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Experimental Procedure for Determination of the Dielectric Properties of Biological Samples in the 2-50 GHz Range

机译:测定2-50 GHz范围内生物样品介电特性的实验程序

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摘要

The objective of this paper was to test and evaluate an experimental procedure for providing data on the complex permittivity of different cell lines in the 2–50-GHz range at room temperature, for the purpose of future dosimetric studies. The complex permittivity measurements were performed on cells suspended in culture medium using an open-ended coaxial probe. Maxwell’s mixture equation then allows the calculation of the permittivity profiles of the cells from the difference in permittivity between the cell suspensions and pure culture medium. The open-ended coaxial probe turned out to be very sensitive to disturbances affecting the measurements, resulting in poor precision. Permittivity differences were not large in relation to the spread of the measurements and repeated measurements were performed to improve statistics. The 95% confidence intervals were computed for the arithmetic means of the measured permittivity differences in order to test the statistical significance. The results showed that for bone cells at the lowest tested concentration (33 500/ml), there were significance in the real part of the permittivity at frequencies above 30 GHz, and no significance in the imaginary part. For the second lowest concentration (67 000/ml) there was no significance at all. For a medium concentration of bone cells (135 000/ml) there was no significance in the real part, but there was significance in the imaginary part at frequencies below about 25 GHz. The cell suspension with a concentration of 1 350 000/ml had significance in the real part for both high (above 30 GHz) and low (below 15 GHz) frequencies. The imaginary part showed significance for frequencies below 25 GHz. In the case of an osteosarcoma cell line with a concentration of 2 700 000/ml, only the imaginary part showed significance, and only for frequencies below 15 GHz. For muscle cells at a concentration of 743 450/ml, there was only significance in the imaginary part for frequencies below 5 GHz. The experimental data indicated that the complex permittivity of the culture medium may be used for modeling of cell suspensions.
机译:本文的目的是测试和评估一种实验程序,以提供有关室温下2-50 GHz范围内不同细胞系的复介电常数的数据,以用于将来的剂量学研究。使用开放式同轴探针对悬浮在培养基中的细胞进行复介电常数测量。然后,麦克斯韦(Maxwell)的混合方程式可以根据细胞悬浮液与纯培养基之间的介电常数差异来计算细胞的介电常数分布。结果发现,开放式同轴探头对影响测量的干扰非常敏感,从而导致精度下降。相对于测量范围的介电常数差异不大,因此进行了重复测量以改善统计数据。为测量介电常数差异的算术平均值,计算了95%的置信区间,以检验统计显着性。结果表明,对于最低测试浓度(33 500 / ml)的骨细胞,在高于30 GHz的频率下,介电常数的实部有意义,而在虚部则无意义。对于第二低浓度(67 000 / ml),则完全没有意义。对于中等浓度的骨细胞(135 000 / ml),实部无意义,而虚部在约25 GHz以下的频率有显着意义。浓度为1 350 000 / ml的细胞悬液对于高频率(高于30 GHz)和低频率(低于15 GHz)都具有实质意义。虚部对于低于25 GHz的频率显示出重要意义。对于浓度为2 700 000 / ml的骨肉瘤细胞系,只有虚部才有意义,并且仅适用于15 GHz以下的频率。对于浓度为743450 / ml的肌肉细胞,在虚部仅对低于5 GHz的频率有意义。实验数据表明,培养基的复介电常数可用于细胞悬浮液的建模。

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