Predictive model of biological equivalent radiofrequency electromagnetic field exposure assessment

N. Rubtsova, S. Perov, O. Belaya
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Abstract

Introduction. The issues of radiofrequency electromagnetic field in near field human body exposure correct assessment and control methods improvement actualization determined the need to develop a predictive model that provides different exposure conditions in terms of their biological equivalence comparison.Materials and methods. The problem of laboratory rats and humans equivalent EMF exposure assessment in near and far fields was considered. It is proposed to use a set of criteria that include both the power absorption in the irradiated objects values and the exposure time, allowing to take into account the peculiarities of human body and animals species sensitivity to this factor to solve this problem.Results. Relations for RF EMF equivalent levels values calculation for concrete biological object in near and far fields are presented. There are presented the ratio to calculate EMF levels in terms of power density and energy exposure to case of human body exposure that is equivalent to experimental conditions of rats exposure.Discussion. The developed model can be used to compare the experimental conditions of exposure in the near field with PD values for far field (formed electromagnetic wave), which is most important for >300 MHz frequencies, as well as for the interpretation of EMF biological effects obtained in animal experiments to human exposure conditions assess. This provides a biologically based approach to control RF EMF intensity at any distance from the source and the comparison of the field strength levels with the PD values in the zone of the formed electromagnetic wave.Conclusion. The proposed model takes into account the physical patterns of energy absorption in different objects and differences of organisms species sensitivity to factor exposure; provides the ability to predict critical levels of irradiation for different human body organs and systems, taking into account the time of the factor exposure too.
生物等效射频电磁场暴露评估预测模型
介绍。射频电磁场近场人体暴露的正确评估和控制方法的改进,决定了需要建立一个预测模型,提供不同暴露条件下的生物等效性比较。材料和方法。研究了实验室大鼠与人近场和远场等效电磁场暴露评估问题。为了解决这一问题,建议采用一套包括被照射物体的功率吸收值和照射时间的标准,同时考虑到人体和动物物种对这一因素的敏感性的特殊性。给出了具体生物物体近场和远场射频电磁场等效能级计算的关系式。在人体暴露的情况下,计算电磁场水平的功率密度和能量暴露的比率相当于大鼠暴露的实验条件。所建立的模型可用于比较近场暴露的实验条件与远场(形成的电磁波)的PD值,这对于>300 MHz频率最为重要,也可用于解释动物实验中获得的EMF生物效应与人类暴露条件评估。这提供了一种基于生物学的方法来控制距离源任意距离的RF EMF强度,并将场强水平与形成电磁波区域内的PD值进行比较。该模型考虑了不同物体能量吸收的物理模式和生物物种对因子暴露敏感性的差异;提供预测不同人体器官和系统的辐照临界水平的能力,同时也考虑到因素暴露的时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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