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用于神经信号记录的液态金属基电极阵列

Liquid Metal-Based Electrode Array for Neural Signal Recording.

作者信息

Zhang Xilong, Liu Bingxin, Gao Jingru, Lang Yiran, Lv Xiaodong, Deng Zhongshan, Gui Lin, Liu Jing, Tang Rongyu, Li Lei

机构信息

Key Laboratory of Cryogenics, Technical Institute of Physics and Chemistry, Beijing 100190, China.

School of Future Technology, University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Bioengineering (Basel). 2023 May 10;10(5):578. doi: 10.3390/bioengineering10050578.

Abstract

Neural electrodes are core devices for research in neuroscience, neurological diseases, and neural-machine interfacing. They build a bridge between the cerebral nervous system and electronic devices. Most of the neural electrodes in use are based on rigid materials that differ significantly from biological neural tissue in flexibility and tensile properties. In this study, a liquid-metal (LM) -based 20-channel neural electrode array with a platinum metal (Pt) encapsulation material was developed by microfabrication technology. The in vitro experiments demonstrated that the electrode has stable electrical properties and excellent mechanical properties such as flexibility and bending, which allows the electrode to form conformal contact with the skull. The in vivo experiments also recorded electroencephalographic signals using the LM-based electrode from a rat under low-flow or deep anesthesia, including the auditory-evoked potentials triggered by sound stimulation. The auditory-activated cortical area was analyzed using source localization technique. These results indicate that this 20-channel LM-based neural electrode array satisfies the demands of brain signal acquisition and provides high-quality-electroencephalogram (EEG) signals that support source localization analysis.

摘要

神经电极是神经科学、神经疾病和神经机器接口研究的核心设备。它们在大脑神经系统和电子设备之间架起了一座桥梁。目前使用的大多数神经电极都是基于刚性材料,其柔韧性和拉伸性能与生物神经组织有很大差异。在本研究中,通过微加工技术开发了一种基于液态金属(LM)的20通道神经电极阵列,其封装材料为铂金属(Pt)。体外实验表明,该电极具有稳定的电学性能以及优异的机械性能,如柔韧性和可弯曲性,这使得电极能够与颅骨形成共形接触。体内实验还使用基于LM的电极在低流量或深度麻醉下记录了大鼠的脑电图信号,包括声音刺激触发的听觉诱发电位。使用源定位技术分析了听觉激活的皮层区域。这些结果表明,这种基于LM的20通道神经电极阵列满足了脑信号采集的需求,并提供了支持源定位分析的高质量脑电图(EEG)信号。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a75e/10215194/a082ca0f8548/bioengineering-10-00578-g001.jpg

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