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碳纳米材料在植入式脑-机接口中的传感和刺激应用

Sensing and Stimulation Applications of Carbon Nanomaterials in Implantable Brain-Computer Interface.

机构信息

The Brain Cognition and Brain Disease Institute (BCBDI), Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, China.

Guangdong Provincial Key Laboratory of Brain Connectome and Behavior, Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, China.

出版信息

Int J Mol Sci. 2023 Mar 8;24(6):5182. doi: 10.3390/ijms24065182.

Abstract

Implantable brain-computer interfaces (BCIs) are crucial tools for translating basic neuroscience concepts into clinical disease diagnosis and therapy. Among the various components of the technological chain that increases the sensing and stimulation functions of implanted BCI, the interface materials play a critical role. Carbon nanomaterials, with their superior electrical, structural, chemical, and biological capabilities, have become increasingly popular in this field. They have contributed significantly to advancing BCIs by improving the sensor signal quality of electrical and chemical signals, enhancing the impedance and stability of stimulating electrodes, and precisely modulating neural function or inhibiting inflammatory responses through drug release. This comprehensive review provides an overview of carbon nanomaterials' contributions to the field of BCI and discusses their potential applications. The topic is broadened to include the use of such materials in the field of bioelectronic interfaces, as well as the potential challenges that may arise in future implantable BCI research and development. By exploring these issues, this review aims to provide insight into the exciting developments and opportunities that lie ahead in this rapidly evolving field.

摘要

可植入脑机接口 (BCI) 是将基础神经科学概念转化为临床疾病诊断和治疗的重要工具。在提高植入式 BCI 的传感和刺激功能的技术链的各个组成部分中,界面材料起着关键作用。碳纳米材料具有卓越的电学、结构、化学和生物学性能,在该领域越来越受欢迎。它们通过提高电和化学信号的传感器信号质量、增强刺激电极的阻抗和稳定性以及通过药物释放精确调节神经功能或抑制炎症反应,为推进 BCI 做出了重大贡献。本综述全面介绍了碳纳米材料对 BCI 领域的贡献,并讨论了它们的潜在应用。该主题扩展到包括此类材料在生物电子界面领域的应用,以及未来可植入 BCI 研究和开发中可能出现的潜在挑战。通过探讨这些问题,本综述旨在深入了解这一快速发展领域的令人兴奋的发展和机遇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81cc/10048878/ed00a877a320/ijms-24-05182-g002.jpg

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