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与非电离辐射暴露相关的剂量学:极低频至微波

Dosimetry associated with exposure to non-ionizing radiation: very low frequency to microwaves.

作者信息

Guy A W

机构信息

Center for Bioengineering, University of Washington, Seattle 98195.

出版信息

Health Phys. 1987 Dec;53(6):569-84. doi: 10.1097/00004032-198712000-00001.

Abstract

The interpretation of the effects in biological systems exposed to electromagnetic (EM) fields requires knowledge of the internal fields and absorbed energy. The quantification of the specific absorption rate (SAR) is called dosimetry. The SAR given in units of watts per kilogram is a complex function of the source configuration, shape and size of the exposed subjects, orientation of the subject with respect to the source, and the frequency. The average and maximum SAR in the exposed subject may vary over many orders of magnitude for a given exposure level. In order to relate observed biological effects in exposed laboratory animals to safe exposure levels for man, both the fields within the environment and SAR within the exposed tissues must be determined. The environmental fields and the SAR can often be determined from EM theory, but in most cases one must rely on instrumentation such as field survey meters for quantifying the exposure fields and electric field probes, thermocouples, thermistors, fiber optic probes, thermography, and calorimetry for quantifying the SAR in the tissues or equivalent models. A combination of techniques, each valid for a particular model over a particular frequency range, have been used to determine average and peak SARs in humans and animals exposed to plane wave radiation. Though it has been considerably more difficult to quantify these quantities for near field and partial-body exposure conditions, progress is continually being made in this area.

摘要

要解读暴露于电磁场(EM)的生物系统中的效应,需要了解内部场和吸收能量。比吸收率(SAR)的量化称为剂量测定。以每千克瓦特为单位给出的SAR是源配置、暴露对象的形状和大小、对象相对于源的方向以及频率的复杂函数。对于给定的暴露水平,暴露对象中的平均SAR和最大SAR可能在多个数量级上变化。为了将在暴露的实验动物中观察到的生物效应与人类的安全暴露水平相关联,必须确定环境中的场和暴露组织中的SAR。环境场和SAR通常可以根据电磁理论确定,但在大多数情况下,必须依靠诸如用于量化暴露场的场强测量仪以及用于量化组织或等效模型中SAR的电场探头、热电偶、热敏电阻、光纤探头、热成像和量热法等仪器。已经使用了多种技术的组合,每种技术在特定频率范围内对特定模型有效,来确定暴露于平面波辐射的人类和动物中的平均SAR和峰值SAR。尽管对于近场和局部身体暴露条件下这些量的量化要困难得多,但该领域仍在不断取得进展。

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