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Multifunctional Neural Interfaces for Closed-Loop Control of Neural Activity

机译:多功能神经接口,用于神经活动的闭环控制

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Microfabrication and nanotechnology have significantly expanded the technological capabilities for monitoring and modulating neural activity with the goal of studying the nervous system and managing neurological disorders. This feature article initially provides a tutorial-like review of the prominent technologies for enabling this two-way communication with the nervous system via electrical, chemical, and optical means. Following this overview, the article discusses emerging high-throughput methods for identifying device attributes that enhance the functionality of interfaces. The discussion then extends into opportunities and challenges in integrating different device functions within a small footprint with the goal of closed-loop control of neural activity with high spatiotemporal resolution and reduced adverse tissue response. The article concludes with an outline of future directions in the development and applications of multifunctional neural interfaces.
机译:微细加工和纳米技术极大地扩展了监视和调节神经活动的技术能力,其目的是研究神经系统和管理神经系统疾病。这篇专题文章最初对主要技术进行了类似教程的评论,这些技术使通过电气,化学和光学手段与神经系统进行双向通信成为可能。在此概述之后,本文讨论了新兴的高吞吐量方法,这些方法可用于识别增强接口功能的设备属性。讨论随后扩展到在较小的占地面积内集成不同设备功能的机遇和挑战,其目标是具有高时空分辨率并减少不良组织反应的神经活动的闭环控制。本文最后概述了多功能神经接口的开发和应用的未来方向。

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