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2-67GHz范围内代表性生物溶液的复介电常数

Complex permittivity of representative biological solutions in the 2-67 GHz range.

作者信息

Zhadobov Maxim, Augustine Robin, Sauleau Ronan, Alekseev Stanislav, Di Paola Alessandra, Le Quément Catherine, Mahamoud Yonis Soubere, Le Dréan Yves

机构信息

Institute of Electronics and Telecommunications of Rennes (IETR), University of Rennes 1, Rennes, France.

出版信息

Bioelectromagnetics. 2012 May;33(4):346-55. doi: 10.1002/bem.20713. Epub 2011 Oct 19.

Abstract

The main purpose of this study is to provide experimental data on the complex permittivity of some biological solutions in the 2-67 GHz range at room and human body temperatures. The permittivity measurements are performed using an open-ended coaxial probe. Permittivity spectra of several representative monomolecular solutions of proteins, amino acids, nucleic acids, and carbohydrates are analyzed and compared. Furthermore, measurements have also been performed for complex biomolecular solutions, including bovine serum albumin (BSA)-DNA-glucose mixture, culture medium, and yeast extract solution. The results demonstrate that for concentrations below 1%, the permittivity spectra of the solutions do not substantially differ from that of distilled water. Measurements carried out for 4% and 20% BSA solutions show that the presence of proteins results in a decrease in permittivity. For highly concentrated RNA solutions (3%), a slight increase in the imaginary part of the permittivity is observed below 10 GHz. Experimental data show that free water permittivity can be used for modeling of the culture medium above 10 GHz. However, at lower frequencies a substantial increase in the imaginary part of the permittivity due to ionic conductivity should be carefully taken into account. A similar increase has also been observed for the yeast extract solution in the lower frequency region of the considered spectrum. Above 10 GHz, the high concentration of proteins and other low-permittivity components of the yeast extract solution results in a decrease in the complex permittivity compared to that of water. Obtained data are of utmost importance for millimeter-wave dosimetry studies.

摘要

本研究的主要目的是提供一些生物溶液在室温和人体温度下2 - 67吉赫兹范围内复介电常数的实验数据。介电常数测量使用开放式同轴探头进行。对蛋白质、氨基酸、核酸和碳水化合物的几种代表性单分子溶液的介电常数谱进行了分析和比较。此外,还对复杂生物分子溶液进行了测量,包括牛血清白蛋白(BSA) - DNA - 葡萄糖混合物、培养基和酵母提取物溶液。结果表明,对于浓度低于1%的溶液,其介电常数谱与蒸馏水的介电常数谱没有显著差异。对4%和20%的BSA溶液进行的测量表明,蛋白质的存在会导致介电常数降低。对于高浓度的RNA溶液(3%),在低于10吉赫兹时观察到介电常数虚部略有增加。实验数据表明,高于10吉赫兹时,游离水介电常数可用于模拟培养基。然而,在较低频率下,由于离子电导率导致的介电常数虚部的大幅增加应予以仔细考虑。在所考虑频谱的低频区域,酵母提取物溶液也观察到类似的增加。高于10吉赫兹时,酵母提取物溶液中高浓度的蛋白质和其他低介电常数成分导致复介电常数相对于水有所降低。所获得的数据对于毫米波剂量学研究至关重要。

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