Integrated Potentiostat Design for Neurotransmitter Detection in Wireless Implants

S. Yilmaz, T. Constandinou, S. Carrara
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引用次数: 1

Abstract

This paper presents a novel implantable electro- chemical sensor with a built-in readout circuit, with an ultimate aim of measuring dopamine levels in human striatum. The chosen material as the ultra-micro electrode (UME) of the sensor is niobium wire around which a carbon nanospike layer is grown (Nb/CNS) by means of plasma-enhanced chemical vapor deposition. The main focus of this paper is the design of an ultra- low-power wide-range dual-slope analog-to-digital converter that is specifically designed for an Nb/CNS probe to measure Fast- Scan Cyclic Voltammetry (FSCV) current pulses within the range of ±2.56 µA. The dual-slope ADC has a sampling rate of 10 kHz with a 10 MHz clock frequency while requiring an average power consumption of 1.57 µW. The circuit has a root-mean-squared input noise of 30 pA, a resolution of 100 pA and a dynamic range of 58 dB with a 10-bit output.
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无线植入物神经递质检测的集成恒电位器设计
本文提出了一种内置读出电路的新型植入式电化学传感器,其最终目的是测量人类纹状体中的多巴胺水平。采用等离子体增强化学气相沉积的方法,在铌丝周围生长出碳纳米峰层(Nb/CNS)作为传感器的超微电极(UME)。本文的主要重点是设计一种超低功耗宽范围双斜率模数转换器,该转换器专为Nb/CNS探头设计,用于测量±2.56µA范围内的快速扫描循环伏安法(FSCV)电流脉冲。双斜率ADC的采样率为10 kHz,时钟频率为10 MHz,平均功耗为1.57 μ W。该电路的均方根输入噪声为30 pA,分辨率为100 pA,动态范围为58 dB,输出为10位。
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