神经接口:连接大脑与医疗之外的世界

Shumao Xu, Yang Liu, Hyunjin Lee, Weidong Li
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引用次数: 0

摘要

神经接口是神经技术与城市规划的交叉点,有望改变我们与周围环境的互动和交流方式。通过记录和解码神经信号,这些界面可促进大脑与外部设备的直接连接,实现无缝信息交换和共享体验。然而,材料科学、电化学和算法设计等方面的复杂性给这些界面的开发带来了挑战。电生理串扰以及电极刚性与组织柔性之间的不匹配,使信号保真度和生物兼容性更加复杂。最新的闭环脑机接口虽然在情绪调节和认知增强方面大有可为,但却受到解码准确性和用户界面适应性的限制。本视角概述了这些挑战,讨论了神经接口的进展,对比了非侵入式和侵入式方法,并探讨了刺激和直接接口之间的动态关系。重点是医疗保健以外的应用,强调了对具有高分辨率记录和刺激能力的可植入界面的需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Neural interfaces: Bridging the brain to the world beyond healthcare

Neural interfaces: Bridging the brain to the world beyond healthcare

Neural interfaces, emerging at the intersection of neurotechnology and urban planning, promise to transform how we interact with our surroundings and communicate. By recording and decoding neural signals, these interfaces facilitate direct connections between the brain and external devices, enabling seamless information exchange and shared experiences. Nevertheless, their development is challenged by complexities in materials science, electrochemistry, and algorithmic design. Electrophysiological crosstalk and the mismatch between electrode rigidity and tissue flexibility further complicate signal fidelity and biocompatibility. Recent closed-loop brain-computer interfaces, while promising for mood regulation and cognitive enhancement, are limited by decoding accuracy and the adaptability of user interfaces. This perspective outlines these challenges and discusses the progress in neural interfaces, contrasting non-invasive and invasive approaches, and explores the dynamics between stimulation and direct interfacing. Emphasis is placed on applications beyond healthcare, highlighting the need for implantable interfaces with high-resolution recording and stimulation capabilities.

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CiteScore
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