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综述:用于神经生理学记录植入物的电极和封装材料

A Review: Electrode and Packaging Materials for Neurophysiology Recording Implants.

作者信息

Yang Weiyang, Gong Yan, Li Wen

机构信息

Microtechnology Lab, Department of Electrical and Computer Engineering, Michigan State University, East Lansing, MI, United States.

出版信息

Front Bioeng Biotechnol. 2021 Jan 14;8:622923. doi: 10.3389/fbioe.2020.622923. eCollection 2020.

Abstract

To date, a wide variety of neural tissue implants have been developed for neurophysiology recording from living tissues. An ideal neural implant should minimize the damage to the tissue and perform reliably and accurately for long periods of time. Therefore, the materials utilized to fabricate the neural recording implants become a critical factor. The materials of these devices could be classified into two broad categories: electrode materials as well as packaging and substrate materials. In this review, inorganic (metals and semiconductors), organic (conducting polymers), and carbon-based (graphene and carbon nanostructures) electrode materials are reviewed individually in terms of various neural recording devices that are reported in recent years. Properties of these materials, including electrical properties, mechanical properties, stability, biodegradability/bioresorbability, biocompatibility, and optical properties, and their critical importance to neural recording quality and device capabilities, are discussed. For the packaging and substrate materials, different material properties are desired for the chronic implantation of devices in the complex environment of the body, such as biocompatibility and moisture and gas hermeticity. This review summarizes common solid and soft packaging materials used in a variety of neural interface electrode designs, as well as their packaging performances. Besides, several biopolymers typically applied over the electrode package to reinforce the mechanical rigidity of devices during insertion, or to reduce the immune response and inflammation at the device-tissue interfaces are highlighted. Finally, a benchmark analysis of the discussed materials and an outlook of the future research trends are concluded.

摘要

迄今为止,已经开发出各种各样的神经组织植入物用于从活体组织进行神经生理学记录。理想的神经植入物应尽量减少对组织的损伤,并能长期可靠且准确地发挥作用。因此,用于制造神经记录植入物的材料成为一个关键因素。这些装置的材料可分为两大类:电极材料以及封装和基底材料。在本综述中,将根据近年来报道的各种神经记录装置,分别对无机(金属和半导体)、有机(导电聚合物)和碳基(石墨烯和碳纳米结构)电极材料进行综述。讨论了这些材料的特性,包括电学特性、力学特性、稳定性、生物降解性/生物可吸收性、生物相容性和光学特性,以及它们对神经记录质量和装置性能的至关重要性。对于封装和基底材料,在将装置长期植入人体复杂环境时需要不同的材料特性,如生物相容性以及防潮和防气密封性。本综述总结了各种神经接口电极设计中使用的常见固体和软包装材料及其封装性能。此外,还重点介绍了几种通常应用于电极封装上的生物聚合物,它们可在插入过程中增强装置的机械刚性,或减少装置与组织界面处的免疫反应和炎症。最后,对所讨论的材料进行了基准分析并总结了未来的研究趋势展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a78a/7873964/d828d4cdba3c/fbioe-08-622923-g0001.jpg

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