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A bidirectional neural interface SoC with an integrated spike recorder, microstimulator, and low-power processor for real-time stimulus artifact rejection

机译:具有集成的峰值记录器,微刺激器和低功耗处理器的双向神经接口SoC,用于实时消除刺激物

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This paper presents a neural interface system-on-chip (SoC), featuring combined spike recording, electrical microstimulation and real-time stimulus artifact rejection (SAR) for bidirectional interfacing with the central nervous system. Fabricated in AMS 0.35цm 2P/4M CMOS, the SoC integrates a spike-recording front-end with input noise voltage of 3.42μV (0.5Hz-50kHz), microstimulating back-end for delivering charge-balanced monophasic or asymmetric biphasic current pulses up to ∼100μA with passive discharge, and nW-level digital signal processing (DSP) unit for real-time SAR based on template subtraction. The 3.1 × 3.1-mm SoC has been characterized in benchtop tests and neurobiological experiments in isolated buccal ganglia of an Aplysia catifornica (a marine sea slug). The SoC can successfully remove large stimulus artifacts from the contaminated neural data in real time and recover extracellular neural spikes that occur on the tail end of the artifacts. The root-mean-square (rms) value of the pre-processed stimulus artifact is reduced on average by a factor of ∼24 post-processing.
机译:本文介绍了芯片上的神经界面(SOC),具有与中枢神经系统的双向接口的组合尖峰记录,电动微刺激和实时刺激伪像抑制(SAR)。 SOC中的AMS0.35цM2P / 4M CMOS制造,SOC集成了3.42μV(0.5Hz-50kHz)的峰值记录前端,用于输送电荷平衡的单孔或不对称双相电流脉冲的微刺噪声基于模板减法的实时SAR与无源放电和NW级数字信号处理(DSP)单元进行~100μA。 3.1×3.1-mm SoC的特征在于Benchtop试验和神经生物学实验,在Applysia Casifornica(海洋海洋Slug)的孤立口腔神经节中。 SoC可以实时地成功地从污染的神经数据中从污染的神经数据中删除大型刺激伪影,并恢复在伪影的尾端上发生的细胞外神经尖峰。预处理刺激器件的根平均方形(RMS)值平均降低了〜24倍的后处理。

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