首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Design of a Portable Orthogonal Surface Acoustic Wave Sensor System for Simultaneous Sensing and Removal of Nonspecifically Bound Proteins
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Design of a Portable Orthogonal Surface Acoustic Wave Sensor System for Simultaneous Sensing and Removal of Nonspecifically Bound Proteins

机译:同时检测和去除非特异性结合蛋白的便携式正交表面声波传感器系统的设计

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摘要

One challenge for current surface acoustic wave (SAW) biosensors is reducing nonspecific adsorption. A device propagating Rayleigh and shear horizontal surface acoustic waves in orthogonal directions fabricated in ST quartz has the capability of achieving simultaneous detection and nonspecific binding (NSB) protein removal. Current measurement methods for a SAW sensor system based on this device require large-size and expensive equipment such as a vector network analyzer (VNA), signal generator, and frequency counter, which are not suitable for portable, especially point-of-care, applications. In this work, a portable platform based on a direct digital synthesizer (DDS) is investigated for the orthogonal SAW sensor, integrating signal synthesis, gain control, phase/amplitude measurement, and data processing in a small, portable electronic system. This prototype was verified for both stability and repeatability, and the results matched very well with VNA measurements. Finally, system performance in real-time sensing and NSB removal was evaluated.
机译:当前的表面声波(SAW)生物传感器的挑战之一是减少非特异性吸附。在ST石英中制造的沿正交方向传播瑞利和剪切水平面声波的设备具有实现同时检测和非特异性结合(NSB)蛋白去除的功能。基于该设备的SAW传感器系统的当前测量方法需要大型且昂贵的设备,例如矢量网络分析仪(VNA),信号发生器和频率计数器,这些设备不适合便携式尤其是现场护理,应用程序。在这项工作中,研究了一种基于直接数字合成器(DDS)的便携式平台,用于正交SAW传感器,在小型便携式电子系统中集成了信号合成,增益控制,相位/幅度测量和数据处理功能。对该原型进行了稳定性和可重复性验证,结果与VNA测量非常吻合。最后,评估了实时感测和NSB移除的系统性能。

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