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Development of an anatomically conformal parylene neural probe array for multi-region hippocampal recordings

机译:多区域海马记录的解剖学全成形聚对二甲苯神经探针阵列的研制

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We report the first Parylene C neural probe array that is anatomically matched to multiple regions of the hippocampus and successfully demonstrate recordings from targeted regions. No prior polymer probe array has achieved recordings at the depth of the hippocampus (5.5 mm probe length) and at such a high electrode density (64 electrodes). In addition, bare probes were implanted without the use of any insertion shuttles thereby enabling, for the first time, acquisition of dense neural information from deep brain targets of interest while restricting acute tissue disruption to the as-fabricated probe cross-section. Here, we present design and fabrication of the Parylene neural array, its electrical packaging scheme, and acute, in vivo recordings from pyramidal cells of both the cornu ammonis (CA) 1 and CA3 regions, essential players in the one-way hippocampal circuit that encodes memory.
机译:我们报告了第一族聚糖C神经探针阵列,其与海马的多个区域进行解剖学匹配,并成功地展示了来自目标区域的录音。没有先前的聚合物探针阵列已经在海马(5.5mm探针长度)的深度处和在这种高电极密度(64个电极)上实现了记录。另外,在不使用任何插入梭的情况下植入裸露探针,从而使得从深脑的感兴趣目标获取密集的神经信息,同时限制对药物探针横截面的急性组织破坏。在此,我们在玉米氨(CA3)1和CA3区的金字塔细胞中,呈现聚对聚环神经阵列,其电气包装方案和急性的设计和制造,其基础海马电路中的必需参与者编码内存。

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