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人类大脑暴露于低频磁场的分析:空间平均电场及暴露限值的数值评估。

Analysis of human brain exposure to low-frequency magnetic fields: a numerical assessment of spatially averaged electric fields and exposure limits.

作者信息

Chen Xi-Lin, Benkler Stefan, Chavannes Nicholas, De Santis Valerio, Bakker Jurriaan, van Rhoon Gerard, Mosig Juan, Kuster Niels

机构信息

Foundation for Research on Information Technologies in Society-IT'IS, Zurich, Switzerland.

出版信息

Bioelectromagnetics. 2013 Jul;34(5):375-84. doi: 10.1002/bem.21780. Epub 2013 Feb 12.

Abstract

Compliance with the established exposure limits for the electric field (E-field) induced in the human brain due to low-frequency magnetic field (B-field) induction is demonstrated by numerical dosimetry. The objective of this study is to investigate the dependency of dosimetric compliance assessments on the applied methodology and segmentations. The dependency of the discretization uncertainty (i.e., staircasing and field singularity) on the spatially averaged peak E-field values is first determined using canonical and anatomical models. Because spatial averaging with a grid size of 0.5 mm or smaller sufficiently reduces the impact of artifacts regardless of tissue size, it is a superior approach to other proposed methods such as the 99th percentile or smearing of conductivity contrast. Through a canonical model, it is demonstrated that under the same uniform B-field exposure condition, the peak spatially averaged E-fields in a heterogeneous model can be significantly underestimated by a homogeneous model. The frequency scaling technique is found to introduce substantial error if the relative change in tissue conductivity is significant in the investigated frequency range. Lastly, the peak induced E-fields in the brain tissues of five high-resolution anatomically realistic models exposed to a uniform B-field at ICNIRP and IEEE reference levels in the frequency range of 10 Hz to 100 kHz show that the reference levels are not always compliant with the basic restrictions. Based on the results of this study, a revision is recommended for the guidelines/standards to achieve technically sound exposure limits that can be applied without ambiguity.

摘要

数值剂量学证明了因低频磁场(B场)感应在人脑中产生的电场(E场)符合既定的暴露限值。本研究的目的是调查剂量学合规性评估对所应用方法和分割的依赖性。首先使用典型模型和解剖模型确定离散化不确定性(即阶梯效应和场奇点)对空间平均峰值E场值的依赖性。由于无论组织大小如何,网格尺寸为0.5毫米或更小的空间平均都能充分降低伪影的影响,因此它是一种优于其他提议方法(如第99百分位数或电导率对比度涂抹)的方法。通过一个典型模型表明,在相同的均匀B场暴露条件下,均匀模型可能会显著低估非均匀模型中的峰值空间平均E场。如果在所研究的频率范围内组织电导率的相对变化显著,发现频率缩放技术会引入大量误差。最后,在10赫兹至100千赫频率范围内,五个高分辨率解剖逼真模型的脑组织在ICNIRP和IEEE参考水平下暴露于均匀B场时的峰值感应E场表明,参考水平并不总是符合基本限制。基于本研究结果,建议对指南/标准进行修订,以实现技术上合理且可明确应用的暴露限值。

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