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Silicon-Based Microfabrication of Free-Floating Neural Probes and Insertion Tool for Chronic Applications

机译:硅基自由浮动神经探针的微加工和用于慢性应用的插入工具

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摘要

Bidirectional neural interfaces for multi-channel, high-density recording and electrical stimulation of neural activity in the central nervous system are fundamental tools for neuroscience and medical applications. Especially for clinical use, these electrical interfaces must be stable over several years, which is still a major challenge due to the foreign body response of neural tissue. A feasible solution to reduce this inflammatory response is to enable a free-floating implantation of high-density, silicon-based neural probes to avoid mechanical coupling between the skull and the cortex during brain micromotion. This paper presents our latest development of a reproducible microfabrication process, which allows a monolithic integration of a highly-flexible, polyimide-based cable with a silicon-stiffened neural probe at a high resolution of 1 µm. For a precise and complete insertion of the free-floating probes into the cortex, a new silicon-based, vacuum-actuated insertion tool is presented, which can be attached to commercially available electrode drives. To reduce the electrode impedance and enable safe and stable microstimulation an additional coating with the electrical conductive polymer PEDOT:PSS is used. The long-term stability of the presented free-floating neural probes is demonstrated in vitro and in vivo. The promising results suggest the feasibility of these neural probes for chronic applications.
机译:用于中枢神经系统中神经活动的多通道,高密度记录和电刺激的双向神经接口是神经科学和医学应用的基本工具。特别是对于临床使用,这些电接口必须在数年内保持稳定,由于神经组织的异物反应,这仍然是一个主要挑战。减少这种炎症反应的可行解决方案是能够自由浮动地植入高密度,基于硅的神经探针,从而避免在脑部微动过程中头骨与皮质之间的机械耦合。本文介绍了我们可复制的微细加工工艺的最新进展,该工艺允许以1 µm的高分辨率将高度柔性的聚酰亚胺基电缆与硅加强型神经探针进行单片集成。为了将自由浮动的探针精确且完整地插入皮层,提出了一种新的基于硅的,真空致动的插入工具,该工具可以连接到市售的电极驱动器上。为了降低电极阻抗并实现安全稳定的微刺激,使用了带有导电聚合物PEDOT:PSS的附加涂层。在体外和体内证明了所提出的自由漂浮神经探针的长期稳定性。有希望的结果表明这些神经探针在慢性应用中的可行性。

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