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首页> 外文期刊>Physics in medicine and biology. >Localized specific absorption rate calculations in a realistic phantom leg at 1-30 MHz using a finite element method.
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Localized specific absorption rate calculations in a realistic phantom leg at 1-30 MHz using a finite element method.

机译:使用有限元方法在1-30 MHz的真实幻象腿中进行局部比吸收率计算。

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摘要

Protection standards for radiofrequency electromagnetic radiation are principally intended to avoid detrimental thermal effects. To this end the International Commission on Non-Ionizing Radiation Protection (ICNIRP), and national bodies such as the National Radiological Protection Board (NRPB), recommend limitations on the localized specific energy absorption rate (SAR) in various parts of the body. The role of numerical dosimetry is to estimate the SAR from measurable parameters such as external field strengths and total body currents. In recent years there have been significant advances in the sophistication of the anatomical models available, and in our knowledge of the electrical properties of the body tissues. Several groups, including NRPB, have developed mathematical phantoms from medical imaging data, such as MRI scans. It has been known for some time that under certain circumstances SAR restrictions may be violated in the ankle due to the concentration of current in a small area. In this paper the author presents calculations of the SAR distribution in a human leg in the high-frequency (HF) band. This band contains the human whole-body resonance frequency and therefore gives the strongest coupling of the body to the field. The present study uses a finite element model with variable mesh size, derived from a 2 mm resolution voxel phantom of the whole body. It also uses recently acquired data on the electrical properties of the tissues. The results are discussed in the light of the exposure standards promulgated by national and international bodies such as NRPB and ICNIRP, and it is shown that the basic SAR restrictions in the leg are ensured by a current reference level of 100 mA.
机译:射频电磁辐射的保护标准主要旨在避免有害的热效应。为此,国际非电离辐射防护委员会(ICNIRP)和国家放射防护委员会(NRPB)等国家机构建议限制人体各个部位的局部比吸收率(SAR)。数值剂量学的作用是根据可测量参数(例如外部场强和人体总电流)估算SAR。近年来,在可用的解剖模型的复杂性以及我们对身体组织的电学特性的了解方面,已有了重大进展。包括NRPB在内的数个小组已经从医学成像数据(例如MRI扫描)中开发了数学模型。一段时间以来,人们已经知道,由于电流集中在一个很小的区域,在某些情况下可能会违反SAR限制。在本文中,作者介绍了在高频(HF)频带中人的腿部SAR分布的计算。该频段包含人体的全身共振频率,因此可以使人体与场强耦合。本研究使用具有可变网格大小的有限元模型,该模型是从2毫米分辨率的整个体素体模导出的。它还使用了最近获取的有关组织电特性的数据。根据国家和国际机构(例如NRPB和ICNIRP)颁布的暴露标准对结果进行了讨论,结果表明,腿部的基本SAR限制是通过100 mA的电流参考水平来确保的。

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