脑机接口电极界面材料和改性技术的进展。

Biomaterials Translational Pub Date : 2023-12-28 eCollection Date: 2023-01-01 DOI:10.12336/biomatertransl.2023.04.003
Yunke Jiao, Miao Lei, Jianwei Zhu, Ronghang Chang, Xue Qu
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引用次数: 0

摘要

综述了神经电极接口材料和改性技术的最新进展。脑机接口是人机交互的新方法,它不仅能实现人脑与外部设备之间的信息交换,还为脑相关疾病的诊断和治疗提供了一种全新的手段。脑机接口中的神经电极接口部分是脑组织系统与外部电子设备之间电、光、化学信号传输的重要区域,决定着脑机接口的性能。为了解决传统刚性电极柔韧性不足、信号识别能力不强、生物相容性不高等问题,研究人员从材料和改性技术两方面对神经电极接口进行了大量研究。本文介绍了神经电极植入脑组织后发生的生物反应,以及电极界面对电极功能的决定性作用。随后,从神经电极材料和改性技术两方面综述了神经电极材料和界面材料的最新研究进展,首先以材料为线索,然后重点介绍了神经电极涂层的制备工艺和功能化结构的设计方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advances in electrode interface materials and modification technologies for brain-computer interfaces.

Recent advances in neuroelectrode interface materials and modification technologies are reviewed. Brain-computer interface is the new method of human-computer interaction, which not only can realise the exchange of information between the human brain and external devices, but also provides a brand-new means for the diagnosis and treatment of brain-related diseases. The neural electrode interface part of brain-computer interface is an important area for electrical, optical and chemical signal transmission between brain tissue system and external electronic devices, which determines the performance of brain-computer interface. In order to solve the problems of insufficient flexibility, insufficient signal recognition ability and insufficient biocompatibility of traditional rigid electrodes, researchers have carried out extensive studies on the neuroelectrode interface in terms of materials and modification techniques. This paper introduces the biological reactions that occur in neuroelectrodes after implantation into brain tissue and the decisive role of the electrode interface for electrode function. Following this, the latest research progress on neuroelectrode materials and interface materials is reviewed from the aspects of neuroelectrode materials and modification technologies, firstly taking materials as a clue, and then focusing on the preparation process of neuroelectrode coatings and the design scheme of functionalised structures.

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CiteScore
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