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Sensor technology to track forces, placement and positioning of Arabin Pessary

机译:传感器技术可追踪阿拉伯小便的力量,放置和定位

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Objective: This paper introduces a simple wireless method to monitor the orientation and forces exerted by the cervix on the Arabin Pessary without introducing any active circuitry or using complicated imaging methods such as Magnetic Resonance Imaging (MRI) scans. The key technology behind the sensor is based on the measurement of the mutual coupling between two coils as the angle of the coil and the capacitance of the resonant circuit is varied. The change is measured using an external sensor circuit composed of a modified Grid Dip Oscillator (GDO). Methods: The authors have tested the device with a test rig to simulate the tissue barrier and the environment in which the Arabin Pessary is situated. Results: A frequency of approximately 560 kHz was used. The change in voltage with orientation follows a sinusoidal trend with the maximum voltage at 0o being 6.23V and the minimum voltage at 90o being 5.39V. The capacitance force sensor has a baseline capacitance of 32.5pF and yielded approximately 1pF change in capacitance for every 1N of force. This would result in a 0.765kHz/N sensitivity for a system with 560kHz baseline frequency. Conclusion: The designed sensor is capable of detecting, with good accuracy, both the forces exerted and the orientation of the Arabin. Significance: Correct placement of implanted devices can be critical to their function. Possessing the ability to monitor the properties of an implanted device in a noninvasive manner continuously would improve early detection of incorrect or failed placement minimizing negative health impacts and costs associated with complications.
机译:目的:本文介绍了一种简单的无线方法,可监视子宫颈在阿拉伯小动物阴道上的方向和作用力,而无需引入任何有源电路或使用诸如磁共振成像(MRI)扫描之类的复杂成像方法。传感器背后的关键技术是基于两个线圈之间互耦的测量,因为线圈的角度和谐振电路的电容会发生变化。使用外部传感器电路测量变化,该外部传感器电路由改进的Grid Dip振荡器(GDO)组成。方法:作者已经使用测试台对设备进行了测试,以模拟组织屏障和阿拉伯奶精所处的环境。结果:使用了大约560 kHz的频率。电压随方向的变化遵循正弦趋势,在0 o 处的最大电压为6.23V,在90 o 处的最小电压为5.39V。电容力传感器的基准电容为32.5pF,每1N的力产生约1pF的电容变化。对于基线频率为560kHz的系统,这将导致0.765kHz / N的灵敏度。结论:设计的传感器能​​够准确地检测施加的力和阿拉伯蛋白的方向。意义:正确放置植入设备对其功能至关重要。具备以非侵入性方式连续监视植入设备的属性的能力将改善对不正确或失败放置的早期检测,从而最大程度地减少负面的健康影响和与并发症相关的成本。

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