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降低低频电磁场计算剂量学中的阶梯误差。

Reducing the staircasing error in computational dosimetry of low-frequency electromagnetic fields.

机构信息

Department of Computer Science and Engineering, Nagoya Institute of Technology, Nagoya, Japan.

出版信息

Phys Med Biol. 2012 Feb 21;57(4):N25-34. doi: 10.1088/0031-9155/57/4/N25. Epub 2012 Jan 31.

Abstract

From extremely low frequencies to intermediate frequencies, the magnitude of induced electric field inside the human body is used as the metric for human protection. The induced electric field inside the body can be computed using anatomically realistic voxel models and numerical methods such as the finite-difference or finite-element methods. The computed electric field is affected by numerical errors that occur when curved boundaries with large contrasts in electrical conductivity are approximated using a staircase grid. In order to lessen the effect of the staircase approximation error, the use of the 99th percentile electric field, i.e. ignoring the highest 1% of electric field values, is recommended in the ICNIRP guidelines. However, the 99th percentile approach is not applicable to localized exposure scenarios where the majority of significant induced electric field values may be concentrated in a small volume. In this note, a method for removing the staircasing error is proposed. Unlike the 99th percentile, the proposed method is also applicable to localized exposure scenarios. The performance of the method is first verified by comparison with the analytical solution in a layered sphere. The method is then applied for six different exposure scenarios in two anatomically realistic human head models. The results show that the proposed method can provide conservative estimates for the 99th percentile electric field in both localized and uniform exposure scenarios.

摘要

从极低频到中频,人体内部感应电场的幅度被用作人体保护的度量标准。可以使用解剖学逼真的体素模型和数值方法(如有限差分或有限元方法)来计算体内的感应电场。计算出的电场会受到数值误差的影响,这些误差是在使用阶梯网格近似具有大电导率对比度的曲面边界时产生的。为了减轻阶梯逼近误差的影响,ICNIRP 指南建议使用 99 百分位电场,即忽略最高 1%的电场值。然而,99 百分位方法不适用于局部暴露情况,在这些情况下,大部分显著的感应电场值可能集中在一个小体积内。在本说明中,提出了一种消除阶梯误差的方法。与 99 百分位方法不同,所提出的方法也适用于局部暴露情况。该方法的性能首先通过与分层球中的解析解进行比较来验证。然后,该方法应用于两个解剖学逼真的人头模型中的六个不同的暴露场景。结果表明,该方法可在局部和均匀暴露场景下为 99 百分位电场提供保守估计。

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