection as low as 124 nM for DA. Furthermore, the BNGrD microelectrodes demonstrate excellent repeatability, reproducibility, and stability for the detection of EEG and dopamine. These results indicate that the BNGrD microelectrode creates suitable conditions for establishing a correlation between the EEG signals and neurotransmitters. A flexible printed circuit board with BNGrD microelectrodes for an eight-channel EEG headband, portable EEG collector, and light stimulation glasses are designed. The self-designed EEG collector adopts a split design strategy of digital and analog signal modules and uses miniaturized impedance-matched BNGrD microelectrodes, which effectively reduce the noise of the electrophysiological signals. The BNGrD microelectrode-based portable EEG/electrochemical analysis system detects EEG signals and DA levels in a noninvasive and minimally invasive manner and has application prospects in remote online diagnosis and treatment of patients with emotional and cognition-related diseases.
同时检测脑电图(EEG)信号和神经递质水平作为评估和监测情绪与认知的生物标志物具有重要作用。本文描述了首次开发的直径仅为200μm的硼氮共掺杂石墨烯-金刚石(BNGrD)微电极,用于传感EEG信号和多巴胺(DA)水平。优化后的BNGrD微电极对EEG和DA信号均有灵敏响应,自发EEG信号的信噪比为9dB,DA的检测限低至124nM。此外,BNGrD微电极在检测EEG和多巴胺方面表现出优异的重复性、再现性和稳定性。这些结果表明,BNGrD微电极创造了适合建立EEG信号与神经递质之间相关性的条件。设计了一种带有BNGrD微电极的柔性印刷电路板,用于八通道EEG头带、便携式EEG采集器和光刺激眼镜。自行设计的EEG采集器采用数字和模拟信号模块的分体设计策略,并使用小型化的阻抗匹配BNGrD微电极,有效降低了电生理信号的噪声。基于BNGrD微电极的便携式EEG/电化学分析系统以无创和微创方式检测EEG信号和DA水平,在情绪和认知相关疾病患者的远程在线诊断和治疗方面具有应用前景。