IEEE Trans Biomed Circuits Syst. 2008 Mar;2(1):3-9. doi: 10.1109/TBCAS.2008.918282.
An integrated circuit for real-time wireless monitoring of neurochemical activity in the nervous system is described. The chip is capable of conducting measurements in both fast-scan cyclic voltammetry (FSCV) and amperometry modes for a wide input current range. The chip architecture employs a second-order DeltaSigma modulator (DeltaSigmaM) and a frequency-shift-keyed transmitter operating near 433 MHz. It is fabricated using the AMI 0.5-mum double-poly triple-metal n-well CMOS process, and requires only one off-chip component for operation. A measured current resolution of 12 pA at a sampling rate of 100 Hz and 132 pA at a sampling rate of 10 kHz is achieved in amperometry and 300-V/s FSCV modes, respectively, for any input current in the range of plusmn430 nA. The modulator core and the transmitter draw 22 and 400 muA from a 2.6-V power supply, respectively. The chip has been externally interfaced with a carbon-fiber microelectrode implanted acutely in the caudate-putamen of an anesthetized rat, and, for the first time, extracellular levels of dopamine elicited by electrical stimulation of the medial forebrain bundle have been successfully recorded wirelessly using 300-V/s FSCV.
描述了一种用于实时无线监测神经系统中神经化学活性的集成电路。该芯片能够在快速扫描循环伏安法 (FSCV) 和安培法模式下进行测量,输入电流范围很宽。芯片架构采用二阶 DeltaSigma 调制器 (DeltaSigmaM) 和工作在 433 MHz 附近的频移键控发射器。它是使用 AMI 0.5 微米双多晶三金属 n 阱 CMOS 工艺制造的,仅需一个外部组件即可工作。在安培法和 300-V/s FSCV 模式下,分别在 100 Hz 的采样率下实现了 12 pA 的电流分辨率,在 10 kHz 的采样率下实现了 132 pA 的电流分辨率,对于 430 nA 范围内的任何输入电流。调制器核心和发射器分别从 2.6 V 电源汲取 22 和 400 uA 的电流。该芯片已与植入麻醉大鼠尾状核 - 壳核的碳纤维微电极外部接口,并且首次成功地使用 300-V/s FSCV 无线记录了电刺激中脑束内侧引起的细胞外多巴胺水平。