首页> 外文会议>Symposium on VLSI Circuits >A neurochemical pattern generator SoC with switched-electrode management for single-chip electrical stimulation and 9.3#x00B5;W, 78pArms, 400V/s FSCV sensing
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A neurochemical pattern generator SoC with switched-electrode management for single-chip electrical stimulation and 9.3#x00B5;W, 78pArms, 400V/s FSCV sensing

机译:具有用于单芯片电刺激和9.3µW,78pArms,400V / s FSCV感应的开关电极管理的神经化学模式发生器SoC

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This paper describes a system-on-chip (SoC) fabricated in 0.35µm 2P/4M CMOS for high-fidelity neurochemical pattern generation in vivo. The SoC uniquely integrates electrical stimulation with embedded timing management and 400V/s fast-scan cyclic voltammetry (FSCV) sensing, and manages a novel switched-electrode scheme that eliminates the possibility of large stimulus artifacts adversely affecting electrochemistry. The SoC also leverages the discontinuous sampling inherent in FSCV to reduce the power consumption per sensing channel by ∼88% vs. state-of-the-art. The correlation coefficient between the predicted and measured temporal profiles of electrically evoked dopamine in the brain of an anesthetized rat is 0.95.
机译:本文介绍了以0.35µm 2P / 4M CMOS芯片制造的系统级芯片(SoC),用于在体内生成高保真神经化学图形。 SoC独特地将电刺激与嵌入式时序管理和400V / s快速扫描循环伏安法(FSCV)感应集成在一起,并管理一种新颖的开关电极方案,从而消除了可能对电化学产生不利影响的大刺激物。 SoC还利用FSCV固有的不连续采样功能,与最新技术相比,每个传感通道的功耗降低了约88%。在麻醉的大鼠的大脑中,电诱发的多巴胺的预测和测得的时间分布之间的相关系数为0.95。

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