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Design Fabrication and Implementation of a Wireless Passive Implantable Pressure Sensor Based on Magnetic Higher-Order Harmonic Fields

机译:基于磁场高次谐波场的无线无源可植入压力传感器的设计制作和实现

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摘要

A passive and wireless sensor was developed for monitoring pressure in vivo. Structurally, the pressure sensor, referred to as the magneto-harmonic pressure sensor, is an airtight chamber sealed with an elastic pressure membrane. A strip of magnetically-soft material is attached to the bottom of the chamber and a permanent magnet strip is embedded inside the membrane. Under the excitation of an externally applied AC magnetic field, the magnetically-soft strip produces a higher-order magnetic signature that can be remotely detected with an external receiving coil. As ambient pressure varies, the pressure membrane deflects, altering the separation distance between the magnetically-soft strip and the permanent magnet. This shifts the higher-order harmonic signal, allowing for detection of pressure change as a function of harmonic shifting. The wireless, passive nature of this sensor technology allows for continuous long-term pressure monitoring, particularly useful for biomedical applications such as monitoring pressure in aneurysm sac and sphincter of Oddi. In addition to demonstrating its pressure sensing capability, an animal model was used to investigate the efficacy and feasibility of the pressure sensor in a biological environment.
机译:开发了一种被动和无线传感器来监视体内压力。压力传感器在结构上称为磁谐波压力传感器,是一个用弹性压力膜密封的气密室。一条软磁性材料的条带连接到腔室的底部,永久磁铁条嵌入膜片内部。在外部施加的交流磁场的激励下,软磁条会产生更高阶的磁信号,可以通过外部接收线圈进行远程检测。随着环境压力的变化,压力膜片会发生挠曲,从而改变软磁条和永磁体之间的分隔距离。这将移位高阶谐波信号,从而允许检测压力变化作为谐波移位的函数。这种传感器技术的无线,被动特性允许进行连续的长期压力监测,特别适用于生物医学应用,例如监测动脉瘤囊和Oddi括约肌的压力。除了展示其压力感测能力外,还使用动物模型研究了压力传感器在生物环境中的功效和可行性。

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