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A stent-graft endoleakage monitor: Telemetry system based on inductive-coupling transmission for implantable pressure sensors

机译:覆膜支架内漏监测器:基于感应耦合传输的遥测系统,用于植入式压力传感器

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A direct arterial pressure monitoring system for post EVAR procedure based on inductive-coupling is presented which avoids the need for more complex biomedical imaging systems. Post stent-graft implantation complications, such as endoleaks, can be detected with capacitive pressure sensors placed in the stent-graft and monitored externally after the measurement of the oscillation frequency of a LC resonant circuit created by sensors and inductive coupling. Several measurements were performed in order to characterize the system and compare the results with the expected values based on theoretical models. Different measurements were carried-out with the purpose of evaluating the system's frequency detection accuracy throughout the working bandwidth and varying distances between the reader and the sensors. Both air and a phantom with electrical characteristics similar to the human body were used between the reader and the sensors antennas in order to evaluate the influence of the transmission medium. It is shown that in both cases the system is capable of detecting the oscillation frequencies, even in the case a cluster of sensors is used.
机译:提出了一种基于感应耦合的用于EVAR后程序的直接动脉压监测系统,该系统避免了对更复杂的生物医学成像系统的需求。支架植入物植入后的并发症(例如内漏)可以通过放置在支架植入物中的电容式压力传感器进行检测,并在测量由传感器和电感耦合产生的LC谐振电路的振荡频率之后从外部进行监测。进行了几次测量以表征系统,并根据理论模型将结果与预期值进行比较。进行了不同的测量,目的是评估系统在整个工作带宽内的频率检测精度以及读取器和传感器之间的距离变化。在阅读器和传感器天线之间使用了空气和具有与人体相似的电气特性的体模,以评估传输介质的影响。结果表明,在两种情况下,即使在使用传感器组的情况下,系统也能够检测振荡频率。

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