Department of Oncology, Guangdong Sanjiu Brain Hospital, Guangzhou, China.
Tongji Hospital, Huazhong University of Science and Technology, Wuhan, China.
Bioelectromagnetics. 2021 Jan;42(1):86-94. doi: 10.1002/bem.22303. Epub 2020 Dec 11.
Artificial materials that can simultaneously mimic the relative permittivity and conductivity of various human tissues are usually used in medical applications. However, the method of precisely designing these materials with designated values of both relative permittivity and conductivity at 3 T MRI resonance frequency is lacking. In this study, a reliable method is established to determine the compositions of artificial dielectric materials with designated relative permittivity and conductivity at 128 MHz. Sixty dielectric materials were produced using oil, sodium chloride, gelatin, and deionized water as the main raw materials. The dielectric properties of these dielectric materials were measured using the open-ended coaxial line method at 128 MHz. Nonlinear least-squares Marquardt-Levenberg algorithm was used to obtain the formula, establishing the relationship between the compositions of the dielectric materials and their dielectric properties at 128 MHz. The dielectric properties of the blood, gall bladder, muscle, skin, lung, and bone at 128 MHz were selected to verify the reliability of the obtained formula. For the obtained formula, the coefficient of determination and the expanded uncertainties with a coverage factor of k = 2 were 0.991% and 4.9% for relative permittivity and 0.992% and 6.4% for conductivity. For the obtained artificial materials measured using the open-ended coaxial line method, the maximal difference of relative permittivity and conductivity were 1.0 and 0.02 S/m, respectively, with respect to the designated values. In conclusion, the compositions of tissue-mimicking material can be quickly determined after the establishment of the formulas with the expanded uncertainties of less than 10%. Bioelectromagnetics. 2021;42:86-94. © 2020 Bioelectromagnetics Society.
可同时模拟各种人体组织介电常数和电导率的人工材料通常用于医学应用。然而,在 3T MRI 共振频率下,精确设计具有指定介电常数和电导率值的这些材料的方法还很缺乏。在本研究中,建立了一种可靠的方法来确定在 128MHz 下具有指定介电常数和电导率的人工介电材料的组成。使用油、氯化钠、明胶和去离子水作为主要原料制作了 60 种介电材料。使用开腔同轴法在 128MHz 下测量这些介电材料的介电性能。使用非线性最小二乘 Marquardt-Levenberg 算法获得公式,建立了介电材料的组成与其在 128MHz 下介电性能之间的关系。选择血液、胆囊、肌肉、皮肤、肺和骨在 128MHz 下的介电性能来验证所获得公式的可靠性。对于所获得的公式,决定系数和扩展不确定度(置信因子 k=2)分别为介电常数的 0.991%和 4.9%,电导率的 0.992%和 6.4%。对于使用开腔同轴线法测量的所获得的人工材料,介电常数和电导率的最大差异分别为 1.0 和 0.02 S/m,相对于指定值。总之,在建立扩展不确定度小于 10%的公式后,可以快速确定组织模拟材料的组成。生物电磁学。2021;42:86-94。©2020 生物电磁学学会。