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在大鼠和人体模型中对60赫兹磁场诱发的电场和电流进行微型探头测量。

Miniature-probe measurements of electric fields and currents induced by a 60-Hz magnetic field in rat and human models.

作者信息

Miller D L

机构信息

Pacific Northwest Laboratory, Richland, Washington.

出版信息

Bioelectromagnetics. 1991;12(3):157-71. doi: 10.1002/bem.2250120304.

DOI:10.1002/bem.2250120304
PMID:1854353
Abstract

A miniaturized probe was designed and built to provide detailed data on fields induced by a uniform 60-Hz magnetic field in homogeneous models of rat and human. The probe employed three silver wires twisted and potted in an 8-cm hypodermic needle. The exposed tips of the wires formed three sensing electrodes with a centered ground; highly sensitive voltage measurements were enabled by a lock-in amplifier. Tests were conducted in a 1-mT rms field that was uniform within +/- 5%. The models were made by casting 1.5% agar at 1-S/m conductivity into plastic-foam molds. The rat model was scaled 1:1 as an adult (22 cm length; mass about 640 g). The human model was scaled 1:4 as an adult (height = 46.5 cm; mass 1.4 kg). The probe was inserted into each model in several regions, and readings of induced fields were made under different exposure geometries. Maximal strengths of fields induced near the surface of the torso were as high as 120 microV/cm in the laterally exposed rat model. Data extrapolated from the quarter-scale human model revealed that an induced field as high as 700 microV/cm could occur at the torso of a frontally exposed human adult. An overall size-scale factor of about 5 appears to be appropriate for experimental exposures of rats that are intended to simulate currents induced in human beings by magnetic fields. The average strength of electric fields induced in the torso by a 1-mT magnetic field is comparable to that by a vertical electric-field at 60 kV/m and 28 kV/m, respectively, for the rat and human.

摘要

设计并制造了一种小型化探头,用于在大鼠和人体的均匀模型中提供由60Hz均匀磁场感应产生的场的详细数据。该探头采用三根绞合在一起并封装在一根8厘米皮下注射针中的银线。导线的裸露尖端形成了三个带有中心接地的传感电极;通过锁相放大器进行高灵敏度电压测量。测试在均方根值为1mT且均匀度在±5%以内的磁场中进行。模型是通过将电导率为1S/m的1.5%琼脂浇铸到塑料泡沫模具中制成的。大鼠模型按成年大鼠1:1比例缩放(体长22厘米;质量约640克)。人体模型按成年人体1:4比例缩放(身高 = 46.5厘米;质量1.4千克)。将探头插入每个模型的几个区域,并在不同暴露几何条件下读取感应场的数据。在横向暴露的大鼠模型中,躯干表面附近感应场的最大强度高达120μV/cm。从四分之一比例人体模型外推的数据显示,在正面暴露的成年人体躯干处可能出现高达700μV/cm的感应场。对于旨在模拟磁场在人体中感应电流的大鼠实验暴露,约5的整体尺寸比例因子似乎是合适的。对于大鼠和人体,1mT磁场在躯干中感应的电场平均强度分别与60kV/m和28kV/m的垂直电场相当。

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