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首页> 外文期刊>Bioelectromagnetics: Journal of the Bioelectromagnetics Society >Methodology of detailed dosimetry and treatment of uncertainty and variations for in vivo studies.
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Methodology of detailed dosimetry and treatment of uncertainty and variations for in vivo studies.

机译:体内研究的详细剂量测定方法以及不确定性和变异的处理。

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Detailed and accurate dosimetric information is a basic precondition for acquiring adequate interpretations and valuations of in vivo studies testing radiofrequency (RF) electromagnetic fields (EMF). Instantaneous locally induced fields depend on many parameters, for example, orientation of the animal with respect to the incident field, animal size and posture, and tissue distribution. These parameters are often constrained, resulting in significant uncertainties in the dosimetric assessment of the exposure, averaged over all animals and the entire experimental phase, as well as in significant variations of the local exposures during the experiment. A sufficient analysis should therefore include (1) average and peak spatial specific absorption rate (SAR) values for the whole body and specific organs, (2) the uncertainty of each assessed SAR value, and (3) the short term and long term SAR variations between the tissues of individual animals. A methodology to obtain this pertinent information is developed and proposed in this paper. Using this methodology the dosimetry of a rat exposure apparatus operating at the carrier frequency of 1747 MHz, previously developed for a 2-year bioassay study within the European Union project PERFORM, was obtained. We have demonstrated that comprehensive dosimetric data can be obtained with reasonable effort using the proposed method, providing that the exposure setup is soundly formulated.
机译:详细和准确的剂量学信息是对测试射频 (RF) 电磁场 (EMF) 的体内研究进行充分解释和评估的基本先决条件。瞬时局部诱导场取决于许多参数,例如,动物相对于入射场的方向、动物的大小和姿势以及组织分布。这些参数通常受到限制,导致暴露的剂量学评估存在很大的不确定性,所有动物和整个实验阶段的平均值,以及实验期间局部暴露的显着变化。因此,充分的分析应包括 (1) 全身和特定器官的平均和峰值空间比吸收率 (SAR) 值,(2) 每个评估的 SAR 值的不确定性,以及 (3) 个体动物组织之间的短期和长期 SAR 变化。本文开发并提出了一种获取这些相关信息的方法。使用这种方法,获得了在1747 MHz载波频率下工作的大鼠暴露装置的剂量学,该装置以前是为欧盟PERFORM项目内的2年生物测定研究而开发的。我们已经证明,使用所提出的方法可以通过合理的努力获得全面的剂量学数据,前提是暴露设置是合理的。

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