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Immune-to-Detuning Wireless In-Body Platform for Versatile Biotelemetry Applications

机译:多功能生物再集合应用的免疫对无线无线体内平台

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摘要

Background and Objective: In-body biotelemetry devices enable wireless monitoring of a wide range of physiological parameters. These devices rely on antennas to interface with external receivers, yet existing systems suffer from impedance detuning caused by the substantial differences in electromagnetic properties among various tissues. In this paper, we propose an immune-to-detuning in-body biotelemetry platform featuring a novel tissue-independent antenna design. Methods: Our approach uses a novel slot-patch conformal antenna integrated into a flexible polyimide printed circuit board containing the device circuitry and encapsulated within a 17.7 mm x empty set 8.9 mm biocompatible shell. The antenna is synthesized and optimized using a hybrid analytical-numerical approach and, then, characterized numerically and experimentally in terms of impedance stability. Results: The proposed platform shows stable impedance, whereas operating in any mammalian tissue as well as in air. The system is optimized for the 434-MHz industrial, scientific, and medical band and can easily be returned for any MedRadio band in the 401-457-MHz spectrum. Conclusion: Ultrarobust impedance characteristics were achieved. Without any modifications, the proposed biotelemetry platform can be used, for instance, as an ingestible for humans or as an implantable for a wide range of animals: from rodents to cattle.
机译:背景和目的:体内生物再次仪器设备能够无线监控广泛的生理参数。这些装置依赖于天线来与外部接收器接口,然而现有系统遭受由于各种组织之间的电磁特性的显着差异引起的阻抗静脉。在本文中,我们提出了一种免疫 - 失谐的内体生物再仪器平台,具有一种独立于组织独立的天线设计。方法:我们的方法使用集成到包含器件电路的柔性聚酰亚胺印刷电路板中的新型插槽补丁保形天线,并在17.7mm×空集8.9mm生物相容性壳内封装。通过混合分析 - 数值方法合成和优化天线,然后在阻抗稳定性方面以数字和实验在一起而优化。结果:该平台显示出稳定的阻抗,而在任何哺乳动物组织以及空气中操作。该系统针对434-MHz工业,科学和医疗乐队进行了优化,可以轻松返回401-457-MHz频谱中的任何Medradio带。结论:实现了超渗透阻抗特性。如果没有任何修改,则可以使用所提出的生物信息仪表平台,例如,作为人类的可摄取或作为各种动物的植入:从啮齿动物到牛。

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