Roham Masoud, Halpern Jeffrey M, Martin Heidi B, Chiel Hillel J, Mohseni Pedram
Electrical Engineering and Computer Science Department, Case Western Reserve University, Cleveland, OH 44106, USA.
IEEE Trans Biomed Eng. 2008 Nov;55(11):2628-34. doi: 10.1109/TBME.2008.2001264.
An integrated circuit for wireless real-time monitoring of neurochemical activity in the nervous system is described. The chip is capable of conducting high-resolution amperometric measurements in four settings of the input current. The chip architecture includes a first-order Delta Sigma modulator (Delta Sigma M) and a frequency-shift-keyed (FSK) voltage-controlled oscillator (VCO) operating near 433 MHz. It is fabricated using the AMI 0.5 microm double-poly triple-metal n-well CMOS process, and requires only one off-chip component for operation. Measured dc current resolutions of approximately 250 fA, approximately 1.5 pA, approximately 4.5 pA, and approximately 17 pA were achieved for input currents in the range of +/-5, +/-37, +/-150, and +/-600 nA, respectively. The chip has been interfaced with a diamond-coated, quartz-insulated, microneedle, tungsten electrode, and successfully recorded dopamine concentration levels as low as 0.5 microM wirelessly over a transmission distance of approximately 0.5 m in flow injection analysis experiments.
描述了一种用于无线实时监测神经系统中神经化学活动的集成电路。该芯片能够在四种输入电流设置下进行高分辨率安培测量。芯片架构包括一个一阶Delta Sigma调制器(Delta Sigma M)和一个工作在433MHz附近的频移键控(FSK)压控振荡器(VCO)。它采用AMI 0.5微米双多晶硅三金属n阱CMOS工艺制造,运行仅需一个片外组件。对于+/-5、+/-37、+/-150和+/-600nA范围内的输入电流,测量得到的直流电流分辨率分别约为250fA、约1.5pA、约4.5pA和约17pA。在流动注射分析实验中,该芯片已与金刚石涂层、石英绝缘、微针、钨电极连接,并成功在约0.5m的传输距离上无线记录了低至0.5 microM的多巴胺浓度水平。