基于压电MEMS谐振器的体外血液粘度监测

M. Schneider, Júlia Santasusagna, Ingrid Anna Maria Magnet, U. Schmid
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引用次数: 0

摘要

这项探索性工作证明了板型压电MEMS谐振器在测量人体血液动态粘度方面的潜力。这些微机械硅传感器在屋顶瓦片形状的振动模式下工作,在液体中具有高质量的因素。17振动模式的质量因子与基于粘度标准的传感器校准程序结合使用,以监测该流体材料参数。我们证明,MEMS传感器可以提供长时间的实时粘度数据,这可能对心血管医学和体外膜氧合(ECMO)等医疗应用具有很高的兴趣。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ex Vivo Blood Viscosity Monitoring with Piezoelectric MEMS Resonators
This exploratory work demonstrates the potential of plate-type piezoelectric MEMS resonators for measuring the dynamic viscosity of human blood. These micromachined silicon sensors are operated in roof-tile shaped vibrational modes, featuring high quality factors in liquids. The quality factor of the 17 vibrational mode is used in combination with a sensor calibration procedure which is based on viscosity standards to monitor this fluidic material parameter. We demonstrate, that the MEMS sensor can provide real-time viscosity data over extended periods of time, which may be of high interest in cardiovascular medicine and medical applications such as extracorporal membrane oxygenation (ECMO).
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