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射频电磁辐射暴露:实验剂量学教程综述

Radio frequency electromagnetic exposure: tutorial review on experimental dosimetry.

作者信息

Chou C K, Bassen H, Osepchuk J, Balzano Q, Petersen R, Meltz M, Cleveland R, Lin J C, Heynick L

机构信息

Department of Radiation Research, City of Hope National Medical Center, Duarte, CA 91010-3000, USA.

出版信息

Bioelectromagnetics. 1996;17(3):195-208. doi: 10.1002/(SICI)1521-186X(1996)17:3<195::AID-BEM5>3.0.CO;2-Z.

Abstract

Radio frequency (RF) dosimetry is the quantification of the magnitude and distribution of absorbed electromagnetic energy within biological objects that are exposed to RF fields. At RF, the dosimetric quantity, which is called the specific absorption rate (SAR), is defined as the rate at which energy is absorbed per unit mass. The SAR is determined not only by the incident electromagnetic waves but also by the electrical and geometric characteristics of the irradiated subject and nearby objects. It is related to the internal electric field strength (E) as well as to the electric conductivity and the density of tissues; therefore, it is a suitable dosimetric parameter, even when a mechanism is determined to be "athermal." SAR distributions are usually determined from measurements in human models, in animal tissues, or from calculations. This tutorial describes experimental techniques that are used commonly to determine SAR distributions along with the SAR limitations and unresolved problems. The methods discussed to obtain point, planar, or whole-body averaged SARs include the use of small E-field probes or measurement of initial rate of temperature rise in an irradiated object.

摘要

射频(RF)剂量学是对暴露于射频场的生物物体内吸收的电磁能量的大小和分布进行量化。在射频情况下,被称为比吸收率(SAR)的剂量学量被定义为单位质量吸收能量的速率。比吸收率不仅由入射电磁波决定,还由被照射对象及附近物体的电学和几何特性决定。它与内部电场强度(E)以及组织的电导率和密度有关;因此,即使确定一种机制为“非热效应”,它也是一个合适的剂量学参数。比吸收率分布通常通过在人体模型、动物组织中的测量或计算来确定。本教程介绍了常用于确定比吸收率分布的实验技术以及比吸收率的局限性和未解决的问题。讨论的获取点、平面或全身平均比吸收率的方法包括使用小型电场探头或测量被照射物体的初始升温速率。

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