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首页> 外文期刊>IEEE Transactions on Instrumentation and Measurement >Towards a Miniature Implantable In Vivo Telemetry Monitoring System Dynamically Configurable as a Potentiostat or Galvanostat for Two- and Three-Electrode Biosensors
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Towards a Miniature Implantable In Vivo Telemetry Monitoring System Dynamically Configurable as a Potentiostat or Galvanostat for Two- and Three-Electrode Biosensors

机译:面向可动态配置为两电极和三电极生物传感器的恒电位仪或恒电流仪的微型植入式体内遥测监控系统

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摘要

A miniature implantable and dynamically configurable potentiostat and galvanostat for two- and three-electrode biosensors with a telemetry electronics package was developed to provide remote monitoring of implantable amperometric and voltametric biosensors such as for glucose. Included are circuitry for sensor biasing, a transimpedance amplifier to produce the sensor proportional output signal, and a transceiver (transmitter and receiver) which can both receive setup parameter values and transmit the biosensor concentration data to a corresponding remote transceiver and computer for monitoring. Remotely con- figurable features included in the in vivo implanted unit include: sensor excitation changes; filter frequency cutoff values, amplifier gain; and transmission intervals utilizing 303.825-MHz UHF RF telemetry for end-to-end remote data monitoring. The developed mP/Gstat printed circuit board measures about 51 x 22 x 1 mm thick, and is suitable for bench top or encapsulated use. Instrumentation developed in this paper will allow other researchers to develop implantable units. Evaluation in two- and three-electrode mPstat and two electrode mGstat modes with simulated biosensors showed overall average theoretical to actual recorded value differ- ences of only 0.5859% reading (RDG) with a standard deviation (SD) of 0.5376% indicating excellent design performance. System testing in two-electrode mPstat mode with actual glucose sensors showed excellent stability and correlation to standard biosensor calibrations with an average difference of only 7.33% full scale (FS) with 3.65% SD, which is minimal considering two totally independent calibration instrument configurations.
机译:开发了带有遥测电子封装的用于两电极和三电极生物传感器的微型可植入且可动态配置的恒电位仪和恒电流仪,以提供对葡萄糖等可植入安培和伏安生物传感器的远程监控。包括用于传感器偏置的电路,用于产生传感器比例输出信号的跨阻放大器以及可以同时接收设置参数值并将生物传感器浓度数据发送到相应的远程收发器和计算机进行监视的收发器(发送器和接收器)。体内植入单元中可远程​​配置的功能包括:传感器激励变化;滤波器截止频率值,放大器增益;利用303.825 MHz UHF RF遥测技术进行传输和传输间隔,以进行端到端的远程数据监控。开发的mP / Gstat印刷电路板的厚度约为51 x 22 x 1 mm,适合台式或封装使用。本文开发的仪器将允许其他研究人员开发可植入单元。使用模拟生物传感器对两电极和三电极mPstat模式和两电极mGstat模式进行评估显示,理论值与实际记录值之间的总体平均平均值差异仅为0.5859%(RDG),标准偏差(SD)为0.5376%,表明了出色的设计性能。使用实际葡萄糖传感器在两电极mPstat模式下进行的系统测试显示出出色的稳定性和与标准生物传感器校准的相关性,其平均差异仅为7.33%满量程(FS)和3.65%SD,考虑到两个完全独立的校准仪器配置,这是最小的。

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