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首页> 外文期刊>Physics in medicine and biology. >Effect of the averaging volume and algorithm on the in situ electric field for uniform electric- and magnetic-field exposures.
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Effect of the averaging volume and algorithm on the in situ electric field for uniform electric- and magnetic-field exposures.

机译:平均体积和算法对均匀电场和磁场暴露对原位电场的影响。

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摘要

The present study quantified the volume-averaged in situ electric field in nerve tissues of anatomically based numeric Japanese male and female models for exposure to extremely low-frequency electric and magnetic fields. A quasi-static finite-difference time-domain method was applied to analyze this problem. The motivation of our investigation is that the dependence of the electric field induced in nerve tissue on the averaging volume/distance is not clear, while a cubical volume of 5 x 5 x 5 mm(3) or a straight-line segment of 5 mm is suggested in some documents. The influence of non-nerve tissue surrounding nerve tissue is also discussed by considering three algorithms for calculating the averaged in situ electric field in nerve tissue. The computational results obtained herein reveal that the volume-averaged electric field in the nerve tissue decreases with the averaging volume. In addition, the 99th percentile value of the volume-averaged in situ electric field in nerve tissue is more stable than that of the maximal value for different averaging volume. When including non-nerve tissue surrounding nerve tissue in the averaging volume, the resultant in situ electric fields were not so dependent on the averaging volume as compared to the case excluding non-nerve tissue. In situ electric fields averaged over a distance of 5 mm were comparable or larger than that for a 5 x 5 x 5 mm(3) cube depending on the algorithm, nerve tissue considered and exposure scenarios.
机译:本研究量化了解剖学数字日本男性和女性模型在神经组织中的体积平均原位电场的暴露于极低频电场和磁场。采用准静态时域有限差分法分析了该问题。我们研究的动机是不清楚神经组织中感应的电场对平均体积/距离的依赖性,而立方体积为5 x 5 x 5 mm(3)或5 mm的直线段在某些文档中建议使用。还考虑了三种计算神经组织中平均原位电场的算法,讨论了围绕神经组织的非神经组织的影响。本文获得的计算结果表明,神经组织中的体积平均电场随平均体积而减小。此外,在不同的平均体积下,神经组织中体积平均原位电场的第99个百分位数值比最大值的数值更稳定。当在平均体积中包括围绕神经组织的非神经组织时,与排除非神经组织的情况相比,所得到的原位电场并不那么依赖于平均体积。根据算法,所考虑的神经组织和暴露情况,在5 mm距离上平均的原位电场与5 x 5 x 5 mm(3)立方体的电场相当或更大。

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