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Microcantilever based disposable viscosity sensor for serum and blood plasma measurements

机译:基于微悬臂的一次性粘度传感器,用于血清和血浆测量

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摘要

This paper proposes a novel method for measuring blood plasma and serum viscosity with a microcantilever-based MEMS sensor. MEMS cantilevers are made of electroplated nickel and actuated remotely with magnetic field using an electro-coil. Real-time monitoring of cantilever resonant frequency is performed remotely using diffraction gratings fabricated at the tip of the dynamic cantilevers. Only few nanometer cantilever deflection is sufficient due to interferometric sensitivity of the readout. The resonant frequency of the cantilever is tracked with a phase lock loop (PLL) control circuit. The viscosities of liquid samples are obtained through the measurement of the cantilever's frequency change with respect to a reference measurement taken within a liquid of known viscosity. We performed measurements with glycerol solutions at different temperatures and validated the repeatability of the system by comparing with a reference commercial viscometer. Experimental results are compared with the theoretical predictions based on Sader's theory and agreed reasonably well. Afterwards viscosities of different Fetal Bovine Serum and Bovine Serum Albumin mixtures are measured both at 23. °C and 37. °C, body temperature. Finally the viscosities of human blood plasma samples taken from healthy donors are measured. The proposed method is capable of measuring viscosities from 0.86. cP to 3.02. cP, which covers human blood plasma viscosity range, with a resolution better than 0.04. cP. The sample volume requirement is less than 150. μl and can be reduced significantly with optimized cartridge design. Both the actuation and sensing are carried out remotely, which allows for disposable sensor cartridges. © 2013 .
机译:本文提出了一种基于微悬臂梁的MEMS传感器测量血浆和血清粘度的新方法。 MEMS悬臂由电镀镍制成,并使用电线圈在磁场作用下进行远程驱动。悬臂谐振频率的实时监控是使用动态悬臂尖端处制造的衍射光栅远程进行的。由于读数的干涉灵敏度,仅几纳米的悬臂偏转就足够了。悬臂的谐振频率由锁相环(PLL)控制电路跟踪。相对于在已​​知粘度的液体中进行的参考测量,通过测量悬臂的频率变化可获得液体样品的粘度。我们用甘油溶液在不同温度下进行了测量,并与参考粘度计进行了比较,验证了系统的可重复性。将实验结果与基于萨德尔理论的理论预测进行了比较,并取得了很好的一致。然后,在23℃和37℃的体温下测量不同胎牛血清和牛血清白蛋白混合物的粘度。最后,测量从健康供体采集的人血浆样品的粘度。所提出的方法能够从0.86开始测量粘度。 cP为3.02。 cP,涵盖人类血浆粘度范围,分辨率优于0.04。 cP。样品量要求小于150μl,可通过优化的试剂盒设计显着降低样品量。致动和感测都可以远程进行,从而可以使用一次性传感器盒。 ©2013。

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