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Preliminary Study of Multichannel Flexible Neural Probes Coated with Hybrid Biodegradable Polymer

机译:混合可生物降解聚合物包覆的多通道柔性神经探针的初步研究

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Two types of intracortical multichannel flexible neural probes coated with a hybrid biodegradable polymer were designed and fabricated. The hybrid biodegradable polymer was made of polyethylene glycol and biodegradable polymeric microspheres containing nerve growth factor (NGF) and incorporated to improve the stiffness for flexible neural probe insertion, and promote regrowth of damaged neural tissues around the probe. The type-A neural probe has a groove structure designed to be seeded with a large amount of the hybrid biodegradable polymer. The type-B neural probe has a unique configuration like skeleton to minimize the volume of the flexible probe and buffer injurious micromotion between the probe and the tissues after implantation. In this preliminary study, the efficacy of the released NGF from the microspheres with the PC12 cells was examined. Further, neural probe implantation and neural signal recording with an acute experiment were studied
机译:设计和制造了两种类型的混合有可生物降解聚合物涂层的皮质内多通道柔性神经探针。杂化的可生物降解聚合物由聚乙二醇和含有神经生长因子(NGF)的可生物降解聚合物微球制成,并掺入其中以提高可挠性神经探针插入的刚度,并促进受损的神经组织在探针周围再生。 A型神经探针的凹槽结构设计成可播种大量的杂化可生物降解聚合物。 B型神经探针具有独特的构架,例如骨架,可最大程度地减少柔性探针的体积,并缓冲植入后探针与组织之间的有害微运动。在这项初步研究中,检查了PC12细胞从微球中释放NGF的功效。此外,还进行了一项急性实验,研究了神经探针植入和神经信号记录

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