Tianjin Key Laboratory of Brain Science and Neuroengineering, Academy of Medical Engineering and Translational Medicine, Tianjin University, Tianjin 300072, China.
Tianjin Key Laboratory of Low Dimensional Materials Physics and Preparing Technology, School of Sciences, Tianjin University, Tianjin 300350, China.
J Mater Chem B. 2021 Dec 1;9(46):9485-9496. doi: 10.1039/d1tb01795k.
Neural electrodes are used for acquiring neuron signals in brain-machine interfaces, and they are crucial for next-generation neuron engineering and related medical applications. Thus, developing flexible, stable and high-resolution neural electrodes will play an important role in stimulation, acquisition, recording and analysis of signals. Compared with traditional metallic electrodes, electrodes based on graphene and other two-dimensional materials have attracted wide attention in electrophysiological recording and stimulation due to their excellent physical properties such as unique flexibility, low resistance, and high optical transparency. In this review, we have reviewed the recent progress of electrodes based on graphene, graphene/polymer compounds and graphene-related materials for neuron signal recording, stimulation, and related optical signal coupling technology, which provides an outlook on the role of electrodes in the nanotechnology-neuron interface as well as medical diagnosis.
神经电极用于在脑机接口中获取神经元信号,对于下一代神经元工程和相关医学应用至关重要。因此,开发灵活、稳定和高分辨率的神经电极将在信号的刺激、获取、记录和分析中发挥重要作用。与传统的金属电极相比,基于石墨烯和其他二维材料的电极由于其独特的柔韧性、低电阻和高光学透明度等优异的物理性能,在电生理记录和刺激方面引起了广泛的关注。在本文中,我们综述了基于石墨烯、石墨烯/聚合物复合材料和石墨烯相关材料的电极在神经元信号记录、刺激以及相关光信号耦合技术方面的最新进展,展望了电极在纳米技术-神经元界面以及医学诊断中的作用。