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Highly Sensitive ?R/R Measurement System for Nano-electro-Mechanical Cantilever Based Bio-sensors

机译:用于基于纳米机电悬臂的生物传感器的高灵敏度?R / R测量系统

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Functionalized piezoresistive nano-electromechanical cantilevers are promising tools for sensor applications. This paper reports an integration of custom fabricated piezoresistive cantilever sensors and sensitive analog front end circuit for detection of bio-markers. The system operates on the principles of nano-meter deflection of cantilever sensors, due to antigen-antibody interactions, which in turn exhibits change in piezoresistance. The instrumentation hardware can measure resistance changes down to 14 parts per million (ppm) and maximum sensitivity is 2.134 V/ppm. Experiments have been performed with 90K? and 1M? base resistances. A wheat stone bridge connected resistors has been used where the functionalized cantilever forms one of the arms. The measured results using this battery operated system has been presented along with calibration technique. The size of this LCD (Liquid crystal display) based system was reduced to fit into a hand held point-of-care form factor. In addition, users can operate this measurement system with the help of computer to connect to the internet. Measurement results are presented with the introduction of bovine serum albumin (BSA) over the cantilever sensors. This demonstrates the possible application for detection of myocardial infarction in clinical settings.
机译:功能化的压阻纳米机电悬臂是有前途的传感器应用工具。本文报道了定制的压阻悬臂传感器和灵敏的模拟前端电路的集成,用于检测生物标记。由于抗原-抗体之间的相互作用,该系统根据悬臂传感器的纳米级偏转原理工作,这反过来又表现出压阻变化。仪器硬件可以测量低至百万分之14(ppm)的电阻变化,最大灵敏度为2.134 V / ppm。已经用90K进行了实验?和1M?基本电阻。在功能悬臂形成支臂之一的地方,已经使用了连接电阻的小麦石桥。使用此电池操作系统的测量结果已与校准技术一起提供。减小了基于LCD(液晶显示器)的系统的尺寸,以适应手持式即时医疗设备的尺寸要求。此外,用户可以在计算机的帮助下操作该测量系统以连接到互联网。通过在悬臂传感器上引入牛血清白蛋白(BSA)来显示测量结果。这证明了在临床环境中检测心肌梗塞的可能应用。

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