A Noninvasive Vein Finder Based on a Tuned Microwave Loop Resonator

IF 6.9 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Sen Bing;Khengdauliu Chawang;J.-C. Chiao
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Abstract

In this work, a noninvasive vein finder based on a tuned microwave loop resonator has been demonstrated to locate the vein in a cost-effective, reliable, and convenient way, addressing the challenges in venipuncture, especially in cases of difficult venous access. The sensor is a tuned loop resonator with a radius of 4.7 mm, incorporating a self-tuning pad and operating at 3.25 GHz with a reflection coefficient of $-$ 58 dB. It provides localized high-intensity electric fields that penetrate into tissues with sufficient depths. The sensor is based on the detection of electromagnetic resonant frequency shift that is susceptible to the distinctive dielectric properties of blood vessels inside the skin. The extensive simulations and experimental measurements on male and female subjects validate its effectiveness with consistent and distinguishable resonant frequency shifts. The sensor's stability across different forearm locations, its ability to differentiate between arteries and veins, and its adherence to safety regulations with low-power microwave signals contribute to its robustness. It shows great promise for improving venipuncture procedures, reducing complications, and enhancing patient comfort in a low-cost and noninvasive way.
基于调谐微波环路谐振器的无创静脉探测仪
在这项工作中,我们展示了一种基于调谐微波环路谐振器的无创静脉探测仪,它能以经济、可靠、方便的方式定位静脉,解决静脉穿刺中的难题,尤其是在静脉穿刺困难的情况下。该传感器是一个半径为 4.7 毫米的调谐环路谐振器,包含一个自调谐垫,工作频率为 3.25 千兆赫,反射系数为 $-$58 dB。它能提供局部高强度电场,并能穿透足够深度的组织。该传感器基于对电磁共振频率偏移的检测,而电磁共振频率偏移易受皮肤内血管独特介电特性的影响。在男性和女性受试者身上进行的大量模拟和实验测量验证了其有效性,共振频率偏移一致且可区分。该传感器在前臂不同位置的稳定性、区分动脉和静脉的能力,以及使用低功率微波信号时遵守安全规定的能力,都是其坚固耐用的原因。它在改进静脉穿刺程序、减少并发症、以低成本和无创方式提高病人舒适度方面显示出巨大的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
10.70
自引率
0.00%
发文量
0
审稿时长
8 weeks
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