A Batch-Patterned Self-Expanding Biliary Stent with Conformal Magnetic PDMS Layer and Topologically-Matched Wireless Magnetoelastic Sensor

S. R. Green, Y. Gianchandani
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Abstract

This paper presents a system for wirelessly monitoring the accumulation of sludge within biliary stents. The system comprises a sensor and biasing permanent magnet layer that conform to the meshed topology and tubular curvature of a biliary stent. The sensors have an active area of 7.5 mm × 29 mm and a mass of 9.1 mg. Annealing the sensor at 375°C results in reducing the required biasing magnetic field from 6 Oe to 2 Oe. The integrated system shows a 38% decrease in resonant frequency (from 61.6 kHz to 38.2 kHz) after an applied mass load of 20.9 mg, or 2.3× the mass of the sensor. The system architecture allows the mechanical properties of the stent to be maintained while adding important monitoring capabilities to the implanted device.
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带有共形磁性PDMS层和拓扑匹配无线磁弹性传感器的成批自膨胀胆道支架
本文介绍了一种用于无线监测胆道支架内污泥积累的系统。该系统包括传感器和偏置永磁体层,其符合胆道支架的网状拓扑结构和管状曲率。传感器的有效面积为7.5 mm × 29 mm,质量为9.1 mg。在375°C下退火传感器可将所需的偏置磁场从6 Oe降低到2 Oe。在施加20.9 mg或2.3倍传感器质量的负载后,集成系统显示谐振频率降低38%(从61.6 kHz降至38.2 kHz)。该系统架构允许维持支架的机械性能,同时为植入设备增加重要的监测功能。
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