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一种使用共形吸收超表面的植入式天线新型比吸收率降低技术。

A novel SAR reduction technique for implantable antenna using conformal absorber metasurface.

作者信息

Das Soumyadeep, Mitra Debasis, Chezhian Arvind S, Mandal Bappaditya, Augustine Robin

机构信息

Department of Electronics and Telecommunication, Indian Institute of Engineering Science and Technology, Howrah, India.

Ångström Laboratory, Division of Solid-State Electronics, Department of Electrical Engineering, Uppsala University, Uppsala, Sweden.

出版信息

Front Med Technol. 2022 Aug 23;4:924433. doi: 10.3389/fmedt.2022.924433. eCollection 2022.

Abstract

In this paper, a conformal absorber metasurface has been designed and used for reducing the specific absorption rate (SAR) of an implantable antenna. SAR reduction of implantable antennas is one of the significant design aspects to be considered for their use in modern-day healthcare applications. The introduction of the absorber metasurface restricts the back radiation of the antenna to control the SAR value. This technique decreases the maximum SAR value by 24% and also reduces the average SAR distribution significantly without affecting the desired antenna gain. A reduction in SAR value indicates the decrease in radiation absorption by human tissue, and thus, decreases the possibility of health hazards due to EM radiation. Later, this antenna-absorber system is designed as a capsule module for increased mobility and less-invasiveness. The redundancy of invasive surgery increases acceptance of the capsule module designs of implantable antennas and devices for various biomedical usages. testing of the fabricated prototype has been carried out inside a multi-layer porcine slab to verify the effectiveness of this unique SAR reduction technique.

摘要

在本文中,设计了一种共形吸收器超表面,并将其用于降低植入式天线的比吸收率(SAR)。降低植入式天线的SAR是其在现代医疗保健应用中使用时需要考虑的重要设计方面之一。吸收器超表面的引入限制了天线的后向辐射,以控制SAR值。该技术使最大SAR值降低了24%,并在不影响所需天线增益的情况下显著降低了平均SAR分布。SAR值的降低表明人体组织对辐射的吸收减少,从而降低了因电磁辐射而导致健康危害的可能性。后来,这种天线-吸收器系统被设计成胶囊模块,以提高移动性并减少侵入性。侵入性手术的冗余增加了植入式天线和设备的胶囊模块设计在各种生物医学用途中的接受度。已在多层猪组织块内对制造的原型进行了测试,以验证这种独特的SAR降低技术的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c57/9445880/15527aa121dd/fmedt-04-924433-g0001.jpg

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