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用于视网膜假体系统的电小尺寸眼内天线设计及其验证

Design of Electrically Small Intraocular Antenna for Retinal Prosthesis System and Its Validation.

作者信息

Modak Sumon, Kaim Vikrant, Zaidi Aijaz M, Kanaujia Binod Kumar, Rambabu Karumudi

出版信息

IEEE Trans Biomed Eng. 2024 Dec;71(12):3402-3412. doi: 10.1109/TBME.2024.3424199. Epub 2024 Nov 21.

Abstract

OBJECTIVE

This paper presents an ultra-miniaturized circular-shaped triple band microstrip antenna as an intraocular unit applicable for retinal prosthesis.

METHODS

The reported antenna is developed by modifying a conventional circular-shaped patch with a pair of open-ended circular annular rings and a semicircular ring-loaded rectangular stub. Additionally, a shorting pin is used at the periphery of the patch to achieve the frequency bands of interest. Further, to make the structure electrically small and accommodate highly dense electrodes, the circular ground plane is modified by making symmetrical slots over the four quadrants and edges. Specific absorption rate distribution for 1 g and 10 g of different tissue layers over three operating frequencies has been studied by placing electromagnetic sources at different locations.

RESULTS

With these arrangements, the proposed strip antenna offers multiband operation within the frequency band of 1.25 GHz (1.13-1.46 GHz), 2.45 GHz (2.24-2.66 GHz), and 3.32 GHz (3.09-3.50 GHz). Besides, circularly polarized radiation has also been achieved at 1.25 GHz with a 3-dB axial ratio bandwidth of 10 MHz.

CONCLUSION

Finally, the proposed antenna structure is fabricated, and its measured performance metrics are in close aggreement with the simulated parameters.

SIGNIFICANCE

The proposed antenna's performance inside a customized canonical eye model (DMCM) and anthropomorphic Zubal head model is studied and compared with the prior studies.

摘要

目的

本文提出一种超小型圆形三频段微带天线,作为适用于视网膜假体的眼内单元。

方法

所报道的天线是通过用一对开口圆形环形环和一个半圆形环加载矩形短截线对传统圆形贴片进行修改而开发的。此外,在贴片周边使用一个短路针来实现感兴趣的频段。进一步地,为了使结构在电气上更小并容纳高密度电极,通过在四个象限和边缘制作对称槽来修改圆形接地平面。通过将电磁源放置在不同位置,研究了在三个工作频率下1 g和10 g不同组织层的比吸收率分布。

结果

通过这些布置,所提出的带状天线在1.25 GHz(1.13 - 1.46 GHz)、2.45 GHz(2.24 - 2.66 GHz)和3.32 GHz(3.09 - 3.50 GHz)频段内提供多频段操作。此外,在1.25 GHz处还实现了圆极化辐射,3 dB轴比带宽为10 MHz。

结论

最后,制作了所提出的天线结构,其测量性能指标与模拟参数非常吻合。

意义

研究了所提出的天线在定制的标准眼模型(DMCM)和拟人化祖巴尔头部模型内的性能,并与先前的研究进行了比较。

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