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A fully immersible deep-brain neural probe with modular architecture and a delta-sigma ADC integrated under each electrode for parallel readout of 144 recording sites

机译:具有模块化架构的完全不含深脑神经探头和集成在每个电极下的Δ-sigma ADC,用于并行读出144个记录网站

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The evolution of tissue-penetrating probes for high-density deep-brain recording of in vivo neural activity is limited by the level of electronic integration on the probe shaft. As the number of electrodes increases, conventional devices need either a large number of interconnects at the base of the probe or allow only a reduced number of electrodes to be read out simultaneously [1,2]. Active probes are used to improve the signal quality and reduce parasitic effects in situ, but still need to route these signals from the electrodes to a base where the readout electronics is located on a large area [3,4]. In this work, we present a modular and scalable architecture of a needle probe, which, instead of routing or prebuffering noise-sensitive analog signals along the shaft, integrates analog-to-digital conversion under each electrode in an area of 70×70μm2. The design eliminates the need for any additional readout circuitry at the top of the probe and connects with a digital 4-wire interface. The presented reconfigurable 11.5mm probe features a constant width of 70μm and thickness of 50μm from top to bottom for minimal tissue damage with 144 integrated recording sites and can be fully immersed in tissue for deep-brain recording applications.
机译:用于体内神经活动的高密度深脑记录组织穿透探针的演进通过在探针轴电子集成水平的限制。随着电极的数目增加时,传统的装置需要或者大量互连的在探针的基部或允许同时[1,2]仅读出一个电极数目减少。活性探针用于提高信号质量和减少在原位的寄生效应,但仍需要路线从电极到读出电子器件位于大面积[3,4]碱这些信号。在这项工作中,我们提出了一个针探针,的模块化和可扩展的体系结构,其代替70×70微米的区域,每个电极下的路由或沿着轴预缓冲噪声敏感的模拟信号,集成模拟 - 数字转换, 2 。该设计消除了在探针并连接顶部的任何附加的读出电路与数字4线接口的需要。所提出的可重构11.5毫米探针设有70μm与从顶部50微米的厚度的恒定的宽度,以底部为与144个集成记录点的最小的组织损伤,并且可以完全浸没在组织深脑记录的应用程序。

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