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Progress in Research of Flexible MEMS Microelectrodes for Neural Interface

机译:神经界面柔性MEMS微电极的研究进展

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With the rapid development of Micro-electro-mechanical Systems (MEMS) fabrication technologies, many microelectrodes with various structures and functions have been designed and fabricated for applications in biomedical research, diagnosis and treatment through electrical stimulation and electrophysiological signal recording. The flexible MEMS microelectrodes exhibit excellent characteristics in many aspects beyond stiff microelectrodes based on silicon or metal, including: lighter weight, smaller volume, better conforming to neural tissue and lower fabrication cost. In this paper, we reviewed the key technologies in flexible MEMS microelectrodes for neural interface in recent years, including: design and fabrication technology, flexible MEMS microelectrodes with fluidic channels and electrode?¢????tissue interface modification technology for performance improvement. Furthermore, the future directions of flexible MEMS microelectrodes for neural interface were described, including transparent and stretchable microelectrodes integrated with multi-functional aspects and next-generation electrode?¢????tissue interface modifications, which facilitated electrode efficacy and safety during implantation. Finally, we predict that the relationships between micro fabrication techniques, and biomedical engineering and nanotechnology represented by flexible MEMS microelectrodes for neural interface, will open a new gate to better understanding the neural system and brain diseases.
机译:随着微机电系统(MEMS)制造技术的飞速发展,已经设计并制造了许多具有各种结构和功能的微电极,以通过电刺激和电生理信号记录应用于生物医学研究,诊断和治疗。除了基于硅或金属的刚性微电极以外,柔性MEMS微电极在许多方面还具有优异的特性,包括:重量更轻,体积更小,与神经组织的贴合性更好,制造成本更低。在本文中,我们回顾了近年来用于神经接口的柔性MEMS微电极的关键技术,包括:设计和制造技术,具有流体通道的柔性MEMS微电极以及用于改善性能的电极组织接口修饰技术。此外,还介绍了用于神经接口的柔性MEMS微电极的未来方向,包括与多功能方面集成的透明和可拉伸微电极以及下一代电极-组织移植界面的改进,这些电极可促进植入过程中电极的功效和安全性。最后,我们预测微制造技术与以神经界面的柔性MEMS微电极为代表的生物医学工程和纳米技术之间的关系,将为更好地了解神经系统和脑部疾病打开新的大门。

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