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Biologically compatible neural interface to safely couple nanocoated electrodes to the surface of the brain

机译:具有生物相容性的神经接口,可将纳米涂层的电极安全地连接到大脑表面

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摘要

The ongoing interest in densely packed miniaturized electrode arrays for high-resolution epicortical recordings has induced many researchers to explore the use of nanomaterial coatings to reduce electrode impedance while increasing signal-to-noise ratio and charge injection capability. Although these materials are very effective, their use in clinical practice is strongly inhibited by concerns about the potential risks derived from the use of nanomaterials in direct contact with the human brain. In this work we propose a novel approach to safely couple nanocoated electrodes to the brain surface by encapsulating them with a biocompatible hydrogel. We prove that fibrin hydrogel coating over nanocoated high-density arrays of epicortical microelectrodes is electrically transparent and allows avoiding direct exposure of the brain tissue to the nanocoatings while maintaining all the advantages derived from the nanostructured electrode surface. This method may make available acute and sub-acute neural recordings with nanocoated high-resolution arrays for clinical applications.
机译:对用于高分辨率皮层记录的致密包装的小型化电极阵列的持续关注促使许多研究人员探索使用纳米材料涂层来降低电极阻抗,同时增加信噪比和电荷注入能力。尽管这些材料非常有效,但由于人们担心直接与人脑直接接触使用纳米材料而产生的潜在风险,因此强烈地限制了它们在临床实践中的使用。在这项工作中,我们提出了一种新颖的方法,通过用生物相容性水凝胶将纳米涂层的电极包封,将纳米涂层的电极安全地耦合到大脑表面。我们证明纤维蛋白水凝胶涂层在表皮微电极的纳米涂层高密度阵列上是电透明的,并允许避免脑组织直接暴露于纳米涂层,同时保持源自纳米结构电极表面的所有优点。这种方法可以为临床应用提供纳米涂层高分辨率阵列的急性和亚急性神经记录。

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