Advanced materials for implantable neuroelectronics.

Advanced materials for implantable neuroelectronics.
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DOI:
10.1557/s43577-023-00540-5
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发表时间:
2023-05
期刊:
影响因子:
5
通讯作者:
Fang H
Fang H
中科院分区:
材料科学3区
文献类型:
--
作者:
Qi Y;Kang SK;Fang H

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材料创新可以说是植入式神经电子学发展中最重要的角色之一。这些技术探索了用于阅读、触发和操纵神经科学研究的神经信号的生物相容性工作系统,并为开发用于医学诊断和/或治疗的设备提供了额外的潜力。过去十年是神经电子材料研究的黄金时代。例如,基于软材料的设备的研发已经爆炸式发展,并成为许多应用的中心,包括中枢和外周神经接口。最近的事态发展也见证了生物可降解和多功能装置的出现。在这篇文章中,我们的目的是概述植入式神经电子学的最新进展,重点是慢性生物相容性,生物降解性和多功能性。除了强调基础材料创新,我们还讨论了重要的挑战和未来的机遇。
Materials innovation has arguably played one of the most important roles in the development of implantable neuroelectronics. Such technologies explore biocompatible working systems for reading, triggering, and manipulating neural signals for neuroscience research and provide the additional potential to develop devices for medical diagnostics and/or treatment. The past decade has witnessed a golden era in neuroelectronic materials research. For example, R&D on soft material-based devices have exploded and taken center stage for many applications, including both central and peripheral nerve interfaces. Recent developments have also witnessed the emergence of biodegradable and multifunctional devices. In this article, we aim to overview recent advances in implantable neuroelectronics with an emphasis on chronic biocompatibility, biodegradability, and multifunctionality. In addition to highlighting fundamental materials innovations, we also discuss important challenges and future opportunities.
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