McGraw Christina M, Stitzel Shannon E, Cleary John, Slater Conor, Diamond Dermot
Adaptive Sensors Group, National Centre for Sensor Research, School of Chemical Sciences, Dublin City University, Dublin 9, Ireland.
Talanta. 2007 Feb 28;71(3):1180-5. doi: 10.1016/j.talanta.2006.06.011. Epub 2006 Jul 18.
Miniaturization of analytical devices through the advent of microfluidics and micro total analysis systems is an important step forward for applications such as medical diagnostics and environmental monitoring. The development of field-deployable instruments requires that the entire system, including all necessary peripheral components, be miniaturized and packaged in a portable device. A sensor for long-term monitoring of phosphate levels has been developed that incorporates sampling, reagent and waste storage, detection, and wireless communication into a complete, miniaturized system. The device employs a low-power detection and communication system, so the entire instrument can operate autonomously for 7 days on a single rechargeable, 12V battery. In addition, integration of a wireless communication device allows the instrument to be controlled and results to be downloaded remotely. This autonomous system has a limit of detection of 0.3mg/L and a linear dynamic range between 0 and 20mg/L.
微流控技术和微全分析系统的出现使分析设备小型化,这是医学诊断和环境监测等应用向前迈出的重要一步。可现场部署仪器的开发要求整个系统,包括所有必要的外围组件,都要小型化并封装在便携式设备中。现已开发出一种用于长期监测磷酸盐水平的传感器,该传感器将采样、试剂和废物存储、检测以及无线通信集成到一个完整的小型化系统中。该设备采用低功耗检测和通信系统,因此整个仪器使用一块可充电的12V电池就能自主运行7天。此外,无线通信设备的集成使仪器能够远程控制并下载结果。这个自主系统的检测限为0.3mg/L,线性动态范围在0至20mg/L之间。