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Removable Silicon Insertion Stiffeners for Neural Probes Using Polyethylene Glycol As a Biodissolvable Adhesive

机译:用于使用聚乙二醇作为生物或溶解粘合剂的神经探针可移除硅插入加强件

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Flexible polymer probes are expected to enable extended interaction with neural tissue by minimizing damage from micromotion and reducing inflammatory tissue response. However, their flexibility prevents them from being easily inserted into the tissue. This paper describes an approach for temporarily attaching a silicon stiffener with biodissolvable polyethylene glycol (PEG) so that the stiffener can be released from the probe and extracted shortly after probe placement. A novel stiffener design with wicking channels, along with flipchip technology, enable accurate alignment of the probe to the stiffener, as well as uniform distribution of the PEG adhesive. Insertion, extraction, and electrode function were tested in both agarose gel and a rat brain. Several geometric and material parameters were tested to minimize probe displacement during stiffener extraction. We demonstrated average probe displacement of 28 ± 9 μm.
机译:预期柔性聚合物探针通过最大限度地减少微观测量和减少炎症组织反应来实现与神经组织的延长相互作用。然而,它们的灵活性可防止它们容易插入组织中。本文描述了一种用生物瘤溶解的聚乙二醇(PEG)临时地附着硅加强件,使得加强件可以从探针释放并在探测放置后不久提取。具有芯吸通道的新型加强件设计以及Flipchip技术,可以将探头的精确对准加强件,以及PEG粘合剂的均匀分布。在琼脂糖凝胶和大鼠脑中测试插入,提取和电极功能。测试了几种几何和材料参数,以最小化加强件提取期间的探针位移。我们证明了平均探针位移为28±9μm。

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