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In‐silico and in‐vitro testing of an implantable superstrate loaded biocompatible antenna for MICS band applications
Microwave and Optical Technology Letters ( IF 1.5 ) Pub Date : 2020-10-12 , DOI: 10.1002/mop.32687
Gurprince Singh 1 , Jaswinder Kaur 1
Affiliation  

A superstrate loaded body implantable microstrip patch antenna working on Medical Implant Communications Service (MICS) (402‐405 MHz) band for biotelemetry applications is proposed. A 0.64‐mm thick high‐dielectric material Rogers RO Duroid 3010 is used both as substrate and superstrate of dielectric constant 10.2. Shorting pin is used to make compact antenna with footprint of 13.3 × 14.6 mm2. Appreciable bandwidth of 40% is covered by antenna with return loss of −30.95. In‐silico testing inside skin, brain and three layered tissue models is done to test functionality of antenna in homogeneous as well as inhomogeneous tissue environment. For validation of results the fabricated antenna is successfully tested inside in‐vitro solution of homogeneous skin mimicking liquid.

中文翻译:

适用于MICS频段应用的可植入覆板式生物相容性天线的硅化和体外测试

提出了一种适用于生物遥测应用的在医疗植入物通信服务(MICS)(402-405 MHz)频段上工作的超负荷的人体可植入微带贴片天线。使用0.64毫米厚的高介电材料Rogers RO Duroid 3010作为介电常数10.2的基底和上层。短路引脚用于制造占地13.3×14.6 mm 2的紧凑型天线。天线可覆盖40%的带宽,回波损耗为−30.95。在皮肤,大脑和三层组织模型内部进行硅内测试,以测试均匀和不均匀组织环境中天线的功能。为了验证结果,已在均匀皮肤模拟液体的体外溶液中成功测试了人造天线。
更新日期:2020-10-12
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