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An Oscillated, Self-sensing Piezoresistive Microcantilever Sensor with Fast Fourier Transform Analysis for Point-of-care Blood Coagulation Monitoring

机译:具有快速傅里叶变换分析的振荡,自感压阻式微电势传感器,用于治疗点凝固监测

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We present a real-time blood coagulation monitoring by using an externally vibrated, self-sensing piezoresistive microcantilever sensor for disposable point-of-care coagulation device. As the piezoresistive microcantilever was immersed in the sample solution, the measurement was performed in a vibration at fixed frequency and fixed amplitude. During the blood coagulation reaction, the viscosity of the sample suddenly rises due to the clot formation. The increased force can be sensed when the resistance amplitude rises. The acquired signal of resistance change that resists to the motion of the beam was processed by Fast Fourier Transform (FFT) algorithm to filter disturbed signals, and the resistance amplitude indicated the measured force exerting onto the cantilever. With such a selfsensing cantilever sensor technique and FFT analysis system, the prothrombin time (PT) result measured by the self-sensing microcantilever technique exhibits a strong correlation with that of clinically used prothrombin time measured by the commercial instrument of mechanical detection. Moreover, this work quantitatively characterizes the entire viscosity changes of a biochemically induced time-dependent reaction in blood coagulation, while the conventional Sonoclot measurement technique simply provides qualitative information.
机译:我们提出了一个实时的血液凝固通过使用外部振动时,自感知压阻微悬臂梁为点照护一次性凝器传感器来监测。由于压阻微悬臂梁浸渍在试样溶液,测定是在固定的频率和固定振幅的振动进行。在血液凝固反应时,样品的粘度急剧上升,由于凝块形成。当电阻振幅上升的增大的力可以被感测。该抗蚀剂到梁的运动是由快速傅立叶变换(FFT)算法来滤波器处理电阻变化的获取的信号的干扰信号,并且电阻振幅指示所测量的施力到悬臂。利用这样的selfsensing悬臂梁传感器技术和FFT分析系统,凝血酶原时间(PT)由selfsensing微悬臂梁技术表现出与由机械检测的商用仪器测得的临床上使用的凝血酶原时间的强相关性结果来测量。此外,这种工作定量表征在血液凝固一个生化诱导时间依赖性反应的整个粘度变化,而常规Sonoclot测量技术仅提供定性信息。

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