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皮下植入式谐振耦合器

A Resonant Coupler for Subcutaneous Implant.

机构信息

Electrical and Computer Engineering, Southern Methodist University, Dallas, TX 75205, USA.

出版信息

Sensors (Basel). 2021 Dec 6;21(23):8141. doi: 10.3390/s21238141.

Abstract

A resonator coupler for subcutaneous implants has been developed with a new impedance matching pattern added to the conventional loop antenna. The tuning element of a concentric metal pad contributes distributed capacitance and inductance to the planar inductive loop and improves resonance significantly. It provides a better qualify factor for resonant coupling and a much lower reflection coefficient for the implant electronics. Practical constraints are taken into account for designs including the requirement of operation within a regulated frequency band and the limited thickness for a monolithic implant. In this work, two designs targeting to operate in the two industrial, scientific, and medical (ISM) bands at 903 MHz and 2.45 GHz are considered. The tuning metal pad improves their resonances significantly, compared to the conventional loop designs. Since it is difficult to tune the implant antenna after implantation, the effects of tissue depth variations due to the individual's surgery and the appropriate implant depths are investigated. Simulations conducted with the dielectric properties of human skin documented in the literature are compared to measurements done with hydrated ground pork as phantoms. Experiments and simulations are conducted to explain the discrepancies in frequency shifts due to the uses of pork phantoms. The design method is thus validated for uses on human skin. A noninvasive localization method to identify the implant under the skin has been examined and demonstrated by both simulations and measurements. It can efficiently locate the subcutaneous implant based on the high quality-factor resonance owing to the tuning elements in both implant and transmitter couplers. The planar resonant coupler for wireless power transfer shows good performance and promise in subcutaneous applications for implants.

摘要

已经开发出一种用于皮下植入物的谐振器耦合器,该耦合器在传统环形天线中添加了新的阻抗匹配模式。同心金属垫的调谐元件为平面电感环贡献了分布式电容和电感,从而显著提高了谐振性能。它为谐振耦合提供了更好的品质因数,为植入式电子设备提供了更低的反射系数。设计中考虑了实际限制,包括在规定的频带内运行的要求和单片植入物的有限厚度。在这项工作中,考虑了两种设计,旨在分别在工业、科学和医疗(ISM)频段的 903 MHz 和 2.45 GHz 下运行。与传统的环形设计相比,调谐金属垫大大改善了它们的谐振。由于植入后很难调整植入式天线,因此研究了由于个体手术和适当的植入深度导致的组织深度变化对其的影响。使用文献中记录的人体皮肤介电特性进行的模拟与使用水合猪肉作为仿体进行的测量进行了比较。进行了实验和模拟以解释由于使用猪肉仿体导致的频率偏移差异。因此,该设计方法已针对人体皮肤的使用进行了验证。已经研究并通过模拟和测量证明了一种用于在皮肤下识别植入物的非侵入性定位方法。由于植入式和发射器耦合器中的调谐元件,它可以基于高品质因数谐振有效地定位皮下植入物。用于无线功率传输的平面谐振耦合器在皮下植入物应用中具有良好的性能和应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5a1/8662426/31fc0960adb0/sensors-21-08141-g001.jpg

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