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一种用于 ISM 频段生物传感应用的紧凑型改进型双臂矩形螺旋植入式天线设计。

A Compact Modified Two-Arm Rectangular Spiral Implantable Antenna Design for ISM Band Biosensing Applications.

机构信息

Information Systems Engineering Department, Kocaeli University, Kocaeli 41001, Turkey.

Turkish Airlines Technic Inc., Turkish Airlines, Istanbul 34912, Turkey.

出版信息

Sensors (Basel). 2023 May 18;23(10):4883. doi: 10.3390/s23104883.

Abstract

This paper presents a new microstrip implantable antenna (MIA) design based on the two-arm rectangular spiral (TARS) element for ISM band (Industrial, Scientific, and Medical 2.4-2.48 GHz) biotelemetric sensing applications. In the antenna design, the radiating element consists of a two-arm rectangular spiral placed on a ground-supported dielectric layer with a permittivity of ϵr = 10.2 and a metallic line surrounding this spiral. Considering the practical implementation, in the proposed TARS-MIA, a superstrate of the same material is used to prevent contact between the tissue and the metallic radiator element. The TARS-MIA has a compact size of 10 × 10 × 2.56 mm and is excited by a 50 Ω coaxial feed line. The impedance bandwidth of the TARS-MIA is from 2.39 to 2.51 GHz considering a 50 Ω system, and has a directional radiation pattern with directivity of 3.18 dBi. Numerical analysis of the proposed microstrip antenna design is carried out in an environment with dielectric properties of rat skin (Cole-Cole model ϵf (ω), ρ = 1050 kg/m) via CST Microwave Studio. The proposed TARS-MIA is fabricated using Rogers 3210 laminate with dielectric permittivity of ϵr = 10.2. The in vitro input reflection coefficient measurements are realized in a rat skin-mimicking liquid reported in the literature. It is observed that the in vitro measurement and simulation results are compatible, except for some inconsistencies due to manufacturing and material tolerances. The novelty of this paper is that the proposed antenna has a unique two-armed square spiral geometry along with a compact size. Moreover, an important contribution of the paper is the consideration of the radiation performance of the proposed antenna design in a realistic homogeneous 3D rat model. Ultimately, the proposed TARS-MIA may be a good alternative for ISM-band biosensing operations with its miniature size and acceptable radiation performance compared to its counterparts.

摘要

本文提出了一种基于双臂矩形螺旋(TARS)单元的新型微带植入式天线(MIA)设计,用于 ISM 频段(工业、科学和医疗 2.4-2.48GHz)生物遥测传感应用。在天线设计中,辐射元件由放置在介电层上的两个臂矩形螺旋组成,介电层的介电常数为 ϵr = 10.2,并且有一个金属线环绕着这个螺旋。考虑到实际实现,在提出的 TARS-MIA 中,使用相同材料的超材料来防止组织与金属辐射元件接触。TARS-MIA 的尺寸紧凑,大小为 10×10×2.56mm,由 50Ω同轴馈线激励。考虑到 50Ω 系统,TARS-MIA 的阻抗带宽为 2.39-2.51GHz,具有方向性辐射模式,方向性为 3.18dBi。通过 CST 微波工作室在具有大鼠皮肤介电特性(Cole-Cole 模型 ϵf(ω),ρ=1050kg/m)的环境中对提出的微带天线设计进行了数值分析。所提出的 TARS-MIA 是使用介电常数为 ϵr = 10.2 的 Rogers 3210 层压板制造的。在文献中报道的大鼠皮肤模拟液中进行了体外输入反射系数测量。观察到体外测量和模拟结果是兼容的,除了由于制造和材料公差而导致的一些不一致。本文的新颖之处在于,所提出的天线具有独特的双臂方形螺旋几何形状和紧凑的尺寸。此外,本文的一个重要贡献是考虑了在现实的均匀 3D 大鼠模型中提出的天线设计的辐射性能。最终,与同类产品相比,所提出的 TARS-MIA 由于其小巧的尺寸和可接受的辐射性能,可能是 ISM 频段生物传感操作的一个很好的选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8407/10221016/7ee46c903f8d/sensors-23-04883-g001.jpg

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