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基于 13.56MHzRFID 的眼压测量系统致人体头部比吸收率的数值分析。

Numerical analysis of specific absorption rate in the human head due to a 13.56 MHz RFID-based intra-ocular pressure measurement system.

机构信息

Seibersdorf Laboratories, EMC and Optics, A-2444 Seibersdorf, Austria.

出版信息

Phys Med Biol. 2013 Sep 21;58(18):N267-77. doi: 10.1088/0031-9155/58/18/N267. Epub 2013 Sep 3.

Abstract

A modern wireless intra-ocular pressure monitoring system, based on 13.56 MHz inductively coupled data transmission, was dosimetrically analyzed with respect to the specific absorption rate (SAR) induced inside the head and the eye due to the electromagnetic field exposure caused by the reader antenna of the transmission system. The analysis was based on numerical finite difference time domain computations using a high resolution anatomical eye model integrated in a modern commercially available anatomical model of a male head. Three different reader antenna configurations, a 7-turn elliptic (30 mm × 50 mm) antenna at 12 mm distance from the eye, a flexible circular antenna (60 mm diameter, 8 turns on 2 mm substrate) directly attached to the skin, and a circular 7-turn antenna (30 mm diameter at 12 mm distance to the eye) were analyzed, respectively. Possible influences of the eye-lid status (closed or opened) and the transponder antenna contained in a contact lens directly attached to the eye were taken into account. The results clearly demonstrated that for typical reader antenna currents required for proper data transmission, the SAR values remain far below the limits for localized exposure of the head, as defined by the International Commission for Non-Ionizing Radiation Protection. Particularly the induced SAR inside the eye was found to be substantially (orders of magnitudes for typical reader antenna currents in the order of 1 A turn) below values which have been reported to be critical with respect to thermally induced adverse health effects in eye tissues.

摘要

一种基于 13.56MHz 感应耦合数据传输的现代无线眼压监测系统,针对传输系统阅读器天线引起的电磁场暴露在头部和眼睛内产生的特定吸收率(SAR)进行了剂量学分析。该分析基于数值有限差分时域计算,使用集成在现代商用男性头部解剖模型中的高分辨率解剖眼球模型。分别分析了三种不同的阅读器天线配置:距眼睛 12mm 的 7 匝椭圆形(30mm×50mm)天线、直接贴附在皮肤上的柔性圆形天线(60mm 直径,8 匝在 2mm 基底上)和距眼睛 12mm 的 7 匝圆形天线(30mm 直径)。考虑了眼睑状态(闭合或打开)和直接贴附在眼睛上的隐形眼镜中的应答器天线的可能影响。结果清楚地表明,对于适当数据传输所需的典型阅读器天线电流,SAR 值仍远低于国际非电离辐射防护委员会定义的头部局部暴露限值。特别是在眼睛内感应的 SAR 值明显低于(对于典型的阅读器天线电流,数量级为 1A 匝)据报道,在眼睛组织中由于热引起的不良健康影响方面具有临界值的 SAR 值。

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